DQRID : D151201.2
Start DateStart TimeEnd DateEnd Time
11/27/2015000011/30/20152359
more
Subject:
SGP ALL INSTRUMENTS - Icing Event
DataStreams:sgpsirsE11.a1, sgpmfrsrE37.a0, sgpswatsE9.a1, sgpxsaprppiI6.00, sgp30baebbrE9.c1,
sgp30ecorE21.b1, sgp15ebbrE35.b1, sgpsirsE13.a2, sgpmfrsrlangleyE37.c1, sgp915rwpwindmomI10.a0,
sgpsirs60sE21.a1, sgpsebsE14.b1, sgpsirsE9.b1, sgp915rwpwindconI10.a1, sgpsirsE12.a1,
sgpxsaprppiI5.00, sgpmfrsrlangplotE31.c1, sgp5ebbrE9.b1, sgpsirsE12.a0,
sgpswatsE9.b1, sgpsirsE15.b1, sgpmfrsrE15.b1, sgpsirs20sE38.a0, sgpirtE34.b1, sgpdlppiS01.a0,
sgpsebsE21.b1, sgp30ebbrE36.b1, sgpxsaprppiI5.a1, sgpirt200msE31.a1, sgpmfrsrE12.a0,
sgpsirsE21.b1, sgpswatsE35.b1, sgp15ebbrE12.b1, sgpsirs20sE33.a0, sgpsirs20sE15.a0,
sgpmfrsrE32.a0, sgpsirs20sE12.a0, sgp30baebbrE34.c1, sgpmfrsrlangplotE9.c1, sgpsirsE36.b1,
sgp15ebbrE34.b1, sgpmfrsrE35.a0, sgpsirs20sE13.a0, sgp30ecorE31.b1,
sgpmfrsrlangplotE11.c1, sgp915rwpprecipspecI9.a0, sgpsirsE15.a2, sgp30ebbrE15.b1, sgpirtE38.b1,
sgpxsaprunkI4.00, sgp15ebbrE32.b1, sgpirtE15.b1, sgpsirsE32.b1, sgp5ebbrE12.b1,
sgpmfrsrlangleyE38.c1, sgpsirs20sE34.a0, sgpsirsE15.a1, sgp30ebbrE13.b1, sgpswatsE12.a1,
sgpmfrsrE34.a0, sgpxsaprvptI4.00, sgp30baebbrE35.c1, sgpcsaprsurI7.00, sgpsirsE11.b1,
sgpsirs20sE21.a0, sgpswatsE34.b1, sgpxsaprhsrhiI5.00, sgpdlfptS01.a0, sgpmetE13.b1, sgpsirs60sE9.a1,
sgpmetE32.b1, sgpsirsE9.a1, sgpmfrsrlangleyE34.c1, sgpsirs20sE11.a0, sgpsirsE21.a2,
sgpxsaprrhiI5.a1, sgpsirsE12.b1, sgpsirs20sE9.a0, sgp30ebbrE32.b1, sgp30ecorE37.b1,
sgpmetE11.b1, sgpdlrhi2S01.a0, sgpirtE33.b1, sgpmfrsrE9.b1, sgpmfrsrlangleyE12.c1,
sgpsirs20sE35.a0, sgpsirsE9.a0, sgpswatsE15.a1, sgpxsaprvadI4.00, sgp30baebbrE15.c1,
sgpswatsE38.b1, sgpxsaprrhiI6.a1, sgp5ebbrE32.b1, sgpxsaprvptI5.00, sgpmfrsrE38.b1,
sgpsirsE37.b1, sgpirt200msE13.a1, sgpdlcal1S01.a0, sgp30ebbrE12.b1, sgpmfrsrlangplotE35.c1,
sgpsirs20sE31.a0, sgpsirsE15.a0, sgpirtE32.b1, sgp30baebbrE32.c1, sgp5ebbrE13.b1,
sgpxsaprsurI6.00, sgpmfrsrlangplotE15.c1, sgp915rwpprecipconI9.a1, sgpmetE21.b1,
sgpswatspcpE12.a1, sgpmfrsrE36.a0, sgpsirsE13.a0, sgpsirsE35.b1, sgpmfrsrE35.b1, sgpsebsE37.b1,
sgp30ebbrE34.b1, sgp15ebbrE13.b1, sgpirtE35.b1, sgpirt200msE34.a1, sgpmetE33.b1,
sgpirtE11.b1, sgpswatsE36.b1, sgpmetE15.b1, sgpmfrsrlangleyE33.c1, sgpmfrsrlangleyE9.c1,
sgp30baebbrE36.c1, sgpmetE31.b1, sgpdlcal2S01.a0, sgpmetE9.b1, sgpmfrsrlangleyE36.c1,
sgp15ebbrE9.b1, sgpsirs20sE36.a0, sgp5ebbrE36.b1, sgpmetE34.b1, sgpsirsE21.a1,
sgpsirsE33.b1, sgpdlfptS01.b1, sgpmfrsrE13.a0, sgpmfrsrE38.a0, sgp30baebbrE12.c1, sgpswatsE13.b1,
sgp30ebbrE35.b1, sgpmfrsrlangleyE13.c1, sgpmwrlosE14.a1, sgpirt200msE15.a1,
sgpxsaprppiI4.00, sgp30baebbrE36.s1, sgpdlcal2S01.b1, sgp30ecorE14.b1, sgpsirs20sE32.a0,
sgpsebsE38.b1, sgpmfrsrlangplotE38.c1, sgpmetE37.b1, sgpmwrtipE14.a1, sgpirtE13.b1,
sgp30baebbrE32.s1, sgpswatsE13.a1, sgpmfrsrlangleyE15.c1, sgpxsaprvptI6.a1, sgpmfrsrE33.a0,
sgpmwrlosE14.b1, sgp5ebbrE34.b1, sgp30baebbrE34.s1, sgpirt200msE11.a1, sgpmfrsrE9.a0,
sgpxsaprppiI6.a1, sgpsirs60sE15.a1, sgpswatsE11.b1, sgpcsaprrhiI7.00, sgpsirsE12.a2,
sgpsirsE13.b1, sgpswatspcpE12.b1, sgpxsaprhsrhiI4.00, sgpmetE35.b1,
sgpmfrsrlangplotE12.c1, sgpsirsE9.a2, sgpirtE37.b1, sgpirt200msE37.a1, sgpmfrsrlangplotE34.c1,
sgpxsaprsurI6.a1, sgp15ebbrE36.b1, sgpswatsE33.b1, sgpsebsE33.b1, sgpsirsE11.a2,
sgp915rwpwindconI9.a1, sgp915rwpwindspecI10.a0, sgp915rwpprecipconI10.a1, sgpcsaprsecI7.00,
sgpswatsE12.b1, sgpmfrsrlangleyE32.c1, sgp915rwpwindconI8.a1, sgp915rwpprecipmomI9.a0,
sgpmfrsrE9.00, sgpswatsE15.b1, sgpirt200msE32.a1, sgp30ecorE38.b1, sgpirt200msE35.a1,
sgpsirsE38.b1, sgp915rwpwindmomI8.a0, sgpirtE36.b1, sgpmetE36.b1, sgpmfrsrE13.b1,
sgpsirs60sE13.a1, sgpdlrhi2S01.b1, sgp5ebbrE15.b1, sgpirt200msE36.a1, sgpdlppiS01.b1,
sgpmfrsrE11.a0, sgpirtE21.b1, sgpmfrsrE11.b1, sgpmfrsrE12.b1, sgpmfrsrlangplotE33.c1, sgpsebsE31.b1,
sgpmfrsrE33.b1, sgp30ecorE33.b1, sgpswatsE37.b1, sgpmfrsrlangplotE37.c1,
sgp915rwpwindmomI9.a0, sgpmfrsrE34.b1, sgpsirs60sE12.a1, sgpmfrsrE31.b1, sgpsirsE21.a0,
sgpirt200msE38.a1, sgp915rwpprecipconI8.a1, sgpmfrsrE31.a0, sgpmfrsrlangplotE32.c1,
sgp915rwpwindspecI9.a0, sgpmfrsrE36.b1, sgpirtE9.b1, sgpmfrsrlangleyE35.c1, sgpmfrsrE15.a0,
sgp915rwpprecipspecI10.a0, sgpmfrsrE37.b1, sgp915rwptempconI10.a1, sgp5ebbrE35.b1,
sgpsirs60sE11.a1, sgpdlcal1S01.b1, sgpswatsE31.b1, sgpxsaprvptI6.00, sgpsirsE13.a1,
sgpmfrsrlangplotE36.c1, sgpirtE31.b1, sgpirtE12.b1, sgp915rwpprecipmomI8.a0,
sgp915rwpprecipspecI8.a0, sgpsirsE11.a0, sgp30baebbrE13.c1, sgpirt200msE9.a1, sgp30ebbrE9.b1,
sgpmfrsrlangleyE11.c1, sgpsirsE31.b1, sgp15ebbrE15.b1, sgp915rwpprecipmomI10.a0,
sgp30baebbrE35.s1, sgpswatsE11.a1, sgpxsaprvptI5.a1, sgpsirsE34.b1, sgpmfrsrlangplotE13.c1,
sgpsirs20sE37.a0, sgpcsaprvertI7.00, sgpmfrsrlangleyE31.c1, sgpmetE38.b1, sgp915rwpwindspecI8.a0,
sgpmfrsrE32.b1, sgpswatsE32.b1, sgpxsaprhsrhiI6.00
Description:
An icing event (winter storm Cara) passed slowly through the area during this time frame.  
Instruments at the SGP may have been affected by ice accumulation.
Suggestions: 
Review data carefully before using.
Measurements:sgpsirsE9.a0:
  • Down-welling pyrgeometer dome thermistor resistance(down_long_dome_resist)
  • Up-welling pyrgeometer dome thermistor resistance(up_long_dome_resist)
  • Up-welling pyrgeometer case thermistor resistance(up_long_case_resist)
  • 10 meter Upwelling Longwave Hemispheric Irradiance, Pyrgeometer(up_long_hemisp)
  • Down-welling pyrgeometer case thermistor resistance(down_long_case_resist)
  • Shaded pyranometer voltage(short_diffuse)
  • Downwelling longwave hemispheric irradiance, pyrgeometer(down_long_hemisp)
  • Down-welling unshaded pyranometer voltage(down_short_hemisp)
  • Direct-beam normal solar irradiance(nip)
  • 25 meter Upwelling Shortwave Hemispheric Irradiance, Pyranometer(up_short_hemisp)
more
sgp915rwpwindmomI10.a0:
  • Array of heights for each sample time(height_t)
  • Delay Time to 1st Gate(dly)
  • Sample Rate(sampr)
  • Radial Velocity Spectral Resolution(vsr)
  • Number of Coherent Samples/Spectral Point(ncoh)
  • Pulse repetition frequency(prf)
  • Spectral Width: vert velocity(specw)
  • Signal-to-noise-ratio(snr)
  • Number of Valid Heights(nheight)
  • Beam elevation angle(beam_elevation)
  • Height of center of last range gate(rgl)
  • Height of Center of First Range Gate(rgf)
  • Range gate spacing(rgs)
  • Height Index(range_gate)
  • Number of Individual Spectra/Average Spectrum(nspc)
  • Mean atmospheric vertical velocity(mdf)
  • Rx Bandwidth Switch Code(bswitch)
  • Oblique FFT bandwidth(oband)
  • Pulse length(plen)
  • Beam azimuth angle(beam_azimuth)
  • Individual Spectrum Integration Time(sitime)
  • Vertical FFT Bandwidth(vband)
  • Number of pulse code bits(pcbits)
  • 1000 * log10(noise signal level)(noise)
  • Ave Time per Average Spectra. Also known as dwell.(spcavetime)
  • Time Domain Integration Time(tditime)
  • Interpulse period(ipp)
more
sgpsirsE9.a1:
  • Downwelling shortwave hemispheric irradiance, pyranometer, maxima(down_short_hemisp_max)
  • Shortwave Direct Normal Irradiance, Pyrheliometer, Maxima(short_direct_normal_max)
  • Downwelling Shortwave Hemispheric Irradiance, Pyranometer, Minima(down_short_hemisp_min)
  • Shortwave direct normal irradiance, pyrheliometer, minima(short_direct_normal_min)
  • Downwelling Shortwave Diffuse Hemispheric Irradiance, Ventilated Pyranometer(down_short_diffuse_hemisp)
  • Downwelling longwave hemispheric irradiance, pyrgeometer(down_long_hemisp)
  • 25 meter Upwelling Shortwave Hemispheric Irradiance, Pyranometer(up_short_hemisp)
  • Upwelling (10 meter) Longwave Hemispheric Irradiance, Ventilated Pyrgeometer,
    Standard Deviation(up_long_hemisp_std)
  • 10 meter Upwelling Longwave Hemispheric Irradiance, Pyrgeometer(up_long_hemisp)
  • Upwelling longwave hemispheric irradiance, pyrgeometer, maxima(up_long_hemisp_max)
  • Upwelling Longwave Hemispheric Irradiance, Pyrgeometer, Minima(up_long_hemisp_min)
  • Down-welling unshaded pyranometer voltage(down_short_hemisp)
  • Upwelling (10 meter) Shortwave Hemispheric Irradiance, Ventilated Pyranometer,
    Standard Deviation(up_short_hemisp_std)
  • Shortwave direct normal irradiance, pyrheliometer(short_direct_normal)
  • Downwelling Shortwave Diffuse Hemispheric Irradiance, Pyranometer, Standard
    Deviation(down_short_diffuse_hemisp_std)
  • Battery voltage(vBatt)
  • Upwelling shortwave hemispheric irradiance, pyranometer, minima(up_short_hemisp_min)
  • Upwelling (10 meter) Shortwave Hemispheric Irradiance, Pyranometer, Maxima(up_short_hemisp_max)
  • Downwelling Shortwave Hemispheric Irradiance, Ventilated Pyrgeometer, Standard
    Deviation(down_short_hemisp_std)
  • Downwelling Longwave Hemispheric Irradiance, Pyrgeometer, Maxima(down_long_hemisp_max)
  • Shortwave Direct Normal Irradiance, Pyrgeometer, Standard Deviation(short_direct_normal_std)
  • Downwelling Longwave Hemispheric Irradiance, Pyrgeometer, Minima(down_long_hemisp_min)
  • Downwelling Longwave Hemispheric Irradiance, Ventilated Pyrgeometer, Standard
    Deviation(down_long_hemisp_std)
  • Downwelling Shortwave Diffuse Hemispheric Irradiance, Pyrgeometer, Minima(down_short_diffuse_hemisp_min)
  • Downwelling shortwave diffuse hemispheric irradiance, pyranometer, maxima(down_short_diffuse_hemisp_max)
more
sgpmfrsrE9.a0:
  • Narrowband hemispheric irradiance, filter 4(hemisp_narrowband_filter4_raw)
  • Hemispheric broadband irradiance(hemisp_broadband_raw)
  • Offset subtracted from upwelling hemispheric filter2 data(offset_filter2)
  • Offset subtracted from hemispheric filter1 data(offset_filter1)
  • Offset subtracted from direct normal filter4 data(offset_filter4)
  • Offset subtracted from direct normal filter3 data(offset_filter3)
  • Diffuse narrowband hemispheric irradiance, filter 1(diffuse_hemisp_narrowband_filter1_raw)
  • Offset subtracted from hemispheric and diffuse filter6 data(offset_filter6)
  • Offset subtracted from upwelling hemispheric filter5 data(offset_filter5)
  • Data logger supply voltage(logger_volt)
  • Narrowband hemispheric irradiance, filter 1(hemisp_narrowband_filter1_raw)
  • Diffuse narrowband hemispheric irradiance, filter 6(diffuse_hemisp_narrowband_filter6_raw)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 1, offset corrected(diffuse_hemisp_narrowband_filter1)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 6, offset corrected(diffuse_hemisp_narrowband_filter6)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 2, offset corrected(diffuse_hemisp_narrowband_filter2)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 3(diffuse_hemisp_narrowband_filter3)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 4(diffuse_hemisp_narrowband_filter4)
  • Narrowband diffuse hemispheric irradiance, filter 5, offset and cosine corrected(diffuse_hemisp_narrowband_filter5)
  • Data Logger Temperature(logger_temp)
  • Narrowband hemispheric irradiance, filter 2(hemisp_narrowband_filter2_raw)
  • Diffuse narrowband hemispheric irradiance, filter 3(diffuse_hemisp_narrowband_filter3_raw)
  • Diffuse Hemispheric Broadband Irradiance, offset corrected(diffuse_hemisp_broadband)
  • Direct Horizontal Broadband Irradiance(direct_horizontal_broadband)
  • Diffuse Hemispheric Broadband Irradiance(diffuse_hemisp_broadband_raw)
  • Hemispheric broadband irradiance(hemisp_broadband)
  • Alltime Narrowband Hemispheric Irradiance, Filter 6(alltime_hemisp_narrowband_filter6)
  • Alltime Narrowband Hemispheric Irradiance, Filter 4(alltime_hemisp_narrowband_filter4)
  • Alltime narrowband hemispheric irradiance, filter 5(alltime_hemisp_narrowband_filter5)
  • Alltime narrowband hemispheric irradiance, filter 2(alltime_hemisp_narrowband_filter2)
  • Alltime Narrowband Hemispheric Irradiance, Filter 3(alltime_hemisp_narrowband_filter3)
  • Alltime narrowband hemispheric irradiance, filter 1(alltime_hemisp_narrowband_filter1)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 5(diffuse_hemisp_narrowband_filter5_raw)
  • Narrowband hemispheric irradiance, filter 5(hemisp_narrowband_filter5_raw)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 2(diffuse_hemisp_narrowband_filter2_raw)
  • Narrowband Hemispheric Irradiance, Filter 6(hemisp_narrowband_filter6_raw)
  • Detector temperature(head_temp)
  • Narrowband Hemispheric Irradiance, Filter 3(hemisp_narrowband_filter3_raw)
  • Second detector temperature(head_temp2)
  • Offset subtracted from hemispheric and diffuse broadband data(offset_broadband)
  • Alltime hemispheric broadband irradiance(alltime_hemisp_broadband)
  • Narrowband Hemispheric Irradiance, Filter 1, offset corrected(hemisp_narrowband_filter1)
  • Narrowband Hemispheric Irradiance, Filter 2(hemisp_narrowband_filter2)
  • Narrowband hemispheric irradiance, filter 3, offset and cosine corrected(hemisp_narrowband_filter3)
  • Narrowband hemispheric irradiance, filter 4, offset and cosine corrected(hemisp_narrowband_filter4)
  • Narrowband Hemispheric Irradiance, Filter 5, offset corrected(hemisp_narrowband_filter5)
  • Narrowband hemispheric irradiance, filter 6, nominal wavelength is 935 nm(hemisp_narrowband_filter6)
  • Diffuse narrowband hemispheric irradiance, filter 4(diffuse_hemisp_narrowband_filter4_raw)
  • Direct horizontal narrowband irradiance, filter 1(direct_horizontal_narrowband_filter1)
  • Narrowband Direct Horizontal Irradiance, Filter 2, cosine corrected(direct_horizontal_narrowband_filter2)
  • Direct Horizontal Narrowband Irradiance, Filter 3(direct_horizontal_narrowband_filter3)
  • Narrowband Direct Horizontal Irradiance, Filter 4, cosine corrected(direct_horizontal_narrowband_filter4)
  • Narrowband Direct Horizontal Irradiance, Filter 5, cosine corrected(direct_horizontal_narrowband_filter5)
  • Narrowband Direct Horizontal Irradiance, Filter 6, cosine corrected(direct_horizontal_narrowband_filter6)
more
sgpmwrtipE14.a1:
  • Temperature correction coefficient at 31.4 GHz(tc31)
  • Temperature correction coefficient at 23.8 GHz(tc23)
  • Noise injection temp at 31.4 GHz derived from this tip(tnd31I)
  • Correlation coefficients for tip curve at 31.4 GHz(r31)
  • 23.8 GHz goodness-of-fit coefficient(r23)
  • Noise injection temp at 23.8 GHz derived from this tip(tnd23I)
  • Total water vapor along zenith path using tip-derived brightness temperatures(vaptip)
  • Ambient temperature(tkair)
  • Mixer kinetic (physical) temperature(tkxc)
  • (tknd)
  • Blackbody kinetic temperature(tkbb)
  • 23.8 GHz sky brightness temperature derived from tip curve(tbskytip23)
  • 31.8 GHz sky brightness temperature derived from tip curve(tbskytip31)
  • Water on Teflon window (1=WET, 0=DRY)(wet_window)
  • 23.8 GHz sky signal(tipsky23)
  • 31.4 GHz sky signal(tipsky31)
  • Noise injection temp at nominal temperature at 31.4 GHz(tnd_nom31)
  • Noise injection temp at nominal temperature at 23.8 GHz(tnd_nom23)
  • Actual elevation angle(actel)
  • Total liquid water along zenith path using tip-derived brightness temperatures(liqtip)
  • 31.4 GHz blackbody(bb31)
  • 23.8 GHz Blackbody signal(bb23)
  • 23.8 GHz blackbody+noise injection signal(bbn23)
  • 31.4 GHz blac2body+noise injection signal(bbn31)
  • Noise injection temp at 23.8 GHz adjusted to tkbb(tnd23)
  • Noise injection temp at 31.4 GHz adjusted to tkbb(tnd31)
  • Actual Azimuth(actaz)
more
sgp15ebbrE13.b1:
  • Soil moisture 4 (resistance ratio)(soil_moisture_4_rr)
  • Wind speed arithmetic mean(wspd_arith_mean)
  • Soil heat flow 2 (mV)(soil_heat_flow_2_mv)
  • Soil temperature 4 (resistance ratio)(soil_temp_4_rr)
  • Right T/RH sensor temperature (resistance ratio)(temp_trh_right_rr)
  • Reference temperature in enclosure (resistance ratio)(temp_reference_rr)
  • Soil heat flow 3 (mV)(soil_heat_flow_3_mv)
  • Soil temperature 3 (resistance ratio)(soil_temp_3_rr)
  • Left T/RH sensor temperature (resistance ratio)(temp_trh_left_rr)
  • Left air temperature(temp_air_left)
  • AEM position indicator(home_signal)
  • Soil moisture 3 (resistance ratio)(soil_moisture_3_rr)
  • Battery voltage(battery_voltage)
  • Soil heat flow 4 (mV)(soil_heat_flow_4_mv)
  • Atmospheric pressure (mV)(atmos_pressure_mv)
  • Soil moisture 4 (resistance)(soil_moisture_4_r)
  • Soil temperature 2 (resistance ratio)(soil_temp_2_rr)
  • Soil moisture 1 (resistance ratio)(soil_moisture_1_rr)
  • Soil moisture 5 (resistance)(soil_moisture_5_r)
  • Soil moisture 2 (resistance ratio)(soil_moisture_2_rr)
  • Soil moisture 2 (resistance)(soil_moisture_2_r)
  • Right air temperature(temp_air_right)
  • Soil heat flow 5 (mV)(soil_heat_flow_5_mv)
  • Soil moisture 3 (resistance)(soil_moisture_3_r)
  • Soil temperature 1 (resistance ratio)(soil_temp_1_rr)
  • Wind direction vector mean (mV)(wdir_vec_mean_mv)
  • Soil moisture 5 (resistance ratio)(soil_moisture_5_rr)
  • Soil moisture 1 (resistance)(soil_moisture_1_r)
  • Left relative humidity (mV)(rh_left_mv)
  • Right relative humidity (mV)(rh_right_mv)
  • Soil heat flow 1 (mV)(soil_heat_flow_1_mv)
  • Net radiation (mV)(net_radiation_mv)
  • Soil temperature 5 (resistance ratio)(soil_temp_5_rr)
more
sgpirt200msE35.a1:
  • Internal Reference Infra Red Temperature(ref_ir_temp)
  • Sky Infra-Red Temperature(sky_ir_temp)
more
sgpxsaprsurI6.00:
  • Attenuation corrected differential reflectivity(diff_reflectivity_corr)
  • reflectivity(reflectivity)
  • Signal quality index(sig_qual_index)
  • Specific differential phase(diff_phase)
  • Doppler spectral width, clutter filtered(doppler_spectral_width)
  • Lag-0 co-polar correlation coefficient, clutter filtered(copol_coeff)
  • Unfiltered reflectivity(reflectivity_unf)
  • Differential reflectivity, clutter filtered(diff_reflectivity)
  • Differential propagation phase shift(dp_phase_shift)
  • Range gate(gate)
  • Mean doppler velocity(mean_doppler_velocity)
  • Attenuation corrected reflectivity(reflectivity_corr)
more
sgpirtE33.b1:
  • Number of averaged samples(samples_in_average)
  • Sky infrared temperature, standard deviation(sky_ir_temp_std)
  • Sky Infra-Red Temperature(sky_ir_temp)
  • Internal Reference Infra Red Temperature(ref_ir_temp)
  • Sky Infra Red Temperature Maxima(sky_ir_temp_max)
  • Sky Infra-Red Temperature Minima(sky_ir_temp_min)
more
sgp15ebbrE36.b1:
  • Battery voltage(battery_voltage)
  • Left air temperature(temp_air_left)
  • Soil heat flow 2 (mV)(soil_heat_flow_2_mv)
  • Soil moisture 5 (resistance ratio)(soil_moisture_5_rr)
  • Soil heat flow 3 (mV)(soil_heat_flow_3_mv)
  • Net radiation (mV)(net_radiation_mv)
  • Soil temperature 2 (resistance ratio)(soil_temp_2_rr)
  • Soil moisture 2 (resistance)(soil_moisture_2_r)
  • Soil moisture 1 (resistance)(soil_moisture_1_r)
  • Soil temperature 3 (resistance ratio)(soil_temp_3_rr)
  • Soil moisture 4 (resistance ratio)(soil_moisture_4_rr)
  • Soil moisture 3 (resistance)(soil_moisture_3_r)
  • Soil moisture 4 (resistance)(soil_moisture_4_r)
  • Right T/RH sensor temperature (resistance ratio)(temp_trh_right_rr)
  • Soil moisture 5 (resistance)(soil_moisture_5_r)
  • Soil heat flow 4 (mV)(soil_heat_flow_4_mv)
  • Right relative humidity (mV)(rh_right_mv)
  • Reference temperature in enclosure (resistance ratio)(temp_reference_rr)
  • Soil moisture 3 (resistance ratio)(soil_moisture_3_rr)
  • Soil heat flow 5 (mV)(soil_heat_flow_5_mv)
  • Atmospheric pressure (mV)(atmos_pressure_mv)
  • Wind speed arithmetic mean(wspd_arith_mean)
  • Soil temperature 4 (resistance ratio)(soil_temp_4_rr)
  • Soil moisture 2 (resistance ratio)(soil_moisture_2_rr)
  • Soil temperature 5 (resistance ratio)(soil_temp_5_rr)
  • Left T/RH sensor temperature (resistance ratio)(temp_trh_left_rr)
  • Soil heat flow 1 (mV)(soil_heat_flow_1_mv)
  • Left relative humidity (mV)(rh_left_mv)
  • AEM position indicator(home_signal)
  • Soil moisture 1 (resistance ratio)(soil_moisture_1_rr)
  • Wind direction vector mean (mV)(wdir_vec_mean_mv)
  • Soil temperature 1 (resistance ratio)(soil_temp_1_rr)
  • Right air temperature(temp_air_right)
more
sgp30ecorE14.b1:
  • latent heat flux(lv_e)
  • rotated covariance uc(cvar_rot_uc)
  • Rotated covariance uq(cvar_rot_uq)
  • rotated covariance uv(cvar_rot_uv)
  • Rotated covariance ut(cvar_rot_ut)
  • rotated covariance uw(cvar_rot_uw)
  • Rotated covariance vc(cvar_rot_vc)
  • rotated covariance vq(cvar_rot_vq)
  • rotated covariance vw(cvar_rot_vw)
  • Rotated covariance vt(cvar_rot_vt)
  • friction velocity(ustar)
  • Rotated covariance wc(cvar_rot_wc)
  • rotated covariance wt(cvar_rot_wt)
  • rotated covariance wq(cvar_rot_wq)
  • Number of c samples removed due to spikes(n_spk_c)
  • number of w samples removed due to spikes(n_spk_w)
  • Number of q samples removed due to spikes(n_spk_q)
  • number of t samples removed due to spikes(n_spk_t)
  • number of v samples removed due to spikes(n_spk_v)
  • Number of u samples removed due to spikes(n_spk_u)
  • moist air density(rho)
  • Number of bad or out of range q samples(n_bad_q)
  • number of bad or out of range v samples(n_bad_v)
  • number of bad or out of range w samples(n_bad_w)
  • Number of bad or out of range t samples(n_bad_t)
  • number of bad or out of range u samples(n_bad_u)
  • Number of bad or out of range c samples(n_bad_c)
  • vertical (elevation) wind angle(elev)
  • skewness of variable c(skew_c)
  • skewness of variable u(skew_u)
  • skewness of variable t(skew_t)
  • skewness of variable w(skew_w)
  • Skewness of variable mean_v(skew_v)
  • skewness of variable q(skew_q)
  • 0=real or 1=dummy value of cp(real_cp)
  • kurtosis of variable c(kurt_c)
  • kurtosis of variable w(kurt_w)
  • kurtosis of variable v(kurt_v)
  • kurtosis of variable q(kurt_q)
  • kurtosis of variable u(kurt_u)
  • Kurtosis of variable mean_t(kurt_t)
  • number of valid c samples(n_good_c)
  • Number of valid w samples(n_good_w)
  • number of valid v samples(n_good_v)
  • Number of valid u samples(n_good_u)
  • number of valid t samples(n_good_t)
  • number of valid q samples(n_good_q)
  • Status of source for latent heat of vaporization(real_lv)
  • Status of source for mixing ratio(real_mr)
  • 0=real or 1=dummy value of rho(real_rho)
  • mean value of out of range values and spikes of q -9999 if no spikes(mean_spk_q)
  • Mean value of "spike" u samples(mean_spk_u)
  • Mean value of "spike" t samples(mean_spk_t)
  • mean value of \spike\ w samples(mean_spk_w)
  • Mean value of "spike" v samples(mean_spk_v)
  • mean value of out of range values and spikes of c -9999 if no spikes(mean_spk_c)
  • vector averaged wind direction(wind_dir)
  • number of samples with IRGA optical path blocked flag(n_bad_irga_light)
  • average voltage of IRGA cooler(mean_cooler)
  • corrected sensible heat flux(h)
  • momentum flux (dynamic)(k)
  • Atmospheric pressure(atm_pres)
  • Vector averaged wind speed(wind_spd)
  • number of samples with \IRGA hardware problem\ flag(n_bad_irga)
  • Covariance qc(cvar_qc)
  • Rotated variance u(var_rot_u)
  • variance of v(var_rot_v)
  • rotated variance w(var_rot_w)
  • covariance wt(cvar_wt)
  • covariance wq(cvar_wq)
  • Standard deviation of wind direction(std_wind_dir)
  • Covariance vw(cvar_vw)
  • Covariance vt(cvar_vt)
  • Covariance vq(cvar_vq)
  • Covariance wc(cvar_wc)
  • Covariance tc(cvar_tc)
  • Covariance uv(cvar_uv)
  • covariance ut(cvar_ut)
  • covariance uq(cvar_uq)
  • covariance uw(cvar_uw)
  • covariance vc(cvar_vc)
  • covariance of tq(cvar_tq)
  • Covariance uc(cvar_uc)
  • variance of c(var_c)
  • variance of variable w(var_w)
  • variance of variable u(var_u)
  • Variance of variable mean_v(var_v)
  • variance of t(var_t)
  • variance of q(var_q)
  • Standard deviation of wind elevation angle(std_elev)
  • Average temperature (IGRA internal sensor)(temp_irga)
  • rotated mean w(mean_rot_w)
  • rotated mean v(mean_rot_v)
  • Rotated mean u(mean_rot_u)
  • mean water vapor concentration (q)(mean_q)
  • mean sonic temperature (t), i.e. virtual temperature(mean_t)
  • Cross-boom wind velocity (v)(mean_v)
  • Down-boom wind velocity (u)(mean_u)
  • Vertical wind velocity (w)(mean_w)
  • mean co2 concentration (c)(mean_c)
  • rotation to zero v(phi)
  • specific heat of moist air(cp)
  • CO2 flux(fc)
  • Latent heat of vaporization(lv)
  • Water vapor mixing ratio observed by the Raman lidar(mr)
  • number of samples with bad sonic status flag(n_bad_son_ic)
more
sgpsirs20sE13.a0:
  • Instantaneous Downwelling Pyrgeometer Case Thermistor Resistance, Shaded
    Pyrgeometer(inst_down_long_shaded_case_resist)
  • Instantaneous Upwelling Pyrgeometer Case Thermistor Resistance, Pyrgeometer(inst_up_long_case_resist)
  • Instantaneous Upwelling Shortwave Hemispheric Irradiance, Pyranometer(inst_up_short_hemisp)
  • Instantaneous downwelling pyrgeometer dome thermistor resistance, shaded
    pyrgeometer(inst_down_long_shaded_dome_resist)
  • Instantaneous uncorrected downwelling shortwave diffuse, shaded pyranometer
    thermopile voltage(inst_diffuse)
  • Instantaneous direct normal shortwave irradiance, pyrheliometer thermopile
    voltage(inst_direct_normal)
  • Instantaneous downwelling pyrgeometer thermopile voltage, shaded pyrgeometer(inst_down_long_hemisp_shaded_tp)
  • Instantaneous Upwelling Pyrgeometer Thermopile Pyrgeometer(inst_up_long_hemisp_tp)
  • Instantaneous Upwelling Pyrgeometer Dome Thermistor Resistance Pyrgeometer(inst_up_long_dome_resist)
  • Instantaneous Downwelling Hemispheric Shortwave, Pyranometer Thermopile Voltage(inst_global)
more
sgp30ebbrE36.b1:
  • Surface latent heat flux(latent_heat_flux)
  • Half hour averaged soil temperature 5(soil_temp_5)
  • Half hour averaged soil temperature 4(soil_temp_4)
  • Soil temperature 1(soil_temp_1)
  • Soil temperature mean 3(soil_temp_3)
  • Soil temperature 2(soil_temp_2)
  • Soil heat capacity 5(soil_heat_capacity_5)
  • Wind speed vector mean(wspd_vec_mean)
  • Soil heat capacity 3(soil_heat_capacity_3)
  • Soil heat capacity 4(soil_heat_capacity_4)
  • Soil heat capacity 1(soil_heat_capacity_1)
  • Soil heat capacity 2(soil_heat_capacity_2)
  • Reference temperature in enclosure(temp_reference)
  • Bottom vapor pressure(vapor_pressure_bottom)
  • Surface soil heat flux 5(surface_soil_heat_flux_5)
  • Surface soil heat flux 4(surface_soil_heat_flux_4)
  • Surface sensible heat flux(sensible_heat_flux)
  • Surface soil heat flux 3(surface_soil_heat_flux_3)
  • Surface soil heat flux 2(surface_soil_heat_flux_2)
  • Surface soil heat flux 1(surface_soil_heat_flux_1)
  • Wind direction vector mean standard deviation(wdir_vec_std)
  • Top T/RH sensor temperature(temp_trh_top)
  • Soil moisture 3, gravimetric(soil_moisture_3)
  • Soil moisture 2, gravimetric(soil_moisture_2)
  • Soil moisture 1, gravimetric(soil_moisture_1)
  • Soil moisture 5, gravimetric(soil_moisture_5)
  • Soil moisture 4, gravimetric(soil_moisture_4)
  • Wind speed arithmetic mean(wspd_arith_mean)
  • Net radiation(net_radiation)
  • Bottom T/RH sensor temperature(temp_trh_bottom)
  • Top air temperature(temp_air_top)
  • Bottom air temperature(temp_air_bottom)
  • Surface soil heat flux, average of fluxes 1-5(surface_soil_heat_flux_avg)
  • Atmospheric pressure(atmos_pressure)
  • Bottom relative humidity (fractional)(rh_bottom_fraction)
  • Top vapor pressure(vapor_pressure_top)
  • Soil heat flow 3(soil_heat_flow_3)
  • Soil heat flow 4(soil_heat_flow_4)
  • Soil heat flow 1(soil_heat_flow_1)
  • Soil heat flow 2(soil_heat_flow_2)
  • Soil heat flow 5(soil_heat_flow_5)
  • Bowen ratio(bowen_ratio)
  • AEM position indicator 0 to 15 mins(home_signal_15)
  • AEM position indicator 15 to 30 mins(home_signal_30)
  • Change in energy storage 2, 0-5 cm soil layer(energy_storage_change_2)
  • Change in energy storage 1, 0-5 cm soil layer(energy_storage_change_1)
  • Change in energy storage 4, 0-5 cm soil layer(energy_storage_change_4)
  • Change in energy storage 3, 0-5 cm soil layer(energy_storage_change_3)
  • Change in energy storage 5, 0-5 cm soil layer(energy_storage_change_5)
  • Wind direction vector mean(wdir_vec_mean)
  • Top relative humidity (fractional)(rh_top_fraction)
  • Soil heat flow 4, corrected for soil moisture(corr_soil_heat_flow_4)
  • Soil heat flow 5, corrected for soil moisture(corr_soil_heat_flow_5)
  • Soil heat flow 2, corrected for soil moisture(corr_soil_heat_flow_2)
  • Soil heat flow 3, corrected for soil moisture(corr_soil_heat_flow_3)
  • Soil heat flow 1, corrected for soil moisture(corr_soil_heat_flow_1)
more
sgp30ecorE37.b1:
  • moist air density(rho)
  • number of samples with \IRGA hardware problem\ flag(n_bad_irga)
  • Standard deviation of wind direction(std_wind_dir)
  • number of samples with IRGA optical path blocked flag(n_bad_irga_light)
  • mean water vapor concentration (q)(mean_q)
  • Cross-boom wind velocity (v)(mean_v)
  • Vertical wind velocity (w)(mean_w)
  • mean sonic temperature (t), i.e. virtual temperature(mean_t)
  • Down-boom wind velocity (u)(mean_u)
  • mean co2 concentration (c)(mean_c)
  • Latent heat of vaporization(lv)
  • Water vapor mixing ratio observed by the Raman lidar(mr)
  • momentum flux (dynamic)(k)
  • corrected sensible heat flux(h)
  • specific heat of moist air(cp)
  • CO2 flux(fc)
  • rotation to zero v(phi)
  • vertical (elevation) wind angle(elev)
  • friction velocity(ustar)
  • Vector averaged wind speed(wind_spd)
  • Status of source for latent heat of vaporization(real_lv)
  • number of t samples removed due to spikes(n_spk_t)
  • Number of u samples removed due to spikes(n_spk_u)
  • Status of source for mixing ratio(real_mr)
  • number of v samples removed due to spikes(n_spk_v)
  • number of w samples removed due to spikes(n_spk_w)
  • Number of q samples removed due to spikes(n_spk_q)
  • Number of c samples removed due to spikes(n_spk_c)
  • 0=real or 1=dummy value of cp(real_cp)
  • skewness of variable c(skew_c)
  • skewness of variable w(skew_w)
  • skewness of variable u(skew_u)
  • Skewness of variable mean_v(skew_v)
  • skewness of variable t(skew_t)
  • skewness of variable q(skew_q)
  • number of valid c samples(n_good_c)
  • number of valid q samples(n_good_q)
  • Number of valid w samples(n_good_w)
  • number of valid t samples(n_good_t)
  • Number of valid u samples(n_good_u)
  • number of valid v samples(n_good_v)
  • Average temperature (IGRA internal sensor)(temp_irga)
  • 0=real or 1=dummy value of rho(real_rho)
  • Number of bad or out of range c samples(n_bad_c)
  • number of bad or out of range v samples(n_bad_v)
  • number of bad or out of range u samples(n_bad_u)
  • number of bad or out of range w samples(n_bad_w)
  • Number of bad or out of range q samples(n_bad_q)
  • Number of bad or out of range t samples(n_bad_t)
  • number of samples with bad sonic status flag(n_bad_son_ic)
  • vector averaged wind direction(wind_dir)
  • mean value of out of range values and spikes of c -9999 if no spikes(mean_spk_c)
  • Mean value of "spike" t samples(mean_spk_t)
  • mean value of out of range values and spikes of q -9999 if no spikes(mean_spk_q)
  • mean value of \spike\ w samples(mean_spk_w)
  • Mean value of "spike" v samples(mean_spk_v)
  • Mean value of "spike" u samples(mean_spk_u)
  • variance of c(var_c)
  • variance of q(var_q)
  • variance of t(var_t)
  • variance of variable u(var_u)
  • Variance of variable mean_v(var_v)
  • variance of variable w(var_w)
  • Kurtosis of variable mean_t(kurt_t)
  • kurtosis of variable q(kurt_q)
  • kurtosis of variable w(kurt_w)
  • kurtosis of variable u(kurt_u)
  • kurtosis of variable v(kurt_v)
  • kurtosis of variable c(kurt_c)
  • average voltage of IRGA cooler(mean_cooler)
  • rotated covariance uc(cvar_rot_uc)
  • Rotated covariance ut(cvar_rot_ut)
  • rotated covariance uv(cvar_rot_uv)
  • rotated covariance uw(cvar_rot_uw)
  • Rotated covariance uq(cvar_rot_uq)
  • Rotated covariance vc(cvar_rot_vc)
  • rotated covariance vw(cvar_rot_vw)
  • rotated covariance vq(cvar_rot_vq)
  • Rotated covariance vt(cvar_rot_vt)
  • rotated covariance wq(cvar_rot_wq)
  • Rotated covariance wc(cvar_rot_wc)
  • rotated covariance wt(cvar_rot_wt)
  • Atmospheric pressure(atm_pres)
  • Covariance qc(cvar_qc)
  • Standard deviation of wind elevation angle(std_elev)
  • covariance wq(cvar_wq)
  • covariance wt(cvar_wt)
  • covariance uq(cvar_uq)
  • Covariance uv(cvar_uv)
  • covariance uw(cvar_uw)
  • covariance ut(cvar_ut)
  • covariance vc(cvar_vc)
  • Covariance vt(cvar_vt)
  • Covariance vq(cvar_vq)
  • Covariance vw(cvar_vw)
  • Covariance wc(cvar_wc)
  • Covariance tc(cvar_tc)
  • covariance of tq(cvar_tq)
  • Covariance uc(cvar_uc)
  • rotated variance w(var_rot_w)
  • variance of v(var_rot_v)
  • Rotated variance u(var_rot_u)
  • latent heat flux(lv_e)
  • Rotated mean u(mean_rot_u)
  • rotated mean w(mean_rot_w)
  • rotated mean v(mean_rot_v)
more
sgpdlppiS01.b1:
  • Beam Elevation Angle(elevation)
  • Intensity (signal to noise ratio + 1)(intensity)
  • Radial velocity(radial_velocity)
  • Distance to the center of the corresponding range bin(range)
  • Attenuated backscatter(attenuated_backscatter)
  • Azimuth of Radar Ray(azimuth)
more
sgpsirsE9.a2:
  • Downwelling shortwave diffuse hemispheric irradiance, pyranometer, maxima(down_short_diffuse_hemisp_max)
  • Downwelling Shortwave Diffuse Hemispheric Irradiance, Pyrgeometer, Minima(down_short_diffuse_hemisp_min)
  • Shortwave direct normal irradiance, pyrheliometer(short_direct_normal)
  • Upwelling (10 meter) Shortwave Hemispheric Irradiance, Pyranometer, Maxima(up_short_hemisp_max)
  • Instantaneous downwelling pyrgeometer case thermistor temperature, shaded
    pyrgeometer(inst_down_long_shaded_case_temp)
  • Down-welling unshaded pyranometer voltage(down_short_hemisp)
  • Upwelling shortwave hemispheric irradiance, pyranometer, minima(up_short_hemisp_min)
  • Upwelling (10 meter) Longwave Hemispheric Irradiance, Ventilated Pyrgeometer,
    Standard Deviation(up_long_hemisp_std)
  • Instantaneous Downwelling Pyrgeometer Dome Thermistor Temperature, Shaded
    Pyrgeometer(inst_down_long_shaded_dome_temp)
  • 10 meter Upwelling Longwave Hemispheric Irradiance, Pyrgeometer(up_long_hemisp)
  • Shortwave Direct Normal Irradiance, Pyrheliometer, Maxima(short_direct_normal_max)
  • Shortwave direct normal irradiance, pyrheliometer, minima(short_direct_normal_min)
  • Downwelling longwave hemispheric irradiance, shaded pyrgeometer, standard
    deviation(down_long_hemisp_shaded_std)
  • 25 meter Upwelling Shortwave Hemispheric Irradiance, Pyranometer(up_short_hemisp)
  • Instantaneous upwelling pyrgeometer case thermistor temperature, pyrgeometer(inst_up_long_case_temp)
  • Upwelling longwave hemispheric irradiance, pyrgeometer, maxima(up_long_hemisp_max)
  • Battery voltage(vBatt)
  • Upwelling (10 meter) Shortwave Hemispheric Irradiance, Ventilated Pyranometer,
    Standard Deviation(up_short_hemisp_std)
  • Instantaneous Dome Temperature(inst_up_long_dome_temp)
  • Upwelling Longwave Hemispheric Irradiance, Pyrgeometer, Minima(up_long_hemisp_min)
  • Downwelling longwave hemispheric irradiance, shaded pyrgeometer(down_long_hemisp_shaded)
  • Downwelling Shortwave Diffuse Hemispheric Irradiance, Pyranometer, Standard
    Deviation(down_short_diffuse_hemisp_std)
  • Instantaneous Upwelling Longwave Hemispheric Irradiance, Pyrgeometer(up_long_netir)
  • Downwelling Shortwave Diffuse Hemispheric Irradiance, Ventilated Pyranometer(down_short_diffuse_hemisp)
  • Downwelling Shortwave Hemispheric Irradiance, Ventilated Pyrgeometer, Standard
    Deviation(down_short_hemisp_std)
  • Downwelling shortwave hemispheric irradiance, pyranometer, maxima(down_short_hemisp_max)
  • Downwelling longwave hemispheric net infrared(down_long_netir)
  • Downwelling Shortwave Hemispheric Irradiance, Pyranometer, Minima(down_short_hemisp_min)
  • Shortwave Direct Normal Irradiance, Pyrgeometer, Standard Deviation(short_direct_normal_std)
  • Downwelling Longwave Hemispheric Irradiance, Shaded Pyrgeometer, Maxima(down_long_hemisp_shaded_max)
  • Downwelling Longwave Hemispheric Irradiance, Shaded Pyrgeometer, Minima(down_long_hemisp_shaded_min)
more
sgp30ebbrE13.b1:
  • Soil moisture 3, gravimetric(soil_moisture_3)
  • Soil moisture 4, gravimetric(soil_moisture_4)
  • Soil moisture 5, gravimetric(soil_moisture_5)
  • Soil moisture 1, gravimetric(soil_moisture_1)
  • Soil moisture 2, gravimetric(soil_moisture_2)
  • Top vapor pressure(vapor_pressure_top)
  • Wind speed arithmetic mean(wspd_arith_mean)
  • Wind direction vector mean standard deviation(wdir_vec_std)
  • Half hour averaged soil temperature 5(soil_temp_5)
  • Half hour averaged soil temperature 4(soil_temp_4)
  • Soil temperature mean 3(soil_temp_3)
  • Soil temperature 2(soil_temp_2)
  • Soil temperature 1(soil_temp_1)
  • Bottom air temperature(temp_air_bottom)
  • Bottom T/RH sensor temperature(temp_trh_bottom)
  • Soil heat flow 2(soil_heat_flow_2)
  • Soil heat flow 3(soil_heat_flow_3)
  • Soil heat flow 4(soil_heat_flow_4)
  • Soil heat flow 5(soil_heat_flow_5)
  • Soil heat flow 1(soil_heat_flow_1)
  • Top air temperature(temp_air_top)
  • Wind direction vector mean(wdir_vec_mean)
  • Atmospheric pressure(atmos_pressure)
  • Surface soil heat flux 5(surface_soil_heat_flux_5)
  • Surface soil heat flux 3(surface_soil_heat_flux_3)
  • Surface soil heat flux 4(surface_soil_heat_flux_4)
  • Surface soil heat flux 1(surface_soil_heat_flux_1)
  • Surface soil heat flux 2(surface_soil_heat_flux_2)
  • Surface sensible heat flux(sensible_heat_flux)
  • Surface soil heat flux, average of fluxes 1-5(surface_soil_heat_flux_avg)
  • Change in energy storage 3, 0-5 cm soil layer(energy_storage_change_3)
  • Change in energy storage 2, 0-5 cm soil layer(energy_storage_change_2)
  • Change in energy storage 1, 0-5 cm soil layer(energy_storage_change_1)
  • Change in energy storage 5, 0-5 cm soil layer(energy_storage_change_5)
  • Change in energy storage 4, 0-5 cm soil layer(energy_storage_change_4)
  • Bowen ratio(bowen_ratio)
  • Reference temperature in enclosure(temp_reference)
  • Net radiation(net_radiation)
  • AEM position indicator 15 to 30 mins(home_signal_30)
  • AEM position indicator 0 to 15 mins(home_signal_15)
  • Bottom relative humidity (fractional)(rh_bottom_fraction)
  • Soil heat flow 1, corrected for soil moisture(corr_soil_heat_flow_1)
  • Soil heat flow 2, corrected for soil moisture(corr_soil_heat_flow_2)
  • Soil heat flow 3, corrected for soil moisture(corr_soil_heat_flow_3)
  • Soil heat flow 4, corrected for soil moisture(corr_soil_heat_flow_4)
  • Soil heat flow 5, corrected for soil moisture(corr_soil_heat_flow_5)
  • Soil heat capacity 4(soil_heat_capacity_4)
  • Soil heat capacity 5(soil_heat_capacity_5)
  • Soil heat capacity 2(soil_heat_capacity_2)
  • Soil heat capacity 3(soil_heat_capacity_3)
  • Soil heat capacity 1(soil_heat_capacity_1)
  • Bottom vapor pressure(vapor_pressure_bottom)
  • Surface latent heat flux(latent_heat_flux)
  • Top T/RH sensor temperature(temp_trh_top)
  • Top relative humidity (fractional)(rh_top_fraction)
  • Wind speed vector mean(wspd_vec_mean)
more
sgpswatsE9.a1:
  • East profile sensor serial numbers(serial_numbers_E)
  • West profile sensor serial numbers(serial_numbers_W)
  • Volumetric Water Content, East Profile(watcont_E)
  • Volumetric Water Content, West Profile(watcont_W)
  • Soil Temperature, East Profile(tsoil_E)
  • Soil Temperature, West Profile(tsoil_W)
  • Reference Thermistor Temperature(tref)
  • Soil Water Potential, West Profile(soilwatpot_W)
  • Soil Water Potential, East Profile(soilwatpot_E)
  • Sensor Temperature Rise, West Profile(trise_W)
  • Sensor Temperature Rise, East Profile(trise_E)
  • depth(depth)
more
sgpmfrsrE9.00:
  • (Raw data stream - documentation not supported)
more
sgpmfrsrE34.b1:
  • cosine correction, west to east, broadband channel(cosine_correction_we_broadband)
  • Normalized filter function data, filter 3, wavelength value obtained during
    bench calibrations(wavelength_filter3)
  • Normalized filter function data, filter 4, wavelength value obtained during
    bench calibrations(wavelength_filter4)
  • Normalized filter function data, filter 5, wavelength value obtained during
    bench calibrations(wavelength_filter5)
  • Normalized filter function data, filter 6, wavelength value obtained during
    bench calibrations(wavelength_filter6)
  • Normalized filter function data, filter 1, wavelength value obtained during
    bench calibrations(wavelength_filter1)
  • Normalized filter function data, filter 2, wavelength value obtained during
    bench calibrations(wavelength_filter2)
  • Cosine correction applied to direct_horizontal_narrowband_filter2(computed_cosine_correction_filter2)
  • Cosine correction applied to direct_horizontal_narrowband_filter3(computed_cosine_correction_filter3)
  • Cosine correction applied to direct_horizontal_filter1(computed_cosine_correction_filter1)
  • Cosine correction applied to direct_horizontal_filter6(computed_cosine_correction_filter6)
  • Cosine correction applied to direct_horizontal_narrowband_filter4(computed_cosine_correction_filter4)
  • Cosine correction applied to direct_horizontal_filter5(computed_cosine_correction_filter5)
  • Nominal calibration factor, applied to filter3 data(nominal_calibration_factor_filter3)
  • Nominal calibration factor, applied to filter4 data(nominal_calibration_factor_filter4)
  • Nominal calibration factor, applied to filter5 data(nominal_calibration_factor_filter5)
  • Nominal calibration factor, applied to filter6 data(nominal_calibration_factor_filter6)
  • Nominal calibration factor, applied to filter1 data(nominal_calibration_factor_filter1)
  • Nominal calibration factor, applied to filter2 data(nominal_calibration_factor_filter2)
  • Diffuse Hemispheric Broadband Irradiance, offset corrected(diffuse_hemisp_broadband)
  • Ratio of direct_normal_broadband to diffuse_hemisp_broadband(direct_diffuse_ratio_broadband)
  • Normalized filter function data, filter 6, measured transmittance value obtained
    during bench calibrations(normalized_transmittance_filter6)
  • Normalized filter function data, filter 5, measured transmittance value obtained
    during bench calibrations(normalized_transmittance_filter5)
  • Normalized filter function data, filter 4, measured transmittance value obtained
    during bench calibrations(normalized_transmittance_filter4)
  • Normalized filter function data, filter 3, measured transmittance value obtained
    during bench calibrations(normalized_transmittance_filter3)
  • Normalized filter function data, filter 2, measured transmittance value obtained
    during bench calibrations(normalized_transmittance_filter2)
  • Normalized filter function data, filter 1, measured transmittance value obtained
    during bench calibrations(normalized_transmittance_filter1)
  • Cosine correction of broadband diffuse, assuming Rayleigh sky at 45 degree
    zenith angle(diffuse_correction_broadband)
  • angle of incidence during cosine bench measurements(bench_angle)
  • Narrowband Hemispheric Irradiance, Filter 1, offset corrected(hemisp_narrowband_filter1)
  • Narrowband Hemispheric Irradiance, Filter 2(hemisp_narrowband_filter2)
  • Narrowband hemispheric irradiance, filter 3, offset and cosine corrected(hemisp_narrowband_filter3)
  • Narrowband hemispheric irradiance, filter 4, offset and cosine corrected(hemisp_narrowband_filter4)
  • Narrowband Hemispheric Irradiance, Filter 5, offset corrected(hemisp_narrowband_filter5)
  • Narrowband hemispheric irradiance, filter 6, nominal wavelength is 935 nm(hemisp_narrowband_filter6)
  • Solar zenith angle(solar_zenith_angle)
  • Alltime Narrowband Hemispheric Irradiance, Filter 3(alltime_hemisp_narrowband_filter3)
  • Alltime narrowband hemispheric irradiance, filter 2(alltime_hemisp_narrowband_filter2)
  • Alltime narrowband hemispheric irradiance, filter 1(alltime_hemisp_narrowband_filter1)
  • Alltime Narrowband Hemispheric Irradiance, Filter 6(alltime_hemisp_narrowband_filter6)
  • Alltime narrowband hemispheric irradiance, filter 5(alltime_hemisp_narrowband_filter5)
  • Alltime Narrowband Hemispheric Irradiance, Filter 4(alltime_hemisp_narrowband_filter4)
  • Air mass(airmass)
  • Data Logger Temperature(logger_temp)
  • Direct Horizontal Broadband Irradiance(direct_horizontal_broadband)
  • Cosine correction applied to direct_horizontal_broadband(computed_cosine_correction_broadband)
  • Nominal calibration factor, applied to broadband data(nominal_calibration_factor_broadband)
  • Cosine solar zenith angle(cosine_solar_zenith_angle)
  • Alltime hemispheric broadband irradiance(alltime_hemisp_broadband)
  • Direct normal narrowband irradiance, filter 2, offset corrected(direct_normal_narrowband_filter2)
  • Narrowband Direct Normal Irradiance, Filter 3, cosine corrected(direct_normal_narrowband_filter3)
  • Narrowband Direct Normal Irradiance, Filter 1(direct_normal_narrowband_filter1)
  • Direct normal narrowband irradiance, filter 6, offset corrected(direct_normal_narrowband_filter6)
  • Direct normal narrowband irradiance, filter 4, offset corrected(direct_normal_narrowband_filter4)
  • Narrowband Direct Normal Irradiance, Filter 5(direct_normal_narrowband_filter5)
  • Elevation angle(elevation_angle)
  • Direct Normal Broadband Irradiance, cosine corrected, broadband scale applied(direct_normal_broadband)
  • Data logger supply voltage(logger_volt)
  • cosine correction, south to north, broadband channel(cosine_correction_sn_broadband)
  • Detector temperature(head_temp)
  • Offset subtracted from hemispheric and diffuse broadband data(offset_broadband)
  • Direct Horizontal Narrowband Irradiance, Filter 3(direct_horizontal_narrowband_filter3)
  • Narrowband Direct Horizontal Irradiance, Filter 4, cosine corrected(direct_horizontal_narrowband_filter4)
  • Direct horizontal narrowband irradiance, filter 1(direct_horizontal_narrowband_filter1)
  • Narrowband Direct Horizontal Irradiance, Filter 2, cosine corrected(direct_horizontal_narrowband_filter2)
  • Narrowband Direct Horizontal Irradiance, Filter 5, cosine corrected(direct_horizontal_narrowband_filter5)
  • Narrowband Direct Horizontal Irradiance, Filter 6, cosine corrected(direct_horizontal_narrowband_filter6)
  • Offset subtracted from hemispheric filter1 data(offset_filter1)
  • Offset subtracted from upwelling hemispheric filter2 data(offset_filter2)
  • Offset subtracted from upwelling hemispheric filter5 data(offset_filter5)
  • Offset subtracted from hemispheric and diffuse filter6 data(offset_filter6)
  • Offset subtracted from direct normal filter3 data(offset_filter3)
  • Offset subtracted from direct normal filter4 data(offset_filter4)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 1, offset corrected(diffuse_hemisp_narrowband_filter1)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 2, offset corrected(diffuse_hemisp_narrowband_filter2)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 3(diffuse_hemisp_narrowband_filter3)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 4(diffuse_hemisp_narrowband_filter4)
  • Narrowband diffuse hemispheric irradiance, filter 5, offset and cosine corrected(diffuse_hemisp_narrowband_filter5)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 6, offset corrected(diffuse_hemisp_narrowband_filter6)
  • Cosine correction of filter4 diffuse, assuming Rayleigh sky at 45 deg zenith
    angle(diffuse_correction_filter4)
  • Cosine correction of filter3 diffuse, assuming Rayleigh sky at 45 deg zenith
    angle(diffuse_correction_filter3)
  • Cosine correction of filter6 diffuse, assuming Rayleigh sky at 45 deg zenith
    angle(diffuse_correction_filter6)
  • Cosine correction of filter5 diffuse, assuming Rayleigh sky at 45 deg zenith
    angle(diffuse_correction_filter5)
  • Cosine correction of filter2 diffuse, assuming Rayleigh sky at 45 deg zenith
    angle(diffuse_correction_filter2)
  • Cosine correction of filter1 diffuse, assuming Rayleigh sky at 45 degree zenith
    angle(diffuse_correction_filter1)
  • Cosine correction, south to north, filter4(cosine_correction_sn_filter4)
  • cosine correction, south to north, filter5(cosine_correction_sn_filter5)
  • cosine correction, south to north, filter6(cosine_correction_sn_filter6)
  • cosine correction, south to north, filter1(cosine_correction_sn_filter1)
  • Cosine correction, south to north, filter2(cosine_correction_sn_filter2)
  • Cosine correction, south to north, filter3(cosine_correction_sn_filter3)
  • Azimuth angle(azimuth_angle)
  • Hemispheric broadband irradiance(hemisp_broadband)
  • Second detector temperature(head_temp2)
  • cosine correction, west to east, filter3(cosine_correction_we_filter3)
  • Cosine correction, west to east, filter4(cosine_correction_we_filter4)
  • Cosine correction, west to east, filter1(cosine_correction_we_filter1)
  • cosine correction, west to east, filter2(cosine_correction_we_filter2)
  • Cosine correction, west to east, filter5(cosine_correction_we_filter5)
  • cosine correction, west to east, filter6(cosine_correction_we_filter6)
  • Ratio of direct_normal_filter1 to diffuse_hemisp_filter1(direct_diffuse_ratio_filter1)
  • Ratio of direct_normal_narrowband_filter3 to diffuse_hemisp_narrowband_filter3(direct_diffuse_ratio_filter3)
  • Ratio of direct_normal_filter2 to diffuse_hemisp_filter2(direct_diffuse_ratio_filter2)
  • Ratio of direct_normal_filter5 to diffuse_hemisp_filter5(direct_diffuse_ratio_filter5)
  • Ratio of direct_normal_filter4 to diffuse_hemisp_filter4(direct_diffuse_ratio_filter4)
  • Ratio of direct_normal_narrowband_filter6 to diffuse_hemisp_narrowband_filter6(direct_diffuse_ratio_filter6)
more
sgpxsaprsurI6.a1:
  • pulse_repetition_frequency(prt)
  • Cross correlation ratio (RhoHV)(cross_correlation_ratio)
  • Time index of last ray in sweep, 0-based(sweep_end_ray_index)
  • File status(file_status)
  • Mean doppler velocity(mean_doppler_velocity)
  • Sweep number, zero-based count(sweep_number)
  • Unambiguous range(unambiguous_range)
  • ray_target_fixed_angle(fixed_angle)
  • East longitude(longitude)
  • data_volume_index_number(volume_number)
  • Differential reflectivity(differential_reflectivity)
  • Clutter filtered reflectivity in horizontal polarization(reflectivity_horizontal)
  • Differential propagation phase shift(differential_phase)
  • data_volume_start_time_utc(time_coverage_start)
  • Total power(total_power)
  • altitude(altitude)
  • transmit_pulse_mode(prt_mode)
  • Scan mode for sweep(sweep_mode)
  • Doppler spectrum width(doppler_spectrum_width)
  • Unambiguous Doppler velocity(nyquist_velocity)
  • Distance to the center of the corresponding range bin(range)
  • Beam Elevation Angle(elevation)
  • Index of first ray in sweep, 0-based(sweep_start_ray_index)
  • Specific differential phase (KDP)(specific_differential_phase)
  • Azimuth of Radar Ray(azimuth)
  • North latitude(latitude)
  • Normalized coherent power(normalized_coherent_power)
  • Time corresponding to last radial in file(time_coverage_end)
more
sgpmfrsrE11.b1:
  • Diffuse Narrowband Hemispheric Irradiance, Filter 1, offset corrected(diffuse_hemisp_narrowband_filter1)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 2, offset corrected(diffuse_hemisp_narrowband_filter2)
  • Narrowband diffuse hemispheric irradiance, filter 5, offset and cosine corrected(diffuse_hemisp_narrowband_filter5)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 6, offset corrected(diffuse_hemisp_narrowband_filter6)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 3(diffuse_hemisp_narrowband_filter3)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 4(diffuse_hemisp_narrowband_filter4)
  • Data Logger Temperature(logger_temp)
  • Nominal calibration factor, applied to filter5 data(nominal_calibration_factor_filter5)
  • Nominal calibration factor, applied to filter4 data(nominal_calibration_factor_filter4)
  • Nominal calibration factor, applied to filter6 data(nominal_calibration_factor_filter6)
  • Nominal calibration factor, applied to filter1 data(nominal_calibration_factor_filter1)
  • Nominal calibration factor, applied to filter3 data(nominal_calibration_factor_filter3)
  • Nominal calibration factor, applied to filter2 data(nominal_calibration_factor_filter2)
  • Nominal calibration factor, applied to broadband data(nominal_calibration_factor_broadband)
  • Cosine correction applied to direct_horizontal_filter5(computed_cosine_correction_filter5)
  • Cosine correction applied to direct_horizontal_filter6(computed_cosine_correction_filter6)
  • Cosine correction applied to direct_horizontal_filter1(computed_cosine_correction_filter1)
  • Cosine correction applied to direct_horizontal_narrowband_filter2(computed_cosine_correction_filter2)
  • Cosine correction applied to direct_horizontal_narrowband_filter3(computed_cosine_correction_filter3)
  • Cosine correction applied to direct_horizontal_narrowband_filter4(computed_cosine_correction_filter4)
  • cosine correction, south to north, broadband channel(cosine_correction_sn_broadband)
  • Offset subtracted from hemispheric and diffuse broadband data(offset_broadband)
  • Second detector temperature(head_temp2)
  • Data logger supply voltage(logger_volt)
  • Direct normal narrowband irradiance, filter 6, offset corrected(direct_normal_narrowband_filter6)
  • Narrowband Direct Normal Irradiance, Filter 5(direct_normal_narrowband_filter5)
  • Direct normal narrowband irradiance, filter 2, offset corrected(direct_normal_narrowband_filter2)
  • Narrowband Direct Normal Irradiance, Filter 1(direct_normal_narrowband_filter1)
  • Direct normal narrowband irradiance, filter 4, offset corrected(direct_normal_narrowband_filter4)
  • Narrowband Direct Normal Irradiance, Filter 3, cosine corrected(direct_normal_narrowband_filter3)
  • cosine correction, south to north, filter5(cosine_correction_sn_filter5)
  • cosine correction, south to north, filter6(cosine_correction_sn_filter6)
  • Cosine correction, south to north, filter3(cosine_correction_sn_filter3)
  • Cosine correction, south to north, filter4(cosine_correction_sn_filter4)
  • cosine correction, south to north, filter1(cosine_correction_sn_filter1)
  • Cosine correction, south to north, filter2(cosine_correction_sn_filter2)
  • Detector temperature(head_temp)
  • cosine correction, west to east, broadband channel(cosine_correction_we_broadband)
  • Alltime narrowband hemispheric irradiance, filter 2(alltime_hemisp_narrowband_filter2)
  • Alltime narrowband hemispheric irradiance, filter 1(alltime_hemisp_narrowband_filter1)
  • Alltime Narrowband Hemispheric Irradiance, Filter 4(alltime_hemisp_narrowband_filter4)
  • Alltime Narrowband Hemispheric Irradiance, Filter 3(alltime_hemisp_narrowband_filter3)
  • Alltime Narrowband Hemispheric Irradiance, Filter 6(alltime_hemisp_narrowband_filter6)
  • Alltime narrowband hemispheric irradiance, filter 5(alltime_hemisp_narrowband_filter5)
  • Cosine correction of filter2 diffuse, assuming Rayleigh sky at 45 deg zenith
    angle(diffuse_correction_filter2)
  • Cosine correction of filter3 diffuse, assuming Rayleigh sky at 45 deg zenith
    angle(diffuse_correction_filter3)
  • Cosine correction of filter1 diffuse, assuming Rayleigh sky at 45 degree zenith
    angle(diffuse_correction_filter1)
  • Cosine correction of filter6 diffuse, assuming Rayleigh sky at 45 deg zenith
    angle(diffuse_correction_filter6)
  • Cosine correction of filter4 diffuse, assuming Rayleigh sky at 45 deg zenith
    angle(diffuse_correction_filter4)
  • Cosine correction of filter5 diffuse, assuming Rayleigh sky at 45 deg zenith
    angle(diffuse_correction_filter5)
  • angle of incidence during cosine bench measurements(bench_angle)
  • Alltime hemispheric broadband irradiance(alltime_hemisp_broadband)
  • Air mass(airmass)
  • Elevation angle(elevation_angle)
  • Direct Horizontal Broadband Irradiance(direct_horizontal_broadband)
  • Narrowband hemispheric irradiance, filter 6, nominal wavelength is 935 nm(hemisp_narrowband_filter6)
  • Narrowband Hemispheric Irradiance, Filter 1, offset corrected(hemisp_narrowband_filter1)
  • Narrowband Hemispheric Irradiance, Filter 2(hemisp_narrowband_filter2)
  • Narrowband hemispheric irradiance, filter 3, offset and cosine corrected(hemisp_narrowband_filter3)
  • Narrowband hemispheric irradiance, filter 4, offset and cosine corrected(hemisp_narrowband_filter4)
  • Narrowband Hemispheric Irradiance, Filter 5, offset corrected(hemisp_narrowband_filter5)
  • Cosine solar zenith angle(cosine_solar_zenith_angle)
  • Cosine correction applied to direct_horizontal_broadband(computed_cosine_correction_broadband)
  • Azimuth angle(azimuth_angle)
  • Solar zenith angle(solar_zenith_angle)
  • cosine correction, west to east, filter2(cosine_correction_we_filter2)
  • cosine correction, west to east, filter3(cosine_correction_we_filter3)
  • Cosine correction, west to east, filter4(cosine_correction_we_filter4)
  • Cosine correction, west to east, filter5(cosine_correction_we_filter5)
  • Cosine correction, west to east, filter1(cosine_correction_we_filter1)
  • cosine correction, west to east, filter6(cosine_correction_we_filter6)
  • Ratio of direct_normal_filter1 to diffuse_hemisp_filter1(direct_diffuse_ratio_filter1)
  • Ratio of direct_normal_filter2 to diffuse_hemisp_filter2(direct_diffuse_ratio_filter2)
  • Ratio of direct_normal_filter5 to diffuse_hemisp_filter5(direct_diffuse_ratio_filter5)
  • Ratio of direct_normal_narrowband_filter6 to diffuse_hemisp_narrowband_filter6(direct_diffuse_ratio_filter6)
  • Ratio of direct_normal_narrowband_filter3 to diffuse_hemisp_narrowband_filter3(direct_diffuse_ratio_filter3)
  • Ratio of direct_normal_filter4 to diffuse_hemisp_filter4(direct_diffuse_ratio_filter4)
  • Direct horizontal narrowband irradiance, filter 1(direct_horizontal_narrowband_filter1)
  • Narrowband Direct Horizontal Irradiance, Filter 6, cosine corrected(direct_horizontal_narrowband_filter6)
  • Narrowband Direct Horizontal Irradiance, Filter 5, cosine corrected(direct_horizontal_narrowband_filter5)
  • Narrowband Direct Horizontal Irradiance, Filter 4, cosine corrected(direct_horizontal_narrowband_filter4)
  • Direct Horizontal Narrowband Irradiance, Filter 3(direct_horizontal_narrowband_filter3)
  • Narrowband Direct Horizontal Irradiance, Filter 2, cosine corrected(direct_horizontal_narrowband_filter2)
  • Diffuse Hemispheric Broadband Irradiance, offset corrected(diffuse_hemisp_broadband)
  • Cosine correction of broadband diffuse, assuming Rayleigh sky at 45 degree
    zenith angle(diffuse_correction_broadband)
  • Direct Normal Broadband Irradiance, cosine corrected, broadband scale applied(direct_normal_broadband)
  • Normalized filter function data, filter 6, measured transmittance value obtained
    during bench calibrations(normalized_transmittance_filter6)
  • Normalized filter function data, filter 5, measured transmittance value obtained
    during bench calibrations(normalized_transmittance_filter5)
  • Normalized filter function data, filter 4, measured transmittance value obtained
    during bench calibrations(normalized_transmittance_filter4)
  • Normalized filter function data, filter 3, measured transmittance value obtained
    during bench calibrations(normalized_transmittance_filter3)
  • Normalized filter function data, filter 2, measured transmittance value obtained
    during bench calibrations(normalized_transmittance_filter2)
  • Normalized filter function data, filter 1, measured transmittance value obtained
    during bench calibrations(normalized_transmittance_filter1)
  • Ratio of direct_normal_broadband to diffuse_hemisp_broadband(direct_diffuse_ratio_broadband)
  • Offset subtracted from direct normal filter3 data(offset_filter3)
  • Offset subtracted from upwelling hemispheric filter2 data(offset_filter2)
  • Offset subtracted from hemispheric filter1 data(offset_filter1)
  • Offset subtracted from hemispheric and diffuse filter6 data(offset_filter6)
  • Offset subtracted from upwelling hemispheric filter5 data(offset_filter5)
  • Offset subtracted from direct normal filter4 data(offset_filter4)
  • Hemispheric broadband irradiance(hemisp_broadband)
  • Normalized filter function data, filter 4, wavelength value obtained during
    bench calibrations(wavelength_filter4)
  • Normalized filter function data, filter 5, wavelength value obtained during
    bench calibrations(wavelength_filter5)
  • Normalized filter function data, filter 6, wavelength value obtained during
    bench calibrations(wavelength_filter6)
  • Normalized filter function data, filter 1, wavelength value obtained during
    bench calibrations(wavelength_filter1)
  • Normalized filter function data, filter 2, wavelength value obtained during
    bench calibrations(wavelength_filter2)
  • Normalized filter function data, filter 3, wavelength value obtained during
    bench calibrations(wavelength_filter3)
more
sgpsirs20sE36.a0:
  • Instantaneous Downwelling Hemispheric Shortwave, Pyranometer Thermopile Voltage(inst_global)
  • Instantaneous Upwelling Shortwave Hemispheric Irradiance, Pyranometer(inst_up_short_hemisp)
  • Instantaneous uncorrected downwelling shortwave diffuse, shaded pyranometer
    thermopile voltage(inst_diffuse)
  • Instantaneous Downwelling Pyrgeometer Case Thermistor Resistance, Shaded
    Pyrgeometer(inst_down_long_shaded_case_resist)
  • Instantaneous Upwelling Pyrgeometer Thermopile Pyrgeometer(inst_up_long_hemisp_tp)
  • Instantaneous direct normal shortwave irradiance, pyrheliometer thermopile
    voltage(inst_direct_normal)
  • Instantaneous downwelling pyrgeometer thermopile voltage, shaded pyrgeometer(inst_down_long_hemisp_shaded_tp)
  • Instantaneous downwelling pyrgeometer dome thermistor resistance, shaded
    pyrgeometer(inst_down_long_shaded_dome_resist)
  • Instantaneous Upwelling Pyrgeometer Case Thermistor Resistance, Pyrgeometer(inst_up_long_case_resist)
  • Instantaneous Upwelling Pyrgeometer Dome Thermistor Resistance Pyrgeometer(inst_up_long_dome_resist)
more
sgp915rwpwindmomI8.a0:
  • HLN(VN)
more
sgp915rwpprecipmomI10.a0:
  • Interpulse period(ipp)
  • Rx Bandwidth Switch Code(bswitch)
  • Sample Rate(sampr)
  • Height Index(range_gate)
  • Ave Time per Average Spectra. Also known as dwell.(spcavetime)
  • Array of heights for each sample time(height_t)
  • Time Domain Integration Time(tditime)
  • Mean atmospheric vertical velocity(mdf)
  • Vertical FFT Bandwidth(vband)
  • Pulse repetition frequency(prf)
  • Height of center of last range gate(rgl)
  • Height of Center of First Range Gate(rgf)
  • Range gate spacing(rgs)
  • Signal-to-noise-ratio(snr)
  • Delay Time to 1st Gate(dly)
  • Number of pulse code bits(pcbits)
  • 1000 * log10(noise signal level)(noise)
  • Pulse length(plen)
  • Spectral Width: vert velocity(specw)
  • Radial Velocity Spectral Resolution(vsr)
  • Individual Spectrum Integration Time(sitime)
  • Number of Coherent Samples/Spectral Point(ncoh)
  • Number of Individual Spectra/Average Spectrum(nspc)
  • Number of Valid Heights(nheight)
more
sgpmetE33.b1:
  • TBRG precipitation total(tbrg_precip_total)
  • Vapor pressure mean, calculated(vapor_pressure_mean)
  • Wind direction vector mean standard deviation(wdir_vec_std)
  • Wind speed vector mean(wspd_vec_mean)
  • Wind direction vector mean(wdir_vec_mean)
  • TBRG precipitation total, corrected(tbrg_precip_total_corr)
  • Temperature mean(temp_mean)
  • Relative humidity observed by the Raman lidar(rh_mean)
  • Wind speed arithmetic mean(wspd_arith_mean)
  • Atmospheric pressure(atmos_pressure)
more
sgpdlrhi2S01.b1:
  • Intensity (signal to noise ratio + 1)(intensity)
  • Radial velocity(radial_velocity)
  • Beam azimuth relative to Lidar home point(relative_azimuth)
  • Attenuated backscatter(attenuated_backscatter)
  • Beam Elevation Angle(elevation)
  • Distance to the center of the corresponding range bin(range)
more
sgpswatsE33.b1:
  • Reference sensor temperature rise, west profile(trise_ref_w)
  • Reference sensor temperature rise, east profile(trise_ref_e)
  • Reference Thermistor Temperature(tref)
  • Soil water potential, west profile(soilwatpot_w)
  • Soil water potential, east profile(soilwatpot_e)
  • Volumetric water content, west profile(watcont_w)
  • Volumetric water content, east profile(watcont_e)
  • Soil temperature, east profile(tsoil_e)
  • Soil temperature, west profile(tsoil_w)
  • Fractional water index, west profile(fwi_w)
  • Fractional water index, east profile(fwi_e)
  • depth(depth)
  • Sensor temperature rise, west profile(trise_w)
  • Sensor temperature rise, east profile(trise_e)
  • West profile sensor serial numbers(serial_numbers_w)
  • East profile sensor serial numbers(serial_numbers_e)
more
sgpmfrsrE9.b1:
  • Ratio of direct_normal_broadband to diffuse_hemisp_broadband(direct_diffuse_ratio_broadband)
  • Data logger supply voltage(logger_volt)
  • Alltime Narrowband Hemispheric Irradiance, Filter 4(alltime_hemisp_narrowband_filter4)
  • Alltime narrowband hemispheric irradiance, filter 5(alltime_hemisp_narrowband_filter5)
  • Alltime narrowband hemispheric irradiance, filter 2(alltime_hemisp_narrowband_filter2)
  • Alltime Narrowband Hemispheric Irradiance, Filter 3(alltime_hemisp_narrowband_filter3)
  • Alltime narrowband hemispheric irradiance, filter 1(alltime_hemisp_narrowband_filter1)
  • Alltime Narrowband Hemispheric Irradiance, Filter 6(alltime_hemisp_narrowband_filter6)
  • Offset subtracted from hemispheric and diffuse broadband data(offset_broadband)
  • Cosine correction applied to direct_horizontal_filter6(computed_cosine_correction_filter6)
  • Cosine correction applied to direct_horizontal_narrowband_filter3(computed_cosine_correction_filter3)
  • Cosine correction applied to direct_horizontal_narrowband_filter2(computed_cosine_correction_filter2)
  • Cosine correction applied to direct_horizontal_filter5(computed_cosine_correction_filter5)
  • Cosine correction applied to direct_horizontal_narrowband_filter4(computed_cosine_correction_filter4)
  • Cosine correction applied to direct_horizontal_filter1(computed_cosine_correction_filter1)
  • Nominal calibration factor, applied to filter3 data(nominal_calibration_factor_filter3)
  • Nominal calibration factor, applied to filter4 data(nominal_calibration_factor_filter4)
  • Nominal calibration factor, applied to filter1 data(nominal_calibration_factor_filter1)
  • Nominal calibration factor, applied to filter2 data(nominal_calibration_factor_filter2)
  • Nominal calibration factor, applied to filter5 data(nominal_calibration_factor_filter5)
  • Nominal calibration factor, applied to filter6 data(nominal_calibration_factor_filter6)
  • Second detector temperature(head_temp2)
  • Direct Horizontal Broadband Irradiance(direct_horizontal_broadband)
  • Azimuth angle(azimuth_angle)
  • Offset subtracted from upwelling hemispheric filter2 data(offset_filter2)
  • Offset subtracted from hemispheric filter1 data(offset_filter1)
  • Offset subtracted from direct normal filter4 data(offset_filter4)
  • Offset subtracted from direct normal filter3 data(offset_filter3)
  • Offset subtracted from hemispheric and diffuse filter6 data(offset_filter6)
  • Offset subtracted from upwelling hemispheric filter5 data(offset_filter5)
  • Direct Normal Broadband Irradiance, cosine corrected, broadband scale applied(direct_normal_broadband)
  • cosine correction, west to east, broadband channel(cosine_correction_we_broadband)
  • Nominal calibration factor, applied to broadband data(nominal_calibration_factor_broadband)
  • Cosine solar zenith angle(cosine_solar_zenith_angle)
  • Cosine correction of broadband diffuse, assuming Rayleigh sky at 45 degree
    zenith angle(diffuse_correction_broadband)
  • Solar zenith angle(solar_zenith_angle)
  • cosine correction, west to east, filter6(cosine_correction_we_filter6)
  • Cosine correction, west to east, filter5(cosine_correction_we_filter5)
  • Cosine correction, west to east, filter4(cosine_correction_we_filter4)
  • cosine correction, west to east, filter3(cosine_correction_we_filter3)
  • cosine correction, west to east, filter2(cosine_correction_we_filter2)
  • Cosine correction, west to east, filter1(cosine_correction_we_filter1)
  • Normalized filter function data, filter 2, wavelength value obtained during
    bench calibrations(wavelength_filter2)
  • Normalized filter function data, filter 1, wavelength value obtained during
    bench calibrations(wavelength_filter1)
  • Normalized filter function data, filter 4, wavelength value obtained during
    bench calibrations(wavelength_filter4)
  • Normalized filter function data, filter 3, wavelength value obtained during
    bench calibrations(wavelength_filter3)
  • Normalized filter function data, filter 6, wavelength value obtained during
    bench calibrations(wavelength_filter6)
  • Normalized filter function data, filter 5, wavelength value obtained during
    bench calibrations(wavelength_filter5)
  • Ratio of direct_normal_narrowband_filter6 to diffuse_hemisp_narrowband_filter6(direct_diffuse_ratio_filter6)
  • Ratio of direct_normal_filter4 to diffuse_hemisp_filter4(direct_diffuse_ratio_filter4)
  • Ratio of direct_normal_filter5 to diffuse_hemisp_filter5(direct_diffuse_ratio_filter5)
  • Ratio of direct_normal_filter2 to diffuse_hemisp_filter2(direct_diffuse_ratio_filter2)
  • Ratio of direct_normal_narrowband_filter3 to diffuse_hemisp_narrowband_filter3(direct_diffuse_ratio_filter3)
  • Ratio of direct_normal_filter1 to diffuse_hemisp_filter1(direct_diffuse_ratio_filter1)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 6, offset corrected(diffuse_hemisp_narrowband_filter6)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 2, offset corrected(diffuse_hemisp_narrowband_filter2)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 3(diffuse_hemisp_narrowband_filter3)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 4(diffuse_hemisp_narrowband_filter4)
  • cosine correction, south to north, broadband channel(cosine_correction_sn_broadband)
  • Narrowband diffuse hemispheric irradiance, filter 5, offset and cosine corrected(diffuse_hemisp_narrowband_filter5)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 1, offset corrected(diffuse_hemisp_narrowband_filter1)
  • Alltime hemispheric broadband irradiance(alltime_hemisp_broadband)
  • Direct normal narrowband irradiance, filter 6, offset corrected(direct_normal_narrowband_filter6)
  • Narrowband Direct Normal Irradiance, Filter 1(direct_normal_narrowband_filter1)
  • Direct normal narrowband irradiance, filter 4, offset corrected(direct_normal_narrowband_filter4)
  • Narrowband Direct Normal Irradiance, Filter 5(direct_normal_narrowband_filter5)
  • Direct normal narrowband irradiance, filter 2, offset corrected(direct_normal_narrowband_filter2)
  • Narrowband Direct Normal Irradiance, Filter 3, cosine corrected(direct_normal_narrowband_filter3)
  • Cosine correction of filter5 diffuse, assuming Rayleigh sky at 45 deg zenith
    angle(diffuse_correction_filter5)
  • Cosine correction of filter6 diffuse, assuming Rayleigh sky at 45 deg zenith
    angle(diffuse_correction_filter6)
  • Cosine correction of filter1 diffuse, assuming Rayleigh sky at 45 degree zenith
    angle(diffuse_correction_filter1)
  • Cosine correction of filter2 diffuse, assuming Rayleigh sky at 45 deg zenith
    angle(diffuse_correction_filter2)
  • Cosine correction of filter3 diffuse, assuming Rayleigh sky at 45 deg zenith
    angle(diffuse_correction_filter3)
  • Cosine correction of filter4 diffuse, assuming Rayleigh sky at 45 deg zenith
    angle(diffuse_correction_filter4)
  • cosine correction, south to north, filter1(cosine_correction_sn_filter1)
  • Cosine correction, south to north, filter4(cosine_correction_sn_filter4)
  • cosine correction, south to north, filter5(cosine_correction_sn_filter5)
  • Cosine correction, south to north, filter2(cosine_correction_sn_filter2)
  • Cosine correction, south to north, filter3(cosine_correction_sn_filter3)
  • cosine correction, south to north, filter6(cosine_correction_sn_filter6)
  • angle of incidence during cosine bench measurements(bench_angle)
  • Hemispheric broadband irradiance(hemisp_broadband)
  • Air mass(airmass)
  • Elevation angle(elevation_angle)
  • Narrowband hemispheric irradiance, filter 3, offset and cosine corrected(hemisp_narrowband_filter3)
  • Narrowband hemispheric irradiance, filter 4, offset and cosine corrected(hemisp_narrowband_filter4)
  • Narrowband Hemispheric Irradiance, Filter 1, offset corrected(hemisp_narrowband_filter1)
  • Narrowband Hemispheric Irradiance, Filter 2(hemisp_narrowband_filter2)
  • Narrowband Hemispheric Irradiance, Filter 5, offset corrected(hemisp_narrowband_filter5)
  • Narrowband hemispheric irradiance, filter 6, nominal wavelength is 935 nm(hemisp_narrowband_filter6)
  • Data Logger Temperature(logger_temp)
  • Detector temperature(head_temp)
  • Direct Horizontal Narrowband Irradiance, Filter 3(direct_horizontal_narrowband_filter3)
  • Narrowband Direct Horizontal Irradiance, Filter 4, cosine corrected(direct_horizontal_narrowband_filter4)
  • Narrowband Direct Horizontal Irradiance, Filter 5, cosine corrected(direct_horizontal_narrowband_filter5)
  • Narrowband Direct Horizontal Irradiance, Filter 6, cosine corrected(direct_horizontal_narrowband_filter6)
  • Direct horizontal narrowband irradiance, filter 1(direct_horizontal_narrowband_filter1)
  • Narrowband Direct Horizontal Irradiance, Filter 2, cosine corrected(direct_horizontal_narrowband_filter2)
  • Diffuse Hemispheric Broadband Irradiance, offset corrected(diffuse_hemisp_broadband)
  • Normalized filter function data, filter 1, measured transmittance value obtained
    during bench calibrations(normalized_transmittance_filter1)
  • Normalized filter function data, filter 2, measured transmittance value obtained
    during bench calibrations(normalized_transmittance_filter2)
  • Normalized filter function data, filter 3, measured transmittance value obtained
    during bench calibrations(normalized_transmittance_filter3)
  • Normalized filter function data, filter 4, measured transmittance value obtained
    during bench calibrations(normalized_transmittance_filter4)
  • Normalized filter function data, filter 5, measured transmittance value obtained
    during bench calibrations(normalized_transmittance_filter5)
  • Normalized filter function data, filter 6, measured transmittance value obtained
    during bench calibrations(normalized_transmittance_filter6)
  • Cosine correction applied to direct_horizontal_broadband(computed_cosine_correction_broadband)
more
sgpmfrsrlangleyE34.c1:
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter1(barnard_good_fraction_filter1)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter6(barnard_good_fraction_filter6)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter3(barnard_good_fraction_filter3)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter2(barnard_good_fraction_filter2)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter5(barnard_good_fraction_filter5)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter4(barnard_good_fraction_filter4)
  • optical depth for the Direct Narrowband Filter1(barnard_optical_depth_filter1)
  • optical depth for the Direct Narrowband Filter4(barnard_optical_depth_filter4)
  • optical depth for the Direct Narrowband Filter5(barnard_optical_depth_filter5)
  • optical depth for the Direct Narrowband Filter2(barnard_optical_depth_filter2)
  • optical depth for the Direct Narrowband Filter3(barnard_optical_depth_filter3)
  • optical depth for the Direct Narrowband Filter6(barnard_optical_depth_filter6)
  • standard deviation around regression line for the Direct BroadBand(michalsky_standard_deviation_broadband)
  • error in final linear fit for the Direct Narrowband Filter4(barnard_error_fit_filter4)
  • error in final linear fit for the Direct Narrowband Filter5(barnard_error_fit_filter5)
  • error in final linear fit for the Direct Narrowband Filter6(barnard_error_fit_filter6)
  • error in final linear fit for the Direct Narrowband Filter1(barnard_error_fit_filter1)
  • error in final linear fit for the Direct Narrowband Filter2(barnard_error_fit_filter2)
  • error in final linear fit for the Direct Narrowband Filter3(barnard_error_fit_filter3)
  • rejection flag for Direct Broadband(barnard_badflag_broadband)
  • number of points used in final linear fit for the Direct Narrowband Filter2(barnard_number_points_filter2)
  • number of points used in final linear fit for the Direct Narrowband Filter1(barnard_number_points_filter1)
  • number of points used in final linear fit for the Direct Narrowband Filter4(barnard_number_points_filter4)
  • number of points used in final linear fit for the Direct Narrowband Filter3(barnard_number_points_filter3)
  • number of points used in final linear fit for the Direct Narrowband Filter6(barnard_number_points_filter6)
  • number of points used in final linear fit for the Direct Narrowband Filter5(barnard_number_points_filter5)
  • optical depth for the Direct BroadBand(michalsky_optical_depth_broadband)
  • percentage of initial points used in final linear fit for the Direct Broadband(barnard_good_fraction_broadband)
  • rejection flag for Direct Narrowband Filter5(barnard_badflag_filter5)
  • rejection flag for Direct Narrowband Filter6(barnard_badflag_filter6)
  • rejection flag for Direct Narrowband Filter3(barnard_badflag_filter3)
  • rejection flag for Direct Narrowband Filter4(barnard_badflag_filter4)
  • rejection flag for Direct Narrowband Filter1(barnard_badflag_filter1)
  • rejection flag for Direct Narrowband Filter2(barnard_badflag_filter2)
  • error in optical depth (slope) of final linear fit for the Direct Narrowband
    Filter6(barnard_error_slope_filter6)
  • error in optical depth (slope) of final linear fit for the Direct Narrowband
    Filter3(barnard_error_slope_filter3)
  • error in optical depth (slope) of final linear fit for the Direct Narrowband
    Filter2(barnard_error_slope_filter2)
  • error in optical depth (slope) of final linear fit for the Direct Narrowband
    Filter5(barnard_error_slope_filter5)
  • error in optical depth (slope) of final linear fit for the Direct Narrowband
    Filter4(barnard_error_slope_filter4)
  • error in optical depth (slope) of final linear fit for the Direct Narrowband
    Filter1(barnard_error_slope_filter1)
  • solar constant corrected for solar distance for the Direct Narrowband Filter6(michalsky_solar_constant_sdist_filter6)
  • solar constant corrected for solar distance for the Direct Narrowband Filter5(michalsky_solar_constant_sdist_filter5)
  • solar constant corrected for solar distance for the Direct Narrowband Filter4(michalsky_solar_constant_sdist_filter4)
  • solar constant corrected for solar distance for the Direct Narrowband Filter3(michalsky_solar_constant_sdist_filter3)
  • solar constant corrected for solar distance for the Direct Narrowband Filter2(michalsky_solar_constant_sdist_filter2)
  • solar constant corrected for solar distance for the Direct Narrowband Filter1(michalsky_solar_constant_sdist_filter1)
  • Michalsky computed sun to earth distance(michalsky_sun_earth_distance)
  • number of points used in final linear fit for the Direct Narrowband Filter6(michalsky_number_points_filter6)
  • number of points used in final linear fit for the Direct Narrowband Filter4(michalsky_number_points_filter4)
  • number of points used in final linear fit for the Direct Narrowband Filter5(michalsky_number_points_filter5)
  • number of points used in final linear fit for the Direct Narrowband Filter2(michalsky_number_points_filter2)
  • number of points used in final linear fit for the Direct Narrowband Filter3(michalsky_number_points_filter3)
  • number of points used in final linear fit for the Direct Narrowband Filter1(michalsky_number_points_filter1)
  • Langley regression Io, Michalsky, Direct BroadBand(michalsky_solar_constant_broadband)
  • percentage of initial points used in final linear fit for the Direct Broadband(michalsky_good_fraction_broadband)
  • Langley regression Io, adjusted to 1AU, Barnard, Direct BroadBand(barnard_solar_constant_sdist_broadband)
  • error in optical depth (slope) of final linear fit for the Direct Broadband(barnard_error_slope_broadband)
  • optical depth for the Direct BroadBand(barnard_optical_depth_broadband)
  • rejection flag for Direct Narrowband Filter3(michalsky_badflag_filter3)
  • rejection flag for Direct Narrowband Filter2(michalsky_badflag_filter2)
  • rejection flag for Direct Narrowband Filter1(michalsky_badflag_filter1)
  • rejection flag for Direct Narrowband Filter6(michalsky_badflag_filter6)
  • rejection flag for Direct Narrowband Filter5(michalsky_badflag_filter5)
  • rejection flag for Direct Narrowband Filter4(michalsky_badflag_filter4)
  • Langley regression Io, Michalsky, Direct Narrowband Filter2(michalsky_solar_constant_filter2)
  • solar constant for the Direct Narrowband Filter1(michalsky_solar_constant_filter1)
  • Langley regression Io, Michalsky, Direct Narrowband Filter4(michalsky_solar_constant_filter4)
  • solar constant for the Direct Narrowband Filter3(michalsky_solar_constant_filter3)
  • solar constant for the Direct Narrowband Filter6(michalsky_solar_constant_filter6)
  • Langley regression Io, Michalsky, Direct Narrowband Filter5(michalsky_solar_constant_filter5)
  • solar constant corrected for solar distance for the Direct Broadband(michalsky_solar_constant_sdist_broadband)
  • optical depth for the Direct Narrowband Filter6(michalsky_optical_depth_filter6)
  • optical depth for the Direct Narrowband Filter5(michalsky_optical_depth_filter5)
  • rejection flag for Direct Broadband(michalsky_badflag_broadband)
  • optical depth for the Direct Narrowband Filter4(michalsky_optical_depth_filter4)
  • optical depth for the Direct Narrowband Filter3(michalsky_optical_depth_filter3)
  • optical depth for the Direct Narrowband Filter2(michalsky_optical_depth_filter2)
  • optical depth for the Direct Narrowband Filter1(michalsky_optical_depth_filter1)
  • error in final linear fit for the Direct BroadBand(barnard_error_fit_broadband)
  • standard deviation around regression line for the Direct Narrowband Filter1(michalsky_standard_deviation_filter1)
  • standard deviation around regression line for the Direct Narrowband Filter4(michalsky_standard_deviation_filter4)
  • standard deviation around regression line for the Direct Narrowband Filter5(michalsky_standard_deviation_filter5)
  • standard deviation around regression line for the Direct Narrowband Filter2(michalsky_standard_deviation_filter2)
  • standard deviation around regression line for the Direct Narrowband Filter3(michalsky_standard_deviation_filter3)
  • standard deviation around regression line for the Direct Narrowband Filter6(michalsky_standard_deviation_filter6)
  • number of points used in final linear fit for the Direct Broadband(michalsky_number_points_broadband)
  • Barnard computed sun to earth distance(barnard_sun_earth_distance)
  • Langley regression Io, adjusted to 1AU, Barnard, Direct Narrowband Filter4(barnard_solar_constant_sdist_filter4)
  • solar constant corrected for solar distance for the Direct Narrowband Filter5(barnard_solar_constant_sdist_filter5)
  • solar constant corrected for solar distance for the Direct Narrowband Filter6(barnard_solar_constant_sdist_filter6)
  • number of points used in final linear fit for the Direct Broadband(barnard_number_points_broadband)
  • solar constant corrected for solar distance for the Direct Narrowband Filter1(barnard_solar_constant_sdist_filter1)
  • solar constant corrected for solar distance for the Direct Narrowband Filter2(barnard_solar_constant_sdist_filter2)
  • solar constant corrected for solar distance for the Direct Narrowband Filter3(barnard_solar_constant_sdist_filter3)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter5(michalsky_good_fraction_filter5)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter6(michalsky_good_fraction_filter6)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter3(michalsky_good_fraction_filter3)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter4(michalsky_good_fraction_filter4)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter1(michalsky_good_fraction_filter1)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter2(michalsky_good_fraction_filter2)
more
sgpirtE15.b1:
  • Sky Infra-Red Temperature(sky_ir_temp)
  • Internal Reference Infra Red Temperature(ref_ir_temp)
  • Sky infrared temperature, standard deviation(sky_ir_temp_std)
  • Sky Infra Red Temperature Maxima(sky_ir_temp_max)
  • Sky Infra-Red Temperature Minima(sky_ir_temp_min)
  • Number of averaged samples(samples_in_average)
more
sgpswatsE11.a1:
  • Sensor Temperature Rise, West Profile(trise_W)
  • Sensor Temperature Rise, East Profile(trise_E)
  • Reference Thermistor Temperature(tref)
  • depth(depth)
  • Volumetric Water Content, West Profile(watcont_W)
  • Volumetric Water Content, East Profile(watcont_E)
  • West profile sensor serial numbers(serial_numbers_W)
  • East profile sensor serial numbers(serial_numbers_E)
  • Soil Water Potential, West Profile(soilwatpot_W)
  • Soil Water Potential, East Profile(soilwatpot_E)
  • Soil Temperature, East Profile(tsoil_E)
  • Soil Temperature, West Profile(tsoil_W)
more
sgp30baebbrE9.c1:
  • Best estimate Sensible heat flux(hcomb)
  • Top vapor pressure(vp_top)
  • Bowen ratio(bowen)
  • Retrieved pressure profile(pres)
  • Bottom vapor pressure(vp_bot)
  • Exchange Mechanism Position Indicator 0 to 15 mins(home_15)
  • Scalar Wind speed(wind_s)
  • Wind direction (relative to true north)(wind_d)
  • Exchange Mechanism Position Indicator 15 to 30 mins(home_30)
  • ecomb
  • corrected sensible heat flux(h)
  • Latent heat flux(e)
  • specific humidity(q)
  • Bottom air temperature(tair_bot)
  • Reference Thermistor Temperature(tref)
  • Top air temperature(tair_top)
  • Temperature of the top humidity sensor chamber(thum_top)
  • Corrected soil heat flow 3(c_shf3)
  • 5 cm soil heat flow corrected for soil moisture content, site 2(c_shf2)
  • 5 cm soil heat flow corrected for soil moisture content, site 1(c_shf1)
  • 5 cm soil heat flow corrected for soil moisture content, site 5(c_shf5)
  • Corrected soil heat flow 4(c_shf4)
  • Friction velocity(austar)
  • Temperature of the bottom humidity sensor chamber(thum_bot)
  • average surface soil heat flow(ave_shf)
  • Vegetation height outside fence(vegetation_height)
  • 0-5 cm integrated soil temperature, site 2(ts1)
  • Soil temperature 2(ts2)
  • 0-5 cm integrated soil temperature, site 3(ts3)
  • 0-5 cm integrated soil temperature, site 4(ts4)
  • 0-5 cm integrated soil temperature, site 5(ts5)
  • Soil heat capacity 5(cs5)
  • Soil heat capacity 4(cs4)
  • Soil heat capacity 3(cs3)
  • Soil heat capacity 2(cs2)
  • Soil heat capacity 1(cs1)
  • 0-5 cm change in soil heat storage with time, site 2(ces2)
  • Change in energy storage 3(ces3)
  • 0-5 cm change in soil heat storage with time, site 2(ces1)
  • Change in energy storage 4(ces4)
  • Change in energy storage 5(ces5)
  • Soil moisture 1 (mass water/mass dry soil)(sm1)
  • volumetric soil moisture, site 2(sm2)
  • volumetric soil moisture, site 3(sm3)
  • volumetric soil moisture, site 4(sm4)
  • volumetric soil moisture, site 5(sm5)
  • Aerodynamic Sensible heat flux(ah)
  • Top relative humidity(hum_top)
  • Aerodynamic Latent heat flux(ale)
  • Resultant wind speed(res_ws)
  • Bottom relative humidity(hum_bot)
  • soil heat flow, site 2(g2)
  • Soil heat flow at the surface 3(g3)
  • soil heat flow, site 4(g4)
  • soil heat flow, site 5(g5)
  • Soil heat flow at the surface 1(g1)
  • Standard deviation of wind direction (sigma theta)(sigma_wd)
  • 5 cm soil heat flow, site 1(shf1)
  • Soil heat flow 3(shf3)
  • 5 cm soil heat flow, site 2(shf2)
  • 5 cm soil heat flow, site 5(shf5)
  • 5 cm soil heat flow, site 4(shf4)
more
sgpmfrsrlangplotE11.c1:
  • log(irradiance) for the Direct Narrowband Filter6, Michalsky(michalsky_lnI_filter6)
  • log(irradiance) for the Direct Narrowband Filter5, Michalsky(michalsky_lnI_filter5)
  • log(irradiance) for the Direct Narrowband Filter4, Michalsky(michalsky_lnI_filter4)
  • log(irradiance) for the Direct Narrowband Filter3, Michalsky(michalsky_lnI_filter3)
  • log(irradiance) for the Direct Narrowband Filter2, Michalsky(michalsky_lnI_filter2)
  • log(irradiance) for the Direct Narrowband Filter1(michalsky_lnI_filter1)
  • log(irradiance) for the Direct Narrowband Filter6(barnard_lnI_filter6)
  • log(irradiance) for the Direct Narrowband Filter5(barnard_lnI_filter5)
  • log(irradiance) for the Direct Narrowband Filter4(barnard_lnI_filter4)
  • log(irradiance) for the Direct Narrowband Filter3, Barnard(barnard_lnI_filter3)
  • log(irradiance) for the Direct Narrowband Filter2, Barnard(barnard_lnI_filter2)
  • log(irradiance) for the Direct Narrowband Filter1, Barnard(barnard_lnI_filter1)
  • rejected points for the final fit for the Direct Narrowband Filter4, Barnard(barnard_rejected_filter4)
  • rejected points for the final fit for the Direct Narrowband Filter5, Barnard(barnard_rejected_filter5)
  • rejected points for the final fit for the Direct Narrowband Filter6(barnard_rejected_filter6)
  • rejected points for the final fit for the Direct Narrowband Filter1(barnard_rejected_filter1)
  • rejected points for the final fit for the Direct Narrowband Filter2(barnard_rejected_filter2)
  • rejected points for the final fit for the Direct Narrowband Filter3, Barnard(barnard_rejected_filter3)
  • rejected points for the final fit for the Direct Broadband, Barnard(barnard_rejected_broadband)
  • rejected points for the final fit for the Direct Narrowband Filter1, Michalsky(michalsky_rejected_filter1)
  • rejected points for the final fit for the Direct Narrowband Filter2(michalsky_rejected_filter2)
  • rejected points for the final fit for the Direct Narrowband Filter3, Michalsky(michalsky_rejected_filter3)
  • rejected points for the final fit for the Direct Narrowband Filter4, Michalsky(michalsky_rejected_filter4)
  • rejected points for the final fit for the Direct Narrowband Filter5, Michalsky(michalsky_rejected_filter5)
  • rejected points for the final fit for the Direct Narrowband Filter6, Michalsky(michalsky_rejected_filter6)
  • rejected points for the final fit for the Direct Broadband(michalsky_rejected_broadband)
  • log(irradiance) for the Direct Broadband(barnard_lnI_broadband)
  • log(irradiance) for the Direct Broadband(michalsky_lnI_broadband)
  • Airmasses(barnard_airmass)
  • airmass(michalsky_airmass)
more
sgp30baebbrE32.c1:
  • Soil heat capacity 5(soil_heat_capacity_5)
  • Soil heat capacity 4(soil_heat_capacity_4)
  • Soil heat capacity 3(soil_heat_capacity_3)
  • Soil heat capacity 2(soil_heat_capacity_2)
  • Soil heat capacity 1(soil_heat_capacity_1)
  • Soil heat flow 5, corrected for soil moisture(corr_soil_heat_flow_5)
  • Soil heat flow 4, corrected for soil moisture(corr_soil_heat_flow_4)
  • Soil heat flow 3, corrected for soil moisture(corr_soil_heat_flow_3)
  • Soil heat flow 2, corrected for soil moisture(corr_soil_heat_flow_2)
  • Soil heat flow 1, corrected for soil moisture(corr_soil_heat_flow_1)
  • Aerodynamic latent heat flux(aerodynamic_latent_heat_flux)
  • Best estimate latent heat flux(be_latent_heat_flux)
  • Wind direction vector mean standard deviation(wdir_vec_std)
  • Soil temperature mean 3(soil_temp_3)
  • Soil temperature 2(soil_temp_2)
  • Half hour averaged soil temperature 5(soil_temp_5)
  • Half hour averaged soil temperature 4(soil_temp_4)
  • Soil temperature 1(soil_temp_1)
  • Top T/RH sensor temperature(temp_trh_top)
  • Net radiation(net_radiation)
  • Wind speed arithmetic mean(wspd_arith_mean)
  • Aerodynamic sensible heat flux(aerodynamic_sensible_heat_flux)
  • Soil moisture 5, gravimetric(soil_moisture_5)
  • Soil moisture 4, gravimetric(soil_moisture_4)
  • Soil moisture 3, gravimetric(soil_moisture_3)
  • Soil moisture 2, gravimetric(soil_moisture_2)
  • Soil moisture 1, gravimetric(soil_moisture_1)
  • Top air temperature(temp_air_top)
  • Surface soil heat flux 5(surface_soil_heat_flux_5)
  • Surface soil heat flux 4(surface_soil_heat_flux_4)
  • Surface soil heat flux 3(surface_soil_heat_flux_3)
  • Surface soil heat flux 2(surface_soil_heat_flux_2)
  • Surface soil heat flux 1(surface_soil_heat_flux_1)
  • Change in energy storage 1, 0-5 cm soil layer(energy_storage_change_1)
  • Change in energy storage 2, 0-5 cm soil layer(energy_storage_change_2)
  • Change in energy storage 5, 0-5 cm soil layer(energy_storage_change_5)
  • Change in energy storage 3, 0-5 cm soil layer(energy_storage_change_3)
  • Change in energy storage 4, 0-5 cm soil layer(energy_storage_change_4)
  • Wind direction vector mean(wdir_vec_mean)
  • Solar radiation calculated from time of day, lat, and lon(solar_radiation)
  • Bowen ratio(bowen_ratio)
  • Top relative humidity (fractional)(rh_top_fraction)
  • Bottom T/RH sensor temperature(temp_trh_bottom)
  • Bottom vapor pressure(vapor_pressure_bottom)
  • Surface soil heat flux, average of fluxes 1-5(surface_soil_heat_flux_avg)
  • Friction velocity(friction_velocity)
  • Soil heat flow 5(soil_heat_flow_5)
  • Soil heat flow 4(soil_heat_flow_4)
  • Soil heat flow 3(soil_heat_flow_3)
  • Soil heat flow 2(soil_heat_flow_2)
  • Soil heat flow 1(soil_heat_flow_1)
  • Top vapor pressure(vapor_pressure_top)
  • Bottom air temperature(temp_air_bottom)
  • Wind speed vector mean(wspd_vec_mean)
  • Vegetation height outside fence(vegetation_height)
  • Surface sensible heat flux(sensible_heat_flux)
  • Atmospheric pressure(atmos_pressure)
  • Reference temperature in enclosure(temp_reference)
  • AEM position indicator 15 to 30 mins(home_signal_30)
  • AEM position indicator 0 to 15 mins(home_signal_15)
  • Best estimate sensible heat flux(be_sensible_heat_flux)
  • Bottom relative humidity (fractional)(rh_bottom_fraction)
  • Surface latent heat flux(latent_heat_flux)
more
sgp915rwpwindspecI8.a0:
  • HLN(VN)
more
sgpdlppiS01.a0:
  • Beam Elevation Angle(elevation)
  • Radial velocity(radial_velocity)
  • Attenuated backscatter(attenuated_backscatter)
  • Distance to the center of the corresponding range bin(range)
  • Intensity (signal to noise ratio + 1)(intensity)
  • Beam azimuth relative to Lidar home point(relative_azimuth)
more
sgp30baebbrE15.c1:
  • Corrected soil heat flow 3(c_shf3)
  • Corrected soil heat flow 4(c_shf4)
  • 5 cm soil heat flow corrected for soil moisture content, site 1(c_shf1)
  • 5 cm soil heat flow corrected for soil moisture content, site 2(c_shf2)
  • 5 cm soil heat flow corrected for soil moisture content, site 5(c_shf5)
  • Change in energy storage 5(ces5)
  • Change in energy storage 4(ces4)
  • Change in energy storage 3(ces3)
  • 0-5 cm change in soil heat storage with time, site 2(ces2)
  • 0-5 cm change in soil heat storage with time, site 2(ces1)
  • specific humidity(q)
  • corrected sensible heat flux(h)
  • Latent heat flux(e)
  • Soil heat flow at the surface 1(g1)
  • soil heat flow, site 2(g2)
  • Soil heat flow at the surface 3(g3)
  • soil heat flow, site 4(g4)
  • soil heat flow, site 5(g5)
  • Resultant wind speed(res_ws)
  • Friction velocity(austar)
  • Top air temperature(tair_top)
  • Aerodynamic Sensible heat flux(ah)
  • Bottom air temperature(tair_bot)
  • Reference Thermistor Temperature(tref)
  • Bowen ratio(bowen)
  • Best estimate Sensible heat flux(hcomb)
  • Wind direction (relative to true north)(wind_d)
  • Scalar Wind speed(wind_s)
  • Top vapor pressure(vp_top)
  • Bottom vapor pressure(vp_bot)
  • Retrieved pressure profile(pres)
  • ecomb
  • Aerodynamic Latent heat flux(ale)
  • Bottom relative humidity(hum_bot)
  • Exchange Mechanism Position Indicator 15 to 30 mins(home_30)
  • Exchange Mechanism Position Indicator 0 to 15 mins(home_15)
  • Top relative humidity(hum_top)
  • 5 cm soil heat flow, site 4(shf4)
  • Soil heat flow 3(shf3)
  • 5 cm soil heat flow, site 2(shf2)
  • 5 cm soil heat flow, site 1(shf1)
  • 5 cm soil heat flow, site 5(shf5)
  • Temperature of the bottom humidity sensor chamber(thum_bot)
  • 0-5 cm integrated soil temperature, site 2(ts1)
  • Soil temperature 2(ts2)
  • 0-5 cm integrated soil temperature, site 5(ts5)
  • 0-5 cm integrated soil temperature, site 3(ts3)
  • 0-5 cm integrated soil temperature, site 4(ts4)
  • Soil heat capacity 1(cs1)
  • Soil heat capacity 3(cs3)
  • Soil heat capacity 2(cs2)
  • Soil heat capacity 5(cs5)
  • Soil heat capacity 4(cs4)
  • Temperature of the top humidity sensor chamber(thum_top)
  • Soil moisture 1 (mass water/mass dry soil)(sm1)
  • volumetric soil moisture, site 4(sm4)
  • volumetric soil moisture, site 5(sm5)
  • volumetric soil moisture, site 2(sm2)
  • volumetric soil moisture, site 3(sm3)
  • Vegetation height outside fence(vegetation_height)
  • average surface soil heat flow(ave_shf)
  • Standard deviation of wind direction (sigma theta)(sigma_wd)
more
sgpmetE9.b1:
  • TBRG precipitation total(tbrg_precip_total)
  • TBRG precipitation total, corrected(tbrg_precip_total_corr)
  • Wind speed vector mean(wspd_vec_mean)
  • Wind direction vector mean standard deviation(wdir_vec_std)
  • Atmospheric pressure(atmos_pressure)
  • Vapor pressure mean, calculated(vapor_pressure_mean)
  • Wind speed arithmetic mean(wspd_arith_mean)
  • Temperature mean(temp_mean)
  • Relative humidity observed by the Raman lidar(rh_mean)
  • Wind direction vector mean(wdir_vec_mean)
more
sgpmetE38.b1:
  • Relative humidity observed by the Raman lidar(rh_mean)
  • TBRG precipitation total, corrected(tbrg_precip_total_corr)
  • Wind direction vector mean(wdir_vec_mean)
  • Wind speed vector mean(wspd_vec_mean)
  • Atmospheric pressure(atmos_pressure)
  • Vapor pressure mean, calculated(vapor_pressure_mean)
  • Temperature mean(temp_mean)
  • TBRG precipitation total(tbrg_precip_total)
  • Wind speed arithmetic mean(wspd_arith_mean)
  • Wind direction vector mean standard deviation(wdir_vec_std)
more
sgpmfrsrE11.a0:
  • Data Logger Temperature(logger_temp)
  • Diffuse narrowband hemispheric irradiance, filter 1(diffuse_hemisp_narrowband_filter1_raw)
  • Direct horizontal narrowband irradiance, filter 1(direct_horizontal_narrowband_filter1)
  • Narrowband Direct Horizontal Irradiance, Filter 5, cosine corrected(direct_horizontal_narrowband_filter5)
  • Narrowband Direct Horizontal Irradiance, Filter 4, cosine corrected(direct_horizontal_narrowband_filter4)
  • Direct Horizontal Narrowband Irradiance, Filter 3(direct_horizontal_narrowband_filter3)
  • Narrowband Direct Horizontal Irradiance, Filter 2, cosine corrected(direct_horizontal_narrowband_filter2)
  • Narrowband Direct Horizontal Irradiance, Filter 6, cosine corrected(direct_horizontal_narrowband_filter6)
  • Offset subtracted from hemispheric and diffuse broadband data(offset_broadband)
  • Second detector temperature(head_temp2)
  • Diffuse narrowband hemispheric irradiance, filter 6(diffuse_hemisp_narrowband_filter6_raw)
  • Data logger supply voltage(logger_volt)
  • Narrowband Hemispheric Irradiance, Filter 3(hemisp_narrowband_filter3_raw)
  • Diffuse Hemispheric Broadband Irradiance, offset corrected(diffuse_hemisp_broadband)
  • Narrowband hemispheric irradiance, filter 4, offset and cosine corrected(hemisp_narrowband_filter4)
  • Narrowband Hemispheric Irradiance, Filter 5, offset corrected(hemisp_narrowband_filter5)
  • Narrowband Hemispheric Irradiance, Filter 2(hemisp_narrowband_filter2)
  • Narrowband hemispheric irradiance, filter 3, offset and cosine corrected(hemisp_narrowband_filter3)
  • Narrowband Hemispheric Irradiance, Filter 1, offset corrected(hemisp_narrowband_filter1)
  • Narrowband hemispheric irradiance, filter 6, nominal wavelength is 935 nm(hemisp_narrowband_filter6)
  • Narrowband hemispheric irradiance, filter 2(hemisp_narrowband_filter2_raw)
  • Narrowband hemispheric irradiance, filter 5(hemisp_narrowband_filter5_raw)
  • Direct Horizontal Broadband Irradiance(direct_horizontal_broadband)
  • Diffuse narrowband hemispheric irradiance, filter 4(diffuse_hemisp_narrowband_filter4_raw)
  • Narrowband hemispheric irradiance, filter 4(hemisp_narrowband_filter4_raw)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 5(diffuse_hemisp_narrowband_filter5_raw)
  • Hemispheric broadband irradiance(hemisp_broadband)
  • Narrowband diffuse hemispheric irradiance, filter 5, offset and cosine corrected(diffuse_hemisp_narrowband_filter5)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 6, offset corrected(diffuse_hemisp_narrowband_filter6)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 3(diffuse_hemisp_narrowband_filter3)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 4(diffuse_hemisp_narrowband_filter4)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 1, offset corrected(diffuse_hemisp_narrowband_filter1)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 2, offset corrected(diffuse_hemisp_narrowband_filter2)
  • Diffuse Hemispheric Broadband Irradiance(diffuse_hemisp_broadband_raw)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 2(diffuse_hemisp_narrowband_filter2_raw)
  • Offset subtracted from direct normal filter3 data(offset_filter3)
  • Offset subtracted from upwelling hemispheric filter2 data(offset_filter2)
  • Offset subtracted from hemispheric filter1 data(offset_filter1)
  • Offset subtracted from hemispheric and diffuse filter6 data(offset_filter6)
  • Offset subtracted from upwelling hemispheric filter5 data(offset_filter5)
  • Offset subtracted from direct normal filter4 data(offset_filter4)
  • Diffuse narrowband hemispheric irradiance, filter 3(diffuse_hemisp_narrowband_filter3_raw)
  • Alltime narrowband hemispheric irradiance, filter 2(alltime_hemisp_narrowband_filter2)
  • Alltime narrowband hemispheric irradiance, filter 1(alltime_hemisp_narrowband_filter1)
  • Alltime Narrowband Hemispheric Irradiance, Filter 4(alltime_hemisp_narrowband_filter4)
  • Alltime Narrowband Hemispheric Irradiance, Filter 3(alltime_hemisp_narrowband_filter3)
  • Alltime Narrowband Hemispheric Irradiance, Filter 6(alltime_hemisp_narrowband_filter6)
  • Alltime narrowband hemispheric irradiance, filter 5(alltime_hemisp_narrowband_filter5)
  • Detector temperature(head_temp)
  • Narrowband Hemispheric Irradiance, Filter 6(hemisp_narrowband_filter6_raw)
  • Hemispheric broadband irradiance(hemisp_broadband_raw)
  • Narrowband hemispheric irradiance, filter 1(hemisp_narrowband_filter1_raw)
  • Alltime hemispheric broadband irradiance(alltime_hemisp_broadband)
more
sgpsirs20sE31.a0:
  • Instantaneous Upwelling Pyrgeometer Dome Thermistor Resistance Pyrgeometer(inst_up_long_dome_resist)
  • Instantaneous Downwelling Pyrgeometer Case Thermistor Resistance, Shaded
    Pyrgeometer(inst_down_long_shaded_case_resist)
  • Instantaneous downwelling pyrgeometer dome thermistor resistance, shaded
    pyrgeometer(inst_down_long_shaded_dome_resist)
  • Instantaneous Upwelling Pyrgeometer Thermopile Pyrgeometer(inst_up_long_hemisp_tp)
  • Instantaneous Upwelling Shortwave Hemispheric Irradiance, Pyranometer(inst_up_short_hemisp)
  • Instantaneous Upwelling Pyrgeometer Case Thermistor Resistance, Pyrgeometer(inst_up_long_case_resist)
  • Instantaneous Downwelling Hemispheric Shortwave, Pyranometer Thermopile Voltage(inst_global)
  • Instantaneous direct normal shortwave irradiance, pyrheliometer thermopile
    voltage(inst_direct_normal)
  • Instantaneous uncorrected downwelling shortwave diffuse, shaded pyranometer
    thermopile voltage(inst_diffuse)
  • Instantaneous downwelling pyrgeometer thermopile voltage, shaded pyrgeometer(inst_down_long_hemisp_shaded_tp)
more
sgpirtE21.b1:
  • Sky infrared temperature, standard deviation(sky_ir_temp_std)
  • Sky Infra-Red Temperature(sky_ir_temp)
  • Internal Reference Infra Red Temperature(ref_ir_temp)
  • Sky Infra Red Temperature Maxima(sky_ir_temp_max)
  • Sky Infra-Red Temperature Minima(sky_ir_temp_min)
  • Number of averaged samples(samples_in_average)
more
sgp30baebbrE32.s1:
  • Soil temperature 1(soil_temp_1)
  • Soil temperature mean 3(soil_temp_3)
  • Soil temperature 2(soil_temp_2)
  • Half hour averaged soil temperature 5(soil_temp_5)
  • Half hour averaged soil temperature 4(soil_temp_4)
  • Top air temperature(temp_air_top)
  • Bottom T/RH sensor temperature(temp_trh_bottom)
  • Top relative humidity (fractional)(rh_top_fraction)
  • Friction velocity(friction_velocity)
  • Solar radiation calculated from time of day, lat, and lon(solar_radiation)
  • Wind direction vector mean standard deviation(wdir_vec_std)
  • Soil heat flow 1, corrected for soil moisture(corr_soil_heat_flow_1)
  • Soil heat flow 2, corrected for soil moisture(corr_soil_heat_flow_2)
  • Soil heat flow 3, corrected for soil moisture(corr_soil_heat_flow_3)
  • Soil heat flow 4, corrected for soil moisture(corr_soil_heat_flow_4)
  • Soil heat flow 5, corrected for soil moisture(corr_soil_heat_flow_5)
  • Bottom vapor pressure(vapor_pressure_bottom)
  • Reference temperature in enclosure(temp_reference)
  • Bottom relative humidity (fractional)(rh_bottom_fraction)
  • Wind direction vector mean(wdir_vec_mean)
  • Surface sensible heat flux(sensible_heat_flux)
  • Surface soil heat flux, average of fluxes 1-5(surface_soil_heat_flux_avg)
  • Aerodynamic latent heat flux(aerodynamic_latent_heat_flux)
  • Net radiation(net_radiation)
  • Soil heat flow 2(soil_heat_flow_2)
  • Soil heat flow 1(soil_heat_flow_1)
  • Soil heat flow 4(soil_heat_flow_4)
  • Soil heat flow 3(soil_heat_flow_3)
  • Soil heat flow 5(soil_heat_flow_5)
  • Vegetation height outside fence(vegetation_height)
  • Change in energy storage 1, 0-5 cm soil layer(energy_storage_change_1)
  • Change in energy storage 2, 0-5 cm soil layer(energy_storage_change_2)
  • Change in energy storage 3, 0-5 cm soil layer(energy_storage_change_3)
  • Change in energy storage 4, 0-5 cm soil layer(energy_storage_change_4)
  • Change in energy storage 5, 0-5 cm soil layer(energy_storage_change_5)
  • Atmospheric pressure(atmos_pressure)
  • Wind speed vector mean(wspd_vec_mean)
  • Bowen ratio(bowen_ratio)
  • Top T/RH sensor temperature(temp_trh_top)
  • Best estimate sensible heat flux(be_sensible_heat_flux)
  • AEM position indicator 0 to 15 mins(home_signal_15)
  • AEM position indicator 15 to 30 mins(home_signal_30)
  • Top vapor pressure(vapor_pressure_top)
  • Surface soil heat flux 1(surface_soil_heat_flux_1)
  • Surface soil heat flux 2(surface_soil_heat_flux_2)
  • Surface soil heat flux 3(surface_soil_heat_flux_3)
  • Surface soil heat flux 4(surface_soil_heat_flux_4)
  • Surface soil heat flux 5(surface_soil_heat_flux_5)
  • Soil moisture 3, gravimetric(soil_moisture_3)
  • Soil moisture 2, gravimetric(soil_moisture_2)
  • Soil moisture 5, gravimetric(soil_moisture_5)
  • Soil moisture 4, gravimetric(soil_moisture_4)
  • Soil moisture 1, gravimetric(soil_moisture_1)
  • Surface latent heat flux(latent_heat_flux)
  • Soil heat capacity 1(soil_heat_capacity_1)
  • Soil heat capacity 2(soil_heat_capacity_2)
  • Soil heat capacity 3(soil_heat_capacity_3)
  • Soil heat capacity 4(soil_heat_capacity_4)
  • Soil heat capacity 5(soil_heat_capacity_5)
  • Aerodynamic sensible heat flux(aerodynamic_sensible_heat_flux)
  • Best estimate latent heat flux(be_latent_heat_flux)
  • Wind speed arithmetic mean(wspd_arith_mean)
  • Bottom air temperature(temp_air_bottom)
more
sgp915rwpprecipconI9.a1:
  • Radial wind speed(vel)
  • Vertical FFT Bandwidth(vband)
  • Number of Valid Heights(nheight)
  • Pulse length(plen)
  • Time Domain Integration Time(tditime)
  • Delay Time to 1st Gate(dly)
  • Height of Center of First Range Gate(rgf)
  • Height of center of last range gate(rgl)
  • Range gate spacing(rgs)
  • Number of Individual Spectra/Average Spectrum(nspc)
  • Number of pulses/ave int, Beam 0(nrec)
  • Number of Values Required for Consensus, Beam 0(nrcns)
  • Signal-to-noise-ratio(snr)
  • Pulse repetition frequency(prf)
  • Number of values that passed consensus(ncns)
  • Number of Coherent Samples/Spectral Point(ncoh)
  • Height Index(range_gate)
  • Power offset(power)
  • Array of heights for each sample time(height_p)
  • Averaging interval(avgint)
  • Interpulse period(ipp)
  • Sample Rate(sampr)
more
sgpdlrhi2S01.a0:
  • Attenuated backscatter(attenuated_backscatter)
  • Intensity (signal to noise ratio + 1)(intensity)
  • Radial velocity(radial_velocity)
  • Beam Elevation Angle(elevation)
  • Distance to the center of the corresponding range bin(range)
  • Beam azimuth relative to Lidar home point(relative_azimuth)
more
sgpsirs60sE11.a1:
  • Shortwave Direct Normal Irradiance, Pyrheliometer, Maxima(short_direct_normal_max)
  • Shortwave direct normal irradiance, pyrheliometer, minima(short_direct_normal_min)
  • Upwelling (10 meter) Longwave Hemispheric Irradiance, Ventilated Pyrgeometer,
    Standard Deviation(up_long_hemisp_std)
  • Downwelling Shortwave Hemispheric Irradiance, Ventilated Pyrgeometer, Standard
    Deviation(down_short_hemisp_std)
  • Downwelling Shortwave Diffuse Hemispheric Irradiance, Pyranometer, Standard
    Deviation(down_short_diffuse_hemisp_std)
  • Downwelling longwave hemispheric irradiance, shaded pyrgeometer, standard
    deviation(down_long_hemisp_shaded_std)
  • Downwelling Shortwave Diffuse Hemispheric Irradiance, Ventilated Pyranometer(down_short_diffuse_hemisp)
  • Downwelling longwave hemispheric irradiance, shaded pyrgeometer(down_long_hemisp_shaded)
  • 10 meter Upwelling Longwave Hemispheric Irradiance, Pyrgeometer(up_long_hemisp)
  • Downwelling shortwave diffuse hemispheric irradiance, pyranometer, maxima(down_short_diffuse_hemisp_max)
  • Downwelling Shortwave Diffuse Hemispheric Irradiance, Pyrgeometer, Minima(down_short_diffuse_hemisp_min)
  • Upwelling shortwave hemispheric irradiance, pyranometer, minima(up_short_hemisp_min)
  • Down-welling unshaded pyranometer voltage(down_short_hemisp)
  • Upwelling (10 meter) Shortwave Hemispheric Irradiance, Pyranometer, Maxima(up_short_hemisp_max)
  • Downwelling Longwave Hemispheric Irradiance, Shaded Pyrgeometer, Maxima(down_long_hemisp_shaded_max)
  • 25 meter Upwelling Shortwave Hemispheric Irradiance, Pyranometer(up_short_hemisp)
  • Shortwave direct normal irradiance, pyrheliometer(short_direct_normal)
  • Upwelling Longwave Hemispheric Irradiance, Pyrgeometer, Minima(up_long_hemisp_min)
  • Downwelling Longwave Hemispheric Irradiance, Shaded Pyrgeometer, Minima(down_long_hemisp_shaded_min)
  • Upwelling longwave hemispheric irradiance, pyrgeometer, maxima(up_long_hemisp_max)
  • Battery voltage(vBatt)
  • Upwelling (10 meter) Shortwave Hemispheric Irradiance, Ventilated Pyranometer,
    Standard Deviation(up_short_hemisp_std)
  • Shortwave Direct Normal Irradiance, Pyrgeometer, Standard Deviation(short_direct_normal_std)
  • Downwelling Shortwave Hemispheric Irradiance, Pyranometer, Minima(down_short_hemisp_min)
  • Downwelling shortwave hemispheric irradiance, pyranometer, maxima(down_short_hemisp_max)
more
sgpxsaprrhiI5.a1:
  • Azimuth of Radar Ray(azimuth)
  • Mean doppler velocity(mean_doppler_velocity)
  • Doppler spectrum width(doppler_spectrum_width)
  • File status(file_status)
  • Sweep number, zero-based count(sweep_number)
  • Clutter filtered reflectivity in horizontal polarization(reflectivity_horizontal)
  • Unambiguous Doppler velocity(nyquist_velocity)
  • Time index of last ray in sweep, 0-based(sweep_end_ray_index)
  • Cross correlation ratio (RhoHV)(cross_correlation_ratio)
  • ray_target_fixed_angle(fixed_angle)
  • Normalized coherent power(normalized_coherent_power)
  • Distance to the center of the corresponding range bin(range)
  • Scan mode for sweep(sweep_mode)
  • Index of first ray in sweep, 0-based(sweep_start_ray_index)
  • pulse_repetition_frequency(prt)
  • transmit_pulse_mode(prt_mode)
  • altitude(altitude)
  • data_volume_index_number(volume_number)
  • East longitude(longitude)
  • Total power(total_power)
  • Time corresponding to last radial in file(time_coverage_end)
  • North latitude(latitude)
  • Beam Elevation Angle(elevation)
  • Differential reflectivity(differential_reflectivity)
  • data_volume_start_time_utc(time_coverage_start)
  • Unambiguous range(unambiguous_range)
  • Specific differential phase (KDP)(specific_differential_phase)
  • Differential propagation phase shift(differential_phase)
more
sgpsirsE11.b1:
  • Downwelling longwave hemispheric irradiance, shaded pyrgeometer(down_long_hemisp_shaded)
  • Upwelling (10 meter) Longwave Hemispheric Irradiance, Ventilated Pyrgeometer,
    Standard Deviation(up_long_hemisp_std)
  • Instantaneous Upwelling Longwave Hemispheric Irradiance, Pyrgeometer(up_long_netir)
  • Down-welling unshaded pyranometer voltage(down_short_hemisp)
  • Downwelling Shortwave Diffuse Hemispheric Irradiance, Pyranometer, Standard
    Deviation(down_short_diffuse_hemisp_std)
  • Upwelling (10 meter) Shortwave Hemispheric Irradiance, Ventilated Pyranometer,
    Standard Deviation(up_short_hemisp_std)
  • Downwelling Longwave Hemispheric Irradiance, Shaded Pyrgeometer, Maxima(down_long_hemisp_shaded_max)
  • Downwelling Longwave Hemispheric Irradiance, Shaded Pyrgeometer, Minima(down_long_hemisp_shaded_min)
  • Instantaneous downwelling pyrgeometer case thermistor temperature, shaded
    pyrgeometer(inst_down_long_shaded_case_temp)
  • Downwelling longwave hemispheric net infrared(down_long_netir)
  • Shortwave Direct Normal Irradiance, Pyrheliometer, Maxima(short_direct_normal_max)
  • Shortwave direct normal irradiance, pyrheliometer, minima(short_direct_normal_min)
  • Downwelling shortwave diffuse hemispheric irradiance, pyranometer, maxima(down_short_diffuse_hemisp_max)
  • Downwelling Shortwave Diffuse Hemispheric Irradiance, Pyrgeometer, Minima(down_short_diffuse_hemisp_min)
  • 10 meter Upwelling Longwave Hemispheric Irradiance, Pyrgeometer(up_long_hemisp)
  • Upwelling (10 meter) Shortwave Hemispheric Irradiance, Pyranometer, Maxima(up_short_hemisp_max)
  • Upwelling shortwave hemispheric irradiance, pyranometer, minima(up_short_hemisp_min)
  • Downwelling Shortwave Hemispheric Irradiance, Pyranometer, Minima(down_short_hemisp_min)
  • Downwelling shortwave hemispheric irradiance, pyranometer, maxima(down_short_hemisp_max)
  • Instantaneous Downwelling Pyrgeometer Dome Thermistor Temperature, Shaded
    Pyrgeometer(inst_down_long_shaded_dome_temp)
  • Instantaneous Dome Temperature(inst_up_long_dome_temp)
  • Downwelling Shortwave Hemispheric Irradiance, Ventilated Pyrgeometer, Standard
    Deviation(down_short_hemisp_std)
  • Instantaneous upwelling pyrgeometer case thermistor temperature, pyrgeometer(inst_up_long_case_temp)
  • 25 meter Upwelling Shortwave Hemispheric Irradiance, Pyranometer(up_short_hemisp)
  • Downwelling Shortwave Diffuse Hemispheric Irradiance, Ventilated Pyranometer(down_short_diffuse_hemisp)
  • Shortwave Direct Normal Irradiance, Pyrgeometer, Standard Deviation(short_direct_normal_std)
  • Upwelling Longwave Hemispheric Irradiance, Pyrgeometer, Minima(up_long_hemisp_min)
  • Battery voltage(vBatt)
  • Shortwave direct normal irradiance, pyrheliometer(short_direct_normal)
  • Downwelling longwave hemispheric irradiance, shaded pyrgeometer, standard
    deviation(down_long_hemisp_shaded_std)
  • Upwelling longwave hemispheric irradiance, pyrgeometer, maxima(up_long_hemisp_max)
more
sgpswatsE38.b1:
  • Sensor temperature rise, east profile(trise_e)
  • Sensor temperature rise, west profile(trise_w)
  • Soil water potential, west profile(soilwatpot_w)
  • Soil water potential, east profile(soilwatpot_e)
  • Fractional water index, west profile(fwi_w)
  • Fractional water index, east profile(fwi_e)
  • depth(depth)
  • West profile sensor serial numbers(serial_numbers_w)
  • East profile sensor serial numbers(serial_numbers_e)
  • Reference sensor temperature rise, east profile(trise_ref_e)
  • Reference sensor temperature rise, west profile(trise_ref_w)
  • Soil temperature, east profile(tsoil_e)
  • Soil temperature, west profile(tsoil_w)
  • Volumetric water content, east profile(watcont_e)
  • Volumetric water content, west profile(watcont_w)
  • Reference Thermistor Temperature(tref)
more
sgpxsaprhsrhiI5.00:
  • Unfiltered reflectivity(reflectivity_unf)
  • Lag-0 co-polar correlation coefficient, clutter filtered(copol_coeff)
  • reflectivity(reflectivity)
  • Signal quality index(sig_qual_index)
  • Specific differential phase(diff_phase)
  • Mean doppler velocity(mean_doppler_velocity)
  • Doppler spectral width, clutter filtered(doppler_spectral_width)
  • Range gate(gate)
  • Differential propagation phase shift(dp_phase_shift)
  • Attenuation corrected reflectivity(reflectivity_corr)
  • Differential reflectivity, clutter filtered(diff_reflectivity)
  • Attenuation corrected differential reflectivity(diff_reflectivity_corr)
more
sgpsirsE38.b1:
  • Instantaneous upwelling pyrgeometer case thermistor temperature, pyrgeometer(inst_up_long_case_temp)
  • Downwelling Shortwave Hemispheric Irradiance, Pyranometer, Minima(down_short_hemisp_min)
  • Downwelling shortwave hemispheric irradiance, pyranometer, maxima(down_short_hemisp_max)
  • Instantaneous Upwelling Longwave Hemispheric Irradiance, Pyrgeometer(up_long_netir)
  • Upwelling shortwave hemispheric irradiance, pyranometer, minima(up_short_hemisp_min)
  • Shortwave direct normal irradiance, pyrheliometer(short_direct_normal)
  • Downwelling longwave hemispheric irradiance, shaded pyrgeometer, standard
    deviation(down_long_hemisp_shaded_std)
  • Instantaneous Downwelling Pyrgeometer Dome Thermistor Temperature, Shaded
    Pyrgeometer(inst_down_long_shaded_dome_temp)
  • Instantaneous downwelling pyrgeometer case thermistor temperature, shaded
    pyrgeometer(inst_down_long_shaded_case_temp)
  • Upwelling Longwave Hemispheric Irradiance, Pyrgeometer, Minima(up_long_hemisp_min)
  • 10 meter Upwelling Longwave Hemispheric Irradiance, Pyrgeometer(up_long_hemisp)
  • Downwelling shortwave diffuse hemispheric irradiance, pyranometer, maxima(down_short_diffuse_hemisp_max)
  • Downwelling Shortwave Diffuse Hemispheric Irradiance, Pyrgeometer, Minima(down_short_diffuse_hemisp_min)
  • Upwelling longwave hemispheric irradiance, pyrgeometer, maxima(up_long_hemisp_max)
  • Downwelling Longwave Hemispheric Irradiance, Shaded Pyrgeometer, Minima(down_long_hemisp_shaded_min)
  • Downwelling Longwave Hemispheric Irradiance, Shaded Pyrgeometer, Maxima(down_long_hemisp_shaded_max)
  • Upwelling (10 meter) Longwave Hemispheric Irradiance, Ventilated Pyrgeometer,
    Standard Deviation(up_long_hemisp_std)
  • Upwelling (10 meter) Shortwave Hemispheric Irradiance, Pyranometer, Maxima(up_short_hemisp_max)
  • Shortwave Direct Normal Irradiance, Pyrgeometer, Standard Deviation(short_direct_normal_std)
  • Downwelling Shortwave Diffuse Hemispheric Irradiance, Ventilated Pyranometer(down_short_diffuse_hemisp)
  • Downwelling longwave hemispheric net infrared(down_long_netir)
  • Battery voltage(vBatt)
  • Downwelling Shortwave Diffuse Hemispheric Irradiance, Pyranometer, Standard
    Deviation(down_short_diffuse_hemisp_std)
  • Downwelling Shortwave Hemispheric Irradiance, Ventilated Pyrgeometer, Standard
    Deviation(down_short_hemisp_std)
  • Down-welling unshaded pyranometer voltage(down_short_hemisp)
  • Downwelling longwave hemispheric irradiance, shaded pyrgeometer(down_long_hemisp_shaded)
  • Shortwave direct normal irradiance, pyrheliometer, minima(short_direct_normal_min)
  • Instantaneous Dome Temperature(inst_up_long_dome_temp)
  • Shortwave Direct Normal Irradiance, Pyrheliometer, Maxima(short_direct_normal_max)
  • 25 meter Upwelling Shortwave Hemispheric Irradiance, Pyranometer(up_short_hemisp)
  • Upwelling (10 meter) Shortwave Hemispheric Irradiance, Ventilated Pyranometer,
    Standard Deviation(up_short_hemisp_std)
more
sgpswatsE15.b1:
  • Reference Thermistor Temperature(tref)
  • Sensor temperature rise, west profile(trise_w)
  • Sensor temperature rise, east profile(trise_e)
  • Volumetric water content, west profile(watcont_w)
  • Volumetric water content, east profile(watcont_e)
  • Reference sensor temperature rise, west profile(trise_ref_w)
  • Reference sensor temperature rise, east profile(trise_ref_e)
  • Soil temperature, east profile(tsoil_e)
  • Soil temperature, west profile(tsoil_w)
  • Fractional water index, east profile(fwi_e)
  • Fractional water index, west profile(fwi_w)
  • depth(depth)
  • East profile sensor serial numbers(serial_numbers_e)
  • West profile sensor serial numbers(serial_numbers_w)
  • Soil water potential, east profile(soilwatpot_e)
  • Soil water potential, west profile(soilwatpot_w)
more
sgpmfrsrE35.a0:
  • Narrowband hemispheric irradiance, filter 2(hemisp_narrowband_filter2_raw)
  • Diffuse narrowband hemispheric irradiance, filter 6(diffuse_hemisp_narrowband_filter6_raw)
  • Narrowband hemispheric irradiance, filter 5(hemisp_narrowband_filter5_raw)
  • Alltime hemispheric broadband irradiance(alltime_hemisp_broadband)
  • Hemispheric broadband irradiance(hemisp_broadband_raw)
  • Diffuse Hemispheric Broadband Irradiance, offset corrected(diffuse_hemisp_broadband)
  • Narrowband hemispheric irradiance, filter 4(hemisp_narrowband_filter4_raw)
  • Detector temperature(head_temp)
  • Diffuse narrowband hemispheric irradiance, filter 3(diffuse_hemisp_narrowband_filter3_raw)
  • Second detector temperature(head_temp2)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 2(diffuse_hemisp_narrowband_filter2_raw)
  • Direct Horizontal Broadband Irradiance(direct_horizontal_broadband)
  • Narrowband Hemispheric Irradiance, Filter 6(hemisp_narrowband_filter6_raw)
  • Offset subtracted from hemispheric filter1 data(offset_filter1)
  • Offset subtracted from hemispheric and diffuse filter6 data(offset_filter6)
  • Offset subtracted from upwelling hemispheric filter2 data(offset_filter2)
  • Offset subtracted from direct normal filter3 data(offset_filter3)
  • Offset subtracted from direct normal filter4 data(offset_filter4)
  • Offset subtracted from upwelling hemispheric filter5 data(offset_filter5)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 5(diffuse_hemisp_narrowband_filter5_raw)
  • Narrowband hemispheric irradiance, filter 1(hemisp_narrowband_filter1_raw)
  • Data logger supply voltage(logger_volt)
  • Diffuse Hemispheric Broadband Irradiance(diffuse_hemisp_broadband_raw)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 4(diffuse_hemisp_narrowband_filter4)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 3(diffuse_hemisp_narrowband_filter3)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 2, offset corrected(diffuse_hemisp_narrowband_filter2)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 1, offset corrected(diffuse_hemisp_narrowband_filter1)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 6, offset corrected(diffuse_hemisp_narrowband_filter6)
  • Narrowband diffuse hemispheric irradiance, filter 5, offset and cosine corrected(diffuse_hemisp_narrowband_filter5)
  • Hemispheric broadband irradiance(hemisp_broadband)
  • Diffuse narrowband hemispheric irradiance, filter 4(diffuse_hemisp_narrowband_filter4_raw)
  • Diffuse narrowband hemispheric irradiance, filter 1(diffuse_hemisp_narrowband_filter1_raw)
  • Narrowband Direct Horizontal Irradiance, Filter 6, cosine corrected(direct_horizontal_narrowband_filter6)
  • Narrowband Direct Horizontal Irradiance, Filter 5, cosine corrected(direct_horizontal_narrowband_filter5)
  • Narrowband Direct Horizontal Irradiance, Filter 4, cosine corrected(direct_horizontal_narrowband_filter4)
  • Direct Horizontal Narrowband Irradiance, Filter 3(direct_horizontal_narrowband_filter3)
  • Narrowband Direct Horizontal Irradiance, Filter 2, cosine corrected(direct_horizontal_narrowband_filter2)
  • Direct horizontal narrowband irradiance, filter 1(direct_horizontal_narrowband_filter1)
  • Offset subtracted from hemispheric and diffuse broadband data(offset_broadband)
  • Narrowband Hemispheric Irradiance, Filter 3(hemisp_narrowband_filter3_raw)
  • Data Logger Temperature(logger_temp)
  • Narrowband Hemispheric Irradiance, Filter 2(hemisp_narrowband_filter2)
  • Narrowband hemispheric irradiance, filter 3, offset and cosine corrected(hemisp_narrowband_filter3)
  • Narrowband Hemispheric Irradiance, Filter 1, offset corrected(hemisp_narrowband_filter1)
  • Narrowband hemispheric irradiance, filter 6, nominal wavelength is 935 nm(hemisp_narrowband_filter6)
  • Narrowband hemispheric irradiance, filter 4, offset and cosine corrected(hemisp_narrowband_filter4)
  • Narrowband Hemispheric Irradiance, Filter 5, offset corrected(hemisp_narrowband_filter5)
  • Alltime Narrowband Hemispheric Irradiance, Filter 6(alltime_hemisp_narrowband_filter6)
  • Alltime narrowband hemispheric irradiance, filter 5(alltime_hemisp_narrowband_filter5)
  • Alltime narrowband hemispheric irradiance, filter 2(alltime_hemisp_narrowband_filter2)
  • Alltime narrowband hemispheric irradiance, filter 1(alltime_hemisp_narrowband_filter1)
  • Alltime Narrowband Hemispheric Irradiance, Filter 4(alltime_hemisp_narrowband_filter4)
  • Alltime Narrowband Hemispheric Irradiance, Filter 3(alltime_hemisp_narrowband_filter3)
more
sgp915rwpwindspecI10.a0:
  • Rx Bandwidth Switch Code(bswitch)
  • Range gate spacing(rgs)
  • Height of Center of First Range Gate(rgf)
  • Height of center of last range gate(rgl)
  • Oblique FFT bandwidth(oband)
  • Spectral Data(spc_amp)
  • Ave Time per Average Spectra.(spcavetim)
  • Pulse repetition frequency(prf)
  • Number of Individual Spectra/Average Spectrum(nspc)
  • Number of Coherent Samples/Spectral Point(ncoh)
  • Number of pulse code bits(pcbits)
  • Pulse length(plen)
  • Individual Spectrum Integration Time(sitime)
  • Number of Valid Heights(nheight)
  • Beam elevation angle(beam_elevation)
  • Sample Rate(sampr)
  • Height Index(range_gate)
  • Interpulse period(ipp)
  • Vertical FFT Bandwidth(vband)
  • Particle radius at logarithmic center of bin(bins)
  • Beam azimuth angle(beam_azimuth)
  • Radial Velocity Spectral Resolution(vsr)
  • Delay Time to 1st Gate(dly)
  • Array of heights for each sample time(height_t)
  • Time Domain Integration Time(tditime)
more
sgpirt200msE36.a1:
  • Internal Reference Infra Red Temperature(ref_ir_temp)
  • Sky Infra-Red Temperature(sky_ir_temp)
more
sgpsebsE31.b1:
  • Net radiation(net radiation)
  • Surface energy balance(surface_energy_balance)
  • Wetness, rain detector(wetness)
  • Soil temperature 1(soil_temp_1)
  • Soil temperature 2(soil_temp_2)
  • Soil temperature mean 3(soil_temp_3)
  • 25 meter Upwelling Shortwave Hemispheric Irradiance, Pyranometer(up_short_hemisp)
  • Surface soil heat flux 2(surface_soil_heat_flux_2)
  • Surface soil heat flux 3(surface_soil_heat_flux_3)
  • Surface soil heat flux 1(surface_soil_heat_flux_1)
  • Net radiometer temperature(temp_net_radiometer)
  • Surface longwave irradiance(up_long)
  • cloud narrowband albedo(albedo)
  • Soil heat flow 1, corrected for soil moisture(corr_soil_heat_flow_1)
  • Soil heat flow 2, corrected for soil moisture(corr_soil_heat_flow_2)
  • Soil heat flow 3, corrected for soil moisture(corr_soil_heat_flow_3)
  • Change in energy storage 3, 0-5 cm soil layer(energy_storage_change_3)
  • Change in energy storage 1, 0-5 cm soil layer(energy_storage_change_1)
  • Change in energy storage 2, 0-5 cm soil layer(energy_storage_change_2)
  • Soil moisture 2, gravimetric(soil_moisture_2)
  • Soil moisture 3, gravimetric(soil_moisture_3)
  • Soil moisture 1, gravimetric(soil_moisture_1)
  • Soil heat flow 3(soil_heat_flow_3)
  • Soil heat flow 2(soil_heat_flow_2)
  • Soil heat flow 1(soil_heat_flow_1)
  • Battery voltage(battery_voltage)
  • Down-welling unshaded pyranometer voltage(down_short_hemisp)
  • Sky longwave irradiance(down_long)
  • Soil heat capacity 3(soil_heat_capacity_3)
  • Soil heat capacity 1(soil_heat_capacity_1)
  • Soil heat capacity 2(soil_heat_capacity_2)
  • Surface soil heat flux, average of fluxes 1-5(surface_soil_heat_flux_avg)
more
sgpsirsE11.a2:
  • 25 meter Upwelling Shortwave Hemispheric Irradiance, Pyranometer(up_short_hemisp)
  • Downwelling Longwave Hemispheric Irradiance, Shaded Pyrgeometer, Minima(down_long_hemisp_shaded_min)
  • Upwelling (10 meter) Longwave Hemispheric Irradiance, Ventilated Pyrgeometer,
    Standard Deviation(up_long_hemisp_std)
  • Downwelling Longwave Hemispheric Irradiance, Shaded Pyrgeometer, Maxima(down_long_hemisp_shaded_max)
  • Downwelling longwave hemispheric net infrared(down_long_netir)
  • Shortwave Direct Normal Irradiance, Pyrgeometer, Standard Deviation(short_direct_normal_std)
  • Upwelling (10 meter) Shortwave Hemispheric Irradiance, Ventilated Pyranometer,
    Standard Deviation(up_short_hemisp_std)
  • Downwelling Shortwave Diffuse Hemispheric Irradiance, Ventilated Pyranometer(down_short_diffuse_hemisp)
  • Shortwave direct normal irradiance, pyrheliometer, minima(short_direct_normal_min)
  • Shortwave Direct Normal Irradiance, Pyrheliometer, Maxima(short_direct_normal_max)
  • Downwelling Shortwave Hemispheric Irradiance, Ventilated Pyrgeometer, Standard
    Deviation(down_short_hemisp_std)
  • Downwelling Shortwave Diffuse Hemispheric Irradiance, Pyranometer, Standard
    Deviation(down_short_diffuse_hemisp_std)
  • Down-welling unshaded pyranometer voltage(down_short_hemisp)
  • Downwelling longwave hemispheric irradiance, shaded pyrgeometer(down_long_hemisp_shaded)
  • Downwelling longwave hemispheric irradiance, shaded pyrgeometer, standard
    deviation(down_long_hemisp_shaded_std)
  • Battery voltage(vBatt)
  • Instantaneous downwelling pyrgeometer case thermistor temperature, shaded
    pyrgeometer(inst_down_long_shaded_case_temp)
  • Instantaneous Downwelling Pyrgeometer Dome Thermistor Temperature, Shaded
    Pyrgeometer(inst_down_long_shaded_dome_temp)
  • Upwelling (10 meter) Shortwave Hemispheric Irradiance, Pyranometer, Maxima(up_short_hemisp_max)
  • Upwelling shortwave hemispheric irradiance, pyranometer, minima(up_short_hemisp_min)
  • Instantaneous Upwelling Longwave Hemispheric Irradiance, Pyrgeometer(up_long_netir)
  • Downwelling Shortwave Hemispheric Irradiance, Pyranometer, Minima(down_short_hemisp_min)
  • Downwelling Shortwave Diffuse Hemispheric Irradiance, Pyrgeometer, Minima(down_short_diffuse_hemisp_min)
  • Downwelling shortwave hemispheric irradiance, pyranometer, maxima(down_short_hemisp_max)
  • Downwelling shortwave diffuse hemispheric irradiance, pyranometer, maxima(down_short_diffuse_hemisp_max)
  • 10 meter Upwelling Longwave Hemispheric Irradiance, Pyrgeometer(up_long_hemisp)
  • Instantaneous Dome Temperature(inst_up_long_dome_temp)
  • Shortwave direct normal irradiance, pyrheliometer(short_direct_normal)
  • Instantaneous upwelling pyrgeometer case thermistor temperature, pyrgeometer(inst_up_long_case_temp)
  • Upwelling Longwave Hemispheric Irradiance, Pyrgeometer, Minima(up_long_hemisp_min)
  • Upwelling longwave hemispheric irradiance, pyrgeometer, maxima(up_long_hemisp_max)
more
sgpsirsE9.b1:
  • 10 meter Upwelling Longwave Hemispheric Irradiance, Pyrgeometer(up_long_hemisp)
  • Downwelling Shortwave Diffuse Hemispheric Irradiance, Pyrgeometer, Minima(down_short_diffuse_hemisp_min)
  • Downwelling shortwave diffuse hemispheric irradiance, pyranometer, maxima(down_short_diffuse_hemisp_max)
  • Instantaneous Upwelling Longwave Hemispheric Irradiance, Pyrgeometer(up_long_netir)
  • Upwelling (10 meter) Longwave Hemispheric Irradiance, Ventilated Pyrgeometer,
    Standard Deviation(up_long_hemisp_std)
  • Instantaneous Dome Temperature(inst_up_long_dome_temp)
  • Shortwave Direct Normal Irradiance, Pyrheliometer, Maxima(short_direct_normal_max)
  • Shortwave direct normal irradiance, pyrheliometer(short_direct_normal)
  • Shortwave direct normal irradiance, pyrheliometer, minima(short_direct_normal_min)
  • Down-welling unshaded pyranometer voltage(down_short_hemisp)
  • Instantaneous upwelling pyrgeometer case thermistor temperature, pyrgeometer(inst_up_long_case_temp)
  • Downwelling Shortwave Diffuse Hemispheric Irradiance, Pyranometer, Standard
    Deviation(down_short_diffuse_hemisp_std)
  • Upwelling (10 meter) Shortwave Hemispheric Irradiance, Ventilated Pyranometer,
    Standard Deviation(up_short_hemisp_std)
  • Downwelling Longwave Hemispheric Irradiance, Shaded Pyrgeometer, Maxima(down_long_hemisp_shaded_max)
  • Downwelling shortwave hemispheric irradiance, pyranometer, maxima(down_short_hemisp_max)
  • Downwelling Longwave Hemispheric Irradiance, Shaded Pyrgeometer, Minima(down_long_hemisp_shaded_min)
  • Downwelling Shortwave Hemispheric Irradiance, Pyranometer, Minima(down_short_hemisp_min)
  • Battery voltage(vBatt)
  • Downwelling longwave hemispheric net infrared(down_long_netir)
  • Downwelling longwave hemispheric irradiance, shaded pyrgeometer, standard
    deviation(down_long_hemisp_shaded_std)
  • Upwelling longwave hemispheric irradiance, pyrgeometer, maxima(up_long_hemisp_max)
  • Upwelling Longwave Hemispheric Irradiance, Pyrgeometer, Minima(up_long_hemisp_min)
  • 25 meter Upwelling Shortwave Hemispheric Irradiance, Pyranometer(up_short_hemisp)
  • Downwelling longwave hemispheric irradiance, shaded pyrgeometer(down_long_hemisp_shaded)
  • Instantaneous downwelling pyrgeometer case thermistor temperature, shaded
    pyrgeometer(inst_down_long_shaded_case_temp)
  • Upwelling (10 meter) Shortwave Hemispheric Irradiance, Pyranometer, Maxima(up_short_hemisp_max)
  • Downwelling Shortwave Hemispheric Irradiance, Ventilated Pyrgeometer, Standard
    Deviation(down_short_hemisp_std)
  • Upwelling shortwave hemispheric irradiance, pyranometer, minima(up_short_hemisp_min)
  • Instantaneous Downwelling Pyrgeometer Dome Thermistor Temperature, Shaded
    Pyrgeometer(inst_down_long_shaded_dome_temp)
  • Shortwave Direct Normal Irradiance, Pyrgeometer, Standard Deviation(short_direct_normal_std)
  • Downwelling Shortwave Diffuse Hemispheric Irradiance, Ventilated Pyranometer(down_short_diffuse_hemisp)
more
sgpsirsE11.a1:
  • Downwelling Shortwave Diffuse Hemispheric Irradiance, Pyranometer, Standard
    Deviation(down_short_diffuse_hemisp_std)
  • Shortwave Direct Normal Irradiance, Pyrgeometer, Standard Deviation(short_direct_normal_std)
  • Downwelling shortwave hemispheric irradiance, pyranometer, maxima(down_short_hemisp_max)
  • Upwelling (10 meter) Shortwave Hemispheric Irradiance, Ventilated Pyranometer,
    Standard Deviation(up_short_hemisp_std)
  • Downwelling Shortwave Diffuse Hemispheric Irradiance, Ventilated Pyranometer(down_short_diffuse_hemisp)
  • Downwelling Shortwave Hemispheric Irradiance, Pyranometer, Minima(down_short_hemisp_min)
  • Battery voltage(vBatt)
  • Upwelling (10 meter) Longwave Hemispheric Irradiance, Ventilated Pyrgeometer,
    Standard Deviation(up_long_hemisp_std)
  • Downwelling Longwave Hemispheric Irradiance, Pyrgeometer, Maxima(down_long_hemisp_max)
  • Downwelling Longwave Hemispheric Irradiance, Pyrgeometer, Minima(down_long_hemisp_min)
  • 25 meter Upwelling Shortwave Hemispheric Irradiance, Pyranometer(up_short_hemisp)
  • Downwelling Shortwave Hemispheric Irradiance, Ventilated Pyrgeometer, Standard
    Deviation(down_short_hemisp_std)
  • Shortwave Direct Normal Irradiance, Pyrheliometer, Maxima(short_direct_normal_max)
  • Downwelling shortwave diffuse hemispheric irradiance, pyranometer, maxima(down_short_diffuse_hemisp_max)
  • Downwelling Shortwave Diffuse Hemispheric Irradiance, Pyrgeometer, Minima(down_short_diffuse_hemisp_min)
  • Shortwave direct normal irradiance, pyrheliometer, minima(short_direct_normal_min)
  • Upwelling (10 meter) Shortwave Hemispheric Irradiance, Pyranometer, Maxima(up_short_hemisp_max)
  • Shortwave direct normal irradiance, pyrheliometer(short_direct_normal)
  • Upwelling shortwave hemispheric irradiance, pyranometer, minima(up_short_hemisp_min)
  • 10 meter Upwelling Longwave Hemispheric Irradiance, Pyrgeometer(up_long_hemisp)
  • Down-welling unshaded pyranometer voltage(down_short_hemisp)
  • Downwelling longwave hemispheric irradiance, pyrgeometer(down_long_hemisp)
  • Upwelling Longwave Hemispheric Irradiance, Pyrgeometer, Minima(up_long_hemisp_min)
  • Downwelling Longwave Hemispheric Irradiance, Ventilated Pyrgeometer, Standard
    Deviation(down_long_hemisp_std)
  • Upwelling longwave hemispheric irradiance, pyrgeometer, maxima(up_long_hemisp_max)
more
sgpsirsE33.b1:
  • 25 meter Upwelling Shortwave Hemispheric Irradiance, Pyranometer(up_short_hemisp)
  • Downwelling Shortwave Hemispheric Irradiance, Ventilated Pyrgeometer, Standard
    Deviation(down_short_hemisp_std)
  • Instantaneous Dome Temperature(inst_up_long_dome_temp)
  • Upwelling (10 meter) Longwave Hemispheric Irradiance, Ventilated Pyrgeometer,
    Standard Deviation(up_long_hemisp_std)
  • Instantaneous downwelling pyrgeometer case thermistor temperature, shaded
    pyrgeometer(inst_down_long_shaded_case_temp)
  • Instantaneous upwelling pyrgeometer case thermistor temperature, pyrgeometer(inst_up_long_case_temp)
  • Battery voltage(vBatt)
  • Instantaneous Downwelling Pyrgeometer Dome Thermistor Temperature, Shaded
    Pyrgeometer(inst_down_long_shaded_dome_temp)
  • Downwelling Shortwave Diffuse Hemispheric Irradiance, Ventilated Pyranometer(down_short_diffuse_hemisp)
  • Downwelling Shortwave Diffuse Hemispheric Irradiance, Pyranometer, Standard
    Deviation(down_short_diffuse_hemisp_std)
  • Downwelling longwave hemispheric net infrared(down_long_netir)
  • Upwelling Longwave Hemispheric Irradiance, Pyrgeometer, Minima(up_long_hemisp_min)
  • Upwelling longwave hemispheric irradiance, pyrgeometer, maxima(up_long_hemisp_max)
  • Downwelling shortwave diffuse hemispheric irradiance, pyranometer, maxima(down_short_diffuse_hemisp_max)
  • Downwelling Shortwave Diffuse Hemispheric Irradiance, Pyrgeometer, Minima(down_short_diffuse_hemisp_min)
  • 10 meter Upwelling Longwave Hemispheric Irradiance, Pyrgeometer(up_long_hemisp)
  • Instantaneous Upwelling Longwave Hemispheric Irradiance, Pyrgeometer(up_long_netir)
  • Downwelling Longwave Hemispheric Irradiance, Shaded Pyrgeometer, Maxima(down_long_hemisp_shaded_max)
  • Downwelling Longwave Hemispheric Irradiance, Shaded Pyrgeometer, Minima(down_long_hemisp_shaded_min)
  • Shortwave direct normal irradiance, pyrheliometer, minima(short_direct_normal_min)
  • Downwelling Shortwave Hemispheric Irradiance, Pyranometer, Minima(down_short_hemisp_min)
  • Shortwave Direct Normal Irradiance, Pyrheliometer, Maxima(short_direct_normal_max)
  • Downwelling shortwave hemispheric irradiance, pyranometer, maxima(down_short_hemisp_max)
  • Upwelling (10 meter) Shortwave Hemispheric Irradiance, Pyranometer, Maxima(up_short_hemisp_max)
  • Upwelling shortwave hemispheric irradiance, pyranometer, minima(up_short_hemisp_min)
  • Downwelling longwave hemispheric irradiance, shaded pyrgeometer(down_long_hemisp_shaded)
  • Downwelling longwave hemispheric irradiance, shaded pyrgeometer, standard
    deviation(down_long_hemisp_shaded_std)
  • Shortwave Direct Normal Irradiance, Pyrgeometer, Standard Deviation(short_direct_normal_std)
  • Upwelling (10 meter) Shortwave Hemispheric Irradiance, Ventilated Pyranometer,
    Standard Deviation(up_short_hemisp_std)
  • Shortwave direct normal irradiance, pyrheliometer(short_direct_normal)
  • Down-welling unshaded pyranometer voltage(down_short_hemisp)
more
sgp5ebbrE15.b1:
  • Top T/RH sensor temperature(temp_trh_top)
  • Net radiation(net_radiation)
  • Top vapor pressure(vapor_pressure_top)
  • Wind direction vector mean(wdir_vec_mean)
  • Bottom relative humidity (fractional)(rh_bottom_fraction)
  • AEM position indicator(home_signal)
  • Atmospheric pressure(atmos_pressure)
  • Reference temperature in enclosure(temp_reference)
  • Top air temperature(temp_air_top)
  • Bottom T/RH sensor temperature(temp_trh_bottom)
  • Wind direction vector mean standard deviation(wdir_vec_std)
  • Top relative humidity (fractional)(rh_top_fraction)
  • Wind speed vector mean(wspd_vec_mean)
  • Wind speed arithmetic mean(wspd_arith_mean)
  • Bottom air temperature(temp_air_bottom)
  • Bottom vapor pressure(vapor_pressure_bottom)
more
sgp15ebbrE12.b1:
  • Soil temperature 3 (resistance ratio)(soil_temp_3_rr)
  • Right air temperature(temp_air_right)
  • Soil heat flow 5 (mV)(soil_heat_flow_5_mv)
  • Right relative humidity (mV)(rh_right_mv)
  • Soil moisture 2 (resistance ratio)(soil_moisture_2_rr)
  • Soil heat flow 4 (mV)(soil_heat_flow_4_mv)
  • Soil moisture 5 (resistance)(soil_moisture_5_r)
  • Atmospheric pressure (mV)(atmos_pressure_mv)
  • Soil moisture 1 (resistance ratio)(soil_moisture_1_rr)
  • Battery voltage(battery_voltage)
  • AEM position indicator(home_signal)
  • Right T/RH sensor temperature (resistance ratio)(temp_trh_right_rr)
  • Soil heat flow 3 (mV)(soil_heat_flow_3_mv)
  • Soil temperature 4 (resistance ratio)(soil_temp_4_rr)
  • Soil moisture 1 (resistance)(soil_moisture_1_r)
  • Left T/RH sensor temperature (resistance ratio)(temp_trh_left_rr)
  • Reference temperature in enclosure (resistance ratio)(temp_reference_rr)
  • Left air temperature(temp_air_left)
  • Soil moisture 5 (resistance ratio)(soil_moisture_5_rr)
  • Soil moisture 2 (resistance)(soil_moisture_2_r)
  • Soil heat flow 2 (mV)(soil_heat_flow_2_mv)
  • Soil moisture 3 (resistance)(soil_moisture_3_r)
  • Soil temperature 5 (resistance ratio)(soil_temp_5_rr)
  • Soil moisture 4 (resistance)(soil_moisture_4_r)
  • Soil moisture 4 (resistance ratio)(soil_moisture_4_rr)
  • Soil heat flow 1 (mV)(soil_heat_flow_1_mv)
  • Wind direction vector mean (mV)(wdir_vec_mean_mv)
  • Soil temperature 2 (resistance ratio)(soil_temp_2_rr)
  • Soil temperature 1 (resistance ratio)(soil_temp_1_rr)
  • Soil moisture 3 (resistance ratio)(soil_moisture_3_rr)
  • Left relative humidity (mV)(rh_left_mv)
  • Wind speed arithmetic mean(wspd_arith_mean)
  • Net radiation (mV)(net_radiation_mv)
more
sgpmfrsrlangplotE34.c1:
  • log(irradiance) for the Direct Broadband(barnard_lnI_broadband)
  • Airmasses(barnard_airmass)
  • rejected points for the final fit for the Direct Broadband(michalsky_rejected_broadband)
  • rejected points for the final fit for the Direct Narrowband Filter4, Barnard(barnard_rejected_filter4)
  • rejected points for the final fit for the Direct Narrowband Filter3, Barnard(barnard_rejected_filter3)
  • rejected points for the final fit for the Direct Narrowband Filter6(barnard_rejected_filter6)
  • rejected points for the final fit for the Direct Narrowband Filter5, Barnard(barnard_rejected_filter5)
  • rejected points for the final fit for the Direct Narrowband Filter2(barnard_rejected_filter2)
  • rejected points for the final fit for the Direct Narrowband Filter1(barnard_rejected_filter1)
  • log(irradiance) for the Direct Broadband(michalsky_lnI_broadband)
  • log(irradiance) for the Direct Narrowband Filter6(barnard_lnI_filter6)
  • log(irradiance) for the Direct Narrowband Filter2, Barnard(barnard_lnI_filter2)
  • log(irradiance) for the Direct Narrowband Filter3, Barnard(barnard_lnI_filter3)
  • log(irradiance) for the Direct Narrowband Filter4(barnard_lnI_filter4)
  • log(irradiance) for the Direct Narrowband Filter5(barnard_lnI_filter5)
  • log(irradiance) for the Direct Narrowband Filter1, Barnard(barnard_lnI_filter1)
  • log(irradiance) for the Direct Narrowband Filter5, Michalsky(michalsky_lnI_filter5)
  • log(irradiance) for the Direct Narrowband Filter6, Michalsky(michalsky_lnI_filter6)
  • log(irradiance) for the Direct Narrowband Filter3, Michalsky(michalsky_lnI_filter3)
  • log(irradiance) for the Direct Narrowband Filter4, Michalsky(michalsky_lnI_filter4)
  • log(irradiance) for the Direct Narrowband Filter1(michalsky_lnI_filter1)
  • log(irradiance) for the Direct Narrowband Filter2, Michalsky(michalsky_lnI_filter2)
  • rejected points for the final fit for the Direct Narrowband Filter6, Michalsky(michalsky_rejected_filter6)
  • rejected points for the final fit for the Direct Narrowband Filter5, Michalsky(michalsky_rejected_filter5)
  • rejected points for the final fit for the Direct Narrowband Filter4, Michalsky(michalsky_rejected_filter4)
  • rejected points for the final fit for the Direct Narrowband Filter3, Michalsky(michalsky_rejected_filter3)
  • rejected points for the final fit for the Direct Narrowband Filter2(michalsky_rejected_filter2)
  • rejected points for the final fit for the Direct Narrowband Filter1, Michalsky(michalsky_rejected_filter1)
  • airmass(michalsky_airmass)
  • rejected points for the final fit for the Direct Broadband, Barnard(barnard_rejected_broadband)
more
sgpirt200msE11.a1:
  • Sky Infra-Red Temperature(sky_ir_temp)
  • Internal Reference Infra Red Temperature(ref_ir_temp)
more
sgpmfrsrlangleyE15.c1:
  • error in final linear fit for the Direct Narrowband Filter6(barnard_error_fit_filter6)
  • error in final linear fit for the Direct Narrowband Filter5(barnard_error_fit_filter5)
  • error in final linear fit for the Direct Narrowband Filter4(barnard_error_fit_filter4)
  • error in final linear fit for the Direct Narrowband Filter3(barnard_error_fit_filter3)
  • error in final linear fit for the Direct Narrowband Filter2(barnard_error_fit_filter2)
  • error in final linear fit for the Direct Narrowband Filter1(barnard_error_fit_filter1)
  • rejection flag for Direct Broadband(barnard_badflag_broadband)
  • Angstrom exponent(barnard_angstrom_exponent)
  • percentage of initial points used in final linear fit for the Direct Broadband(michalsky_good_fraction_broadband)
  • Angstrom exponent(michalsky_angstrom_exponent)
  • percentage of initial points used in final linear fit for the Direct Broadband(barnard_good_fraction_broadband)
  • Langley regression Io, Michalsky, Direct Narrowband Filter4(michalsky_solar_constant_filter4)
  • Langley regression Io, Michalsky, Direct Narrowband Filter5(michalsky_solar_constant_filter5)
  • solar constant for the Direct Narrowband Filter6(michalsky_solar_constant_filter6)
  • solar constant for the Direct Narrowband Filter1(michalsky_solar_constant_filter1)
  • Langley regression Io, Michalsky, Direct Narrowband Filter2(michalsky_solar_constant_filter2)
  • solar constant for the Direct Narrowband Filter3(michalsky_solar_constant_filter3)
  • solar constant corrected for solar distance for the Direct Broadband(michalsky_solar_constant_sdist_broadband)
  • solar constant corrected for solar distance for the Direct Narrowband Filter1(michalsky_solar_constant_sdist_filter1)
  • solar constant corrected for solar distance for the Direct Narrowband Filter2(michalsky_solar_constant_sdist_filter2)
  • solar constant corrected for solar distance for the Direct Narrowband Filter3(michalsky_solar_constant_sdist_filter3)
  • solar constant corrected for solar distance for the Direct Narrowband Filter4(michalsky_solar_constant_sdist_filter4)
  • solar constant corrected for solar distance for the Direct Narrowband Filter5(michalsky_solar_constant_sdist_filter5)
  • solar constant corrected for solar distance for the Direct Narrowband Filter6(michalsky_solar_constant_sdist_filter6)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter4(barnard_good_fraction_filter4)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter3(barnard_good_fraction_filter3)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter2(barnard_good_fraction_filter2)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter1(barnard_good_fraction_filter1)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter6(barnard_good_fraction_filter6)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter5(barnard_good_fraction_filter5)
  • optical depth for the Direct Narrowband Filter2(michalsky_optical_depth_filter2)
  • optical depth for the Direct Narrowband Filter3(michalsky_optical_depth_filter3)
  • optical depth for the Direct Narrowband Filter1(michalsky_optical_depth_filter1)
  • optical depth for the Direct Narrowband Filter6(michalsky_optical_depth_filter6)
  • optical depth for the Direct Narrowband Filter4(michalsky_optical_depth_filter4)
  • optical depth for the Direct Narrowband Filter5(michalsky_optical_depth_filter5)
  • standard deviation around regression line for the Direct BroadBand(michalsky_standard_deviation_broadband)
  • number of points used in final linear fit for the Direct Broadband(barnard_number_points_broadband)
  • rejection flag for Direct Narrowband Filter5(michalsky_badflag_filter5)
  • rejection flag for Direct Narrowband Filter6(michalsky_badflag_filter6)
  • rejection flag for Direct Narrowband Filter3(michalsky_badflag_filter3)
  • rejection flag for Direct Narrowband Filter4(michalsky_badflag_filter4)
  • rejection flag for Direct Narrowband Filter1(michalsky_badflag_filter1)
  • rejection flag for Direct Narrowband Filter2(michalsky_badflag_filter2)
  • error in final linear fit for the Direct BroadBand(barnard_error_fit_broadband)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter6(michalsky_good_fraction_filter6)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter4(michalsky_good_fraction_filter4)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter5(michalsky_good_fraction_filter5)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter2(michalsky_good_fraction_filter2)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter3(michalsky_good_fraction_filter3)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter1(michalsky_good_fraction_filter1)
  • Langley regression Io, adjusted to 1AU, Barnard, Direct BroadBand(barnard_solar_constant_sdist_broadband)
  • optical depth for the Direct BroadBand(michalsky_optical_depth_broadband)
  • Langley regression Io, Michalsky, Direct BroadBand(michalsky_solar_constant_broadband)
  • rejection flag for Direct Narrowband Filter4(barnard_badflag_filter4)
  • rejection flag for Direct Narrowband Filter5(barnard_badflag_filter5)
  • rejection flag for Direct Narrowband Filter6(barnard_badflag_filter6)
  • rejection flag for Direct Narrowband Filter1(barnard_badflag_filter1)
  • rejection flag for Direct Narrowband Filter2(barnard_badflag_filter2)
  • rejection flag for Direct Narrowband Filter3(barnard_badflag_filter3)
  • optical depth for the Direct Narrowband Filter5(barnard_optical_depth_filter5)
  • optical depth for the Direct Narrowband Filter6(barnard_optical_depth_filter6)
  • optical depth for the Direct Narrowband Filter1(barnard_optical_depth_filter1)
  • optical depth for the Direct Narrowband Filter2(barnard_optical_depth_filter2)
  • optical depth for the Direct Narrowband Filter3(barnard_optical_depth_filter3)
  • optical depth for the Direct Narrowband Filter4(barnard_optical_depth_filter4)
  • optical depth for the Direct BroadBand(barnard_optical_depth_broadband)
  • solar constant corrected for solar distance for the Direct Narrowband Filter5(barnard_solar_constant_sdist_filter5)
  • solar constant corrected for solar distance for the Direct Narrowband Filter6(barnard_solar_constant_sdist_filter6)
  • solar constant corrected for solar distance for the Direct Narrowband Filter3(barnard_solar_constant_sdist_filter3)
  • Langley regression Io, adjusted to 1AU, Barnard, Direct Narrowband Filter4(barnard_solar_constant_sdist_filter4)
  • solar constant corrected for solar distance for the Direct Narrowband Filter1(barnard_solar_constant_sdist_filter1)
  • solar constant corrected for solar distance for the Direct Narrowband Filter2(barnard_solar_constant_sdist_filter2)
  • number of points used in final linear fit for the Direct Narrowband Filter3(barnard_number_points_filter3)
  • number of points used in final linear fit for the Direct Narrowband Filter2(barnard_number_points_filter2)
  • number of points used in final linear fit for the Direct Narrowband Filter1(barnard_number_points_filter1)
  • number of points used in final linear fit for the Direct Narrowband Filter6(barnard_number_points_filter6)
  • number of points used in final linear fit for the Direct Narrowband Filter5(barnard_number_points_filter5)
  • number of points used in final linear fit for the Direct Narrowband Filter4(barnard_number_points_filter4)
  • standard deviation around regression line for the Direct Narrowband Filter2(michalsky_standard_deviation_filter2)
  • standard deviation around regression line for the Direct Narrowband Filter1(michalsky_standard_deviation_filter1)
  • standard deviation around regression line for the Direct Narrowband Filter6(michalsky_standard_deviation_filter6)
  • standard deviation around regression line for the Direct Narrowband Filter5(michalsky_standard_deviation_filter5)
  • standard deviation around regression line for the Direct Narrowband Filter4(michalsky_standard_deviation_filter4)
  • standard deviation around regression line for the Direct Narrowband Filter3(michalsky_standard_deviation_filter3)
  • rejection flag for Direct Broadband(michalsky_badflag_broadband)
  • number of points used in final linear fit for the Direct Broadband(michalsky_number_points_broadband)
  • error in optical depth (slope) of final linear fit for the Direct Broadband(barnard_error_slope_broadband)
  • error in optical depth (slope) of final linear fit for the Direct Narrowband
    Filter5(barnard_error_slope_filter5)
  • error in optical depth (slope) of final linear fit for the Direct Narrowband
    Filter6(barnard_error_slope_filter6)
  • error in optical depth (slope) of final linear fit for the Direct Narrowband
    Filter3(barnard_error_slope_filter3)
  • error in optical depth (slope) of final linear fit for the Direct Narrowband
    Filter4(barnard_error_slope_filter4)
  • error in optical depth (slope) of final linear fit for the Direct Narrowband
    Filter1(barnard_error_slope_filter1)
  • error in optical depth (slope) of final linear fit for the Direct Narrowband
    Filter2(barnard_error_slope_filter2)
  • number of points used in final linear fit for the Direct Narrowband Filter2(michalsky_number_points_filter2)
  • number of points used in final linear fit for the Direct Narrowband Filter1(michalsky_number_points_filter1)
  • number of points used in final linear fit for the Direct Narrowband Filter4(michalsky_number_points_filter4)
  • number of points used in final linear fit for the Direct Narrowband Filter3(michalsky_number_points_filter3)
  • number of points used in final linear fit for the Direct Narrowband Filter6(michalsky_number_points_filter6)
  • number of points used in final linear fit for the Direct Narrowband Filter5(michalsky_number_points_filter5)
more
sgpirtE38.b1:
  • Sky Infra Red Temperature Maxima(sky_ir_temp_max)
  • Sky Infra-Red Temperature Minima(sky_ir_temp_min)
  • Number of averaged samples(samples_in_average)
  • Sky infrared temperature, standard deviation(sky_ir_temp_std)
  • Sky Infra-Red Temperature(sky_ir_temp)
  • Internal Reference Infra Red Temperature(ref_ir_temp)
more
sgpsirsE11.a0:
  • Up-welling pyrgeometer case thermistor resistance(up_long_case_resist)
  • Down-welling unshaded pyranometer voltage(down_short_hemisp)
  • Direct-beam normal solar irradiance(nip)
  • Down-welling pyrgeometer dome thermistor resistance(down_long_dome_resist)
  • Down-welling pyrgeometer case thermistor resistance(down_long_case_resist)
  • Up-welling pyrgeometer dome thermistor resistance(up_long_dome_resist)
  • Downwelling longwave hemispheric irradiance, pyrgeometer(down_long_hemisp)
  • 25 meter Upwelling Shortwave Hemispheric Irradiance, Pyranometer(up_short_hemisp)
  • Shaded pyranometer voltage(short_diffuse)
  • 10 meter Upwelling Longwave Hemispheric Irradiance, Pyrgeometer(up_long_hemisp)
more
sgp30ecorE21.b1:
  • vector averaged wind direction(wind_dir)
  • rotation to zero v(phi)
  • rotated variance w(var_rot_w)
  • Rotated variance u(var_rot_u)
  • variance of v(var_rot_v)
  • Status of source for latent heat of vaporization(real_lv)
  • Number of c samples removed due to spikes(n_spk_c)
  • Status of source for mixing ratio(real_mr)
  • Mean value of "spike" u samples(mean_spk_u)
  • Mean value of "spike" t samples(mean_spk_t)
  • mean value of \spike\ w samples(mean_spk_w)
  • Mean value of "spike" v samples(mean_spk_v)
  • mean value of out of range values and spikes of c -9999 if no spikes(mean_spk_c)
  • mean value of out of range values and spikes of q -9999 if no spikes(mean_spk_q)
  • moist air density(rho)
  • kurtosis of variable c(kurt_c)
  • kurtosis of variable q(kurt_q)
  • kurtosis of variable v(kurt_v)
  • kurtosis of variable w(kurt_w)
  • Kurtosis of variable mean_t(kurt_t)
  • kurtosis of variable u(kurt_u)
  • Vector averaged wind speed(wind_spd)
  • Average temperature (IGRA internal sensor)(temp_irga)
  • number of valid c samples(n_good_c)
  • number of valid t samples(n_good_t)
  • Number of valid u samples(n_good_u)
  • number of valid v samples(n_good_v)
  • Number of valid w samples(n_good_w)
  • number of valid q samples(n_good_q)
  • 0=real or 1=dummy value of cp(real_cp)
  • mean co2 concentration (c)(mean_c)
  • Cross-boom wind velocity (v)(mean_v)
  • Down-boom wind velocity (u)(mean_u)
  • Vertical wind velocity (w)(mean_w)
  • mean water vapor concentration (q)(mean_q)
  • mean sonic temperature (t), i.e. virtual temperature(mean_t)
  • Standard deviation of wind elevation angle(std_elev)
  • Number of bad or out of range c samples(n_bad_c)
  • Number of bad or out of range q samples(n_bad_q)
  • number of bad or out of range u samples(n_bad_u)
  • Number of bad or out of range t samples(n_bad_t)
  • number of bad or out of range w samples(n_bad_w)
  • number of bad or out of range v samples(n_bad_v)
  • variance of c(var_c)
  • variance of t(var_t)
  • variance of q(var_q)
  • variance of variable w(var_w)
  • Variance of variable mean_v(var_v)
  • variance of variable u(var_u)
  • Number of q samples removed due to spikes(n_spk_q)
  • number of w samples removed due to spikes(n_spk_w)
  • number of v samples removed due to spikes(n_spk_v)
  • Number of u samples removed due to spikes(n_spk_u)
  • number of t samples removed due to spikes(n_spk_t)
  • Atmospheric pressure(atm_pres)
  • number of samples with bad sonic status flag(n_bad_son_ic)
  • average voltage of IRGA cooler(mean_cooler)
  • number of samples with \IRGA hardware problem\ flag(n_bad_irga)
  • corrected sensible heat flux(h)
  • rotated mean w(mean_rot_w)
  • rotated mean v(mean_rot_v)
  • Rotated mean u(mean_rot_u)
  • momentum flux (dynamic)(k)
  • Rotated covariance uq(cvar_rot_uq)
  • rotated covariance uw(cvar_rot_uw)
  • rotated covariance uv(cvar_rot_uv)
  • Rotated covariance ut(cvar_rot_ut)
  • rotated covariance uc(cvar_rot_uc)
  • rotated covariance wt(cvar_rot_wt)
  • rotated covariance wq(cvar_rot_wq)
  • Rotated covariance wc(cvar_rot_wc)
  • rotated covariance vq(cvar_rot_vq)
  • rotated covariance vw(cvar_rot_vw)
  • Rotated covariance vt(cvar_rot_vt)
  • Rotated covariance vc(cvar_rot_vc)
  • vertical (elevation) wind angle(elev)
  • 0=real or 1=dummy value of rho(real_rho)
  • Standard deviation of wind direction(std_wind_dir)
  • latent heat flux(lv_e)
  • friction velocity(ustar)
  • Covariance qc(cvar_qc)
  • number of samples with IRGA optical path blocked flag(n_bad_irga_light)
  • Covariance tc(cvar_tc)
  • covariance of tq(cvar_tq)
  • covariance uw(cvar_uw)
  • covariance ut(cvar_ut)
  • Covariance uv(cvar_uv)
  • covariance vc(cvar_vc)
  • Covariance uc(cvar_uc)
  • covariance uq(cvar_uq)
  • Covariance vt(cvar_vt)
  • Covariance vw(cvar_vw)
  • Covariance wc(cvar_wc)
  • Covariance vq(cvar_vq)
  • covariance wq(cvar_wq)
  • covariance wt(cvar_wt)
  • skewness of variable t(skew_t)
  • skewness of variable u(skew_u)
  • Skewness of variable mean_v(skew_v)
  • skewness of variable w(skew_w)
  • skewness of variable q(skew_q)
  • skewness of variable c(skew_c)
  • specific heat of moist air(cp)
  • CO2 flux(fc)
  • Latent heat of vaporization(lv)
  • Water vapor mixing ratio observed by the Raman lidar(mr)
more
sgp30ebbrE9.b1:
  • Surface sensible heat flux(sensible_heat_flux)
  • Atmospheric pressure(atmos_pressure)
  • AEM position indicator 0 to 15 mins(home_signal_15)
  • AEM position indicator 15 to 30 mins(home_signal_30)
  • Wind speed arithmetic mean(wspd_arith_mean)
  • Soil heat capacity 1(soil_heat_capacity_1)
  • Soil heat capacity 2(soil_heat_capacity_2)
  • Soil heat capacity 3(soil_heat_capacity_3)
  • Soil heat capacity 4(soil_heat_capacity_4)
  • Soil heat capacity 5(soil_heat_capacity_5)
  • Surface soil heat flux, average of fluxes 1-5(surface_soil_heat_flux_avg)
  • Reference temperature in enclosure(temp_reference)
  • Bottom vapor pressure(vapor_pressure_bottom)
  • Wind direction vector mean standard deviation(wdir_vec_std)
  • Surface soil heat flux 4(surface_soil_heat_flux_4)
  • Surface soil heat flux 5(surface_soil_heat_flux_5)
  • Surface soil heat flux 2(surface_soil_heat_flux_2)
  • Surface soil heat flux 3(surface_soil_heat_flux_3)
  • Surface soil heat flux 1(surface_soil_heat_flux_1)
  • Top air temperature(temp_air_top)
  • Bowen ratio(bowen_ratio)
  • Bottom air temperature(temp_air_bottom)
  • Soil heat flow 5(soil_heat_flow_5)
  • Soil heat flow 3(soil_heat_flow_3)
  • Soil heat flow 4(soil_heat_flow_4)
  • Soil heat flow 1(soil_heat_flow_1)
  • Soil heat flow 2(soil_heat_flow_2)
  • Wind speed vector mean(wspd_vec_mean)
  • Bottom relative humidity (fractional)(rh_bottom_fraction)
  • Soil moisture 4, gravimetric(soil_moisture_4)
  • Soil moisture 5, gravimetric(soil_moisture_5)
  • Soil moisture 2, gravimetric(soil_moisture_2)
  • Soil moisture 3, gravimetric(soil_moisture_3)
  • Soil moisture 1, gravimetric(soil_moisture_1)
  • Surface latent heat flux(latent_heat_flux)
  • Change in energy storage 1, 0-5 cm soil layer(energy_storage_change_1)
  • Change in energy storage 2, 0-5 cm soil layer(energy_storage_change_2)
  • Change in energy storage 3, 0-5 cm soil layer(energy_storage_change_3)
  • Change in energy storage 4, 0-5 cm soil layer(energy_storage_change_4)
  • Change in energy storage 5, 0-5 cm soil layer(energy_storage_change_5)
  • Soil heat flow 5, corrected for soil moisture(corr_soil_heat_flow_5)
  • Soil heat flow 4, corrected for soil moisture(corr_soil_heat_flow_4)
  • Soil heat flow 3, corrected for soil moisture(corr_soil_heat_flow_3)
  • Soil heat flow 2, corrected for soil moisture(corr_soil_heat_flow_2)
  • Soil heat flow 1, corrected for soil moisture(corr_soil_heat_flow_1)
  • Half hour averaged soil temperature 4(soil_temp_4)
  • Half hour averaged soil temperature 5(soil_temp_5)
  • Soil temperature 1(soil_temp_1)
  • Soil temperature 2(soil_temp_2)
  • Soil temperature mean 3(soil_temp_3)
  • Wind direction vector mean(wdir_vec_mean)
  • Top relative humidity (fractional)(rh_top_fraction)
  • Top vapor pressure(vapor_pressure_top)
  • Net radiation(net_radiation)
  • Bottom T/RH sensor temperature(temp_trh_bottom)
  • Top T/RH sensor temperature(temp_trh_top)
more
sgp5ebbrE32.b1:
  • Wind direction vector mean standard deviation(wdir_vec_std)
  • Atmospheric pressure(atmos_pressure)
  • Wind direction vector mean(wdir_vec_mean)
  • Bottom relative humidity (fractional)(rh_bottom_fraction)
  • Net radiation(net_radiation)
  • Bottom vapor pressure(vapor_pressure_bottom)
  • Top vapor pressure(vapor_pressure_top)
  • Wind speed vector mean(wspd_vec_mean)
  • Top air temperature(temp_air_top)
  • Bottom T/RH sensor temperature(temp_trh_bottom)
  • AEM position indicator(home_signal)
  • Top relative humidity (fractional)(rh_top_fraction)
  • Wind speed arithmetic mean(wspd_arith_mean)
  • Bottom air temperature(temp_air_bottom)
  • Top T/RH sensor temperature(temp_trh_top)
  • Reference temperature in enclosure(temp_reference)
more
sgpxsaprvadI4.00:
  • Lag-0 co-polar correlation coefficient, clutter filtered(copol_coeff)
  • Differential reflectivity, clutter filtered(diff_reflectivity)
  • Attenuation corrected reflectivity(reflectivity_corr)
  • Specific differential phase(diff_phase)
  • Doppler spectral width, clutter filtered(doppler_spectral_width)
  • Attenuation corrected differential reflectivity(diff_reflectivity_corr)
  • Differential propagation phase shift(dp_phase_shift)
  • reflectivity(reflectivity)
  • Range gate(gate)
  • Mean doppler velocity(mean_doppler_velocity)
  • Unfiltered reflectivity(reflectivity_unf)
  • Signal quality index(sig_qual_index)
more
sgp30ebbrE35.b1:
  • Bottom vapor pressure(vapor_pressure_bottom)
  • Top vapor pressure(vapor_pressure_top)
  • Surface soil heat flux, average of fluxes 1-5(surface_soil_heat_flux_avg)
  • Bottom air temperature(temp_air_bottom)
  • Bottom T/RH sensor temperature(temp_trh_bottom)
  • Surface latent heat flux(latent_heat_flux)
  • Change in energy storage 1, 0-5 cm soil layer(energy_storage_change_1)
  • Change in energy storage 2, 0-5 cm soil layer(energy_storage_change_2)
  • Change in energy storage 3, 0-5 cm soil layer(energy_storage_change_3)
  • Change in energy storage 4, 0-5 cm soil layer(energy_storage_change_4)
  • Change in energy storage 5, 0-5 cm soil layer(energy_storage_change_5)
  • Surface soil heat flux 4(surface_soil_heat_flux_4)
  • Surface soil heat flux 3(surface_soil_heat_flux_3)
  • Surface soil heat flux 2(surface_soil_heat_flux_2)
  • Surface soil heat flux 1(surface_soil_heat_flux_1)
  • Surface soil heat flux 5(surface_soil_heat_flux_5)
  • Net radiation(net_radiation)
  • Top air temperature(temp_air_top)
  • Wind direction vector mean(wdir_vec_mean)
  • Top T/RH sensor temperature(temp_trh_top)
  • AEM position indicator 15 to 30 mins(home_signal_30)
  • AEM position indicator 0 to 15 mins(home_signal_15)
  • Wind speed vector mean(wspd_vec_mean)
  • Bottom relative humidity (fractional)(rh_bottom_fraction)
  • Soil heat flow 4, corrected for soil moisture(corr_soil_heat_flow_4)
  • Soil heat flow 3, corrected for soil moisture(corr_soil_heat_flow_3)
  • Soil heat flow 5, corrected for soil moisture(corr_soil_heat_flow_5)
  • Soil heat flow 2, corrected for soil moisture(corr_soil_heat_flow_2)
  • Soil heat flow 1, corrected for soil moisture(corr_soil_heat_flow_1)
  • Soil moisture 2, gravimetric(soil_moisture_2)
  • Soil moisture 1, gravimetric(soil_moisture_1)
  • Soil moisture 4, gravimetric(soil_moisture_4)
  • Soil moisture 3, gravimetric(soil_moisture_3)
  • Soil moisture 5, gravimetric(soil_moisture_5)
  • Wind direction vector mean standard deviation(wdir_vec_std)
  • Soil temperature 2(soil_temp_2)
  • Soil temperature 1(soil_temp_1)
  • Half hour averaged soil temperature 5(soil_temp_5)
  • Half hour averaged soil temperature 4(soil_temp_4)
  • Soil temperature mean 3(soil_temp_3)
  • Bowen ratio(bowen_ratio)
  • Wind speed arithmetic mean(wspd_arith_mean)
  • Surface sensible heat flux(sensible_heat_flux)
  • Reference temperature in enclosure(temp_reference)
  • Top relative humidity (fractional)(rh_top_fraction)
  • Soil heat flow 3(soil_heat_flow_3)
  • Soil heat flow 2(soil_heat_flow_2)
  • Soil heat flow 5(soil_heat_flow_5)
  • Soil heat flow 4(soil_heat_flow_4)
  • Soil heat flow 1(soil_heat_flow_1)
  • Soil heat capacity 1(soil_heat_capacity_1)
  • Soil heat capacity 3(soil_heat_capacity_3)
  • Soil heat capacity 2(soil_heat_capacity_2)
  • Soil heat capacity 5(soil_heat_capacity_5)
  • Soil heat capacity 4(soil_heat_capacity_4)
  • Atmospheric pressure(atmos_pressure)
more
sgpmetE21.b1:
  • TBRG precipitation total(tbrg_precip_total)
  • Atmospheric pressure(atmos_pressure)
  • Relative humidity observed by the Raman lidar(rh_mean)
  • Wind speed vector mean(wspd_vec_mean)
  • Temperature mean(temp_mean)
  • Wind direction vector mean standard deviation(wdir_vec_std)
  • Wind direction vector mean(wdir_vec_mean)
  • Wind speed arithmetic mean(wspd_arith_mean)
  • TBRG precipitation total, corrected(tbrg_precip_total_corr)
  • Vapor pressure mean, calculated(vapor_pressure_mean)
more
sgpmfrsrE35.b1:
  • Solar zenith angle(solar_zenith_angle)
  • angle of incidence during cosine bench measurements(bench_angle)
  • Alltime hemispheric broadband irradiance(alltime_hemisp_broadband)
  • Alltime Narrowband Hemispheric Irradiance, Filter 6(alltime_hemisp_narrowband_filter6)
  • Alltime narrowband hemispheric irradiance, filter 5(alltime_hemisp_narrowband_filter5)
  • Alltime narrowband hemispheric irradiance, filter 2(alltime_hemisp_narrowband_filter2)
  • Alltime narrowband hemispheric irradiance, filter 1(alltime_hemisp_narrowband_filter1)
  • Alltime Narrowband Hemispheric Irradiance, Filter 4(alltime_hemisp_narrowband_filter4)
  • Alltime Narrowband Hemispheric Irradiance, Filter 3(alltime_hemisp_narrowband_filter3)
  • Cosine correction of broadband diffuse, assuming Rayleigh sky at 45 degree
    zenith angle(diffuse_correction_broadband)
  • Offset subtracted from hemispheric and diffuse broadband data(offset_broadband)
  • Direct Horizontal Broadband Irradiance(direct_horizontal_broadband)
  • Cosine solar zenith angle(cosine_solar_zenith_angle)
  • Cosine correction applied to direct_horizontal_narrowband_filter2(computed_cosine_correction_filter2)
  • Cosine correction applied to direct_horizontal_filter1(computed_cosine_correction_filter1)
  • Cosine correction applied to direct_horizontal_filter6(computed_cosine_correction_filter6)
  • Cosine correction applied to direct_horizontal_filter5(computed_cosine_correction_filter5)
  • Cosine correction applied to direct_horizontal_narrowband_filter4(computed_cosine_correction_filter4)
  • Cosine correction applied to direct_horizontal_narrowband_filter3(computed_cosine_correction_filter3)
  • cosine correction, south to north, broadband channel(cosine_correction_sn_broadband)
  • Nominal calibration factor, applied to filter6 data(nominal_calibration_factor_filter6)
  • Nominal calibration factor, applied to filter3 data(nominal_calibration_factor_filter3)
  • Nominal calibration factor, applied to filter2 data(nominal_calibration_factor_filter2)
  • Nominal calibration factor, applied to filter5 data(nominal_calibration_factor_filter5)
  • Nominal calibration factor, applied to filter4 data(nominal_calibration_factor_filter4)
  • Nominal calibration factor, applied to filter1 data(nominal_calibration_factor_filter1)
  • Azimuth angle(azimuth_angle)
  • Nominal calibration factor, applied to broadband data(nominal_calibration_factor_broadband)
  • Detector temperature(head_temp)
  • Data Logger Temperature(logger_temp)
  • Elevation angle(elevation_angle)
  • Normalized filter function data, filter 1, measured transmittance value obtained
    during bench calibrations(normalized_transmittance_filter1)
  • Normalized filter function data, filter 5, measured transmittance value obtained
    during bench calibrations(normalized_transmittance_filter5)
  • Normalized filter function data, filter 4, measured transmittance value obtained
    during bench calibrations(normalized_transmittance_filter4)
  • Normalized filter function data, filter 3, measured transmittance value obtained
    during bench calibrations(normalized_transmittance_filter3)
  • Normalized filter function data, filter 2, measured transmittance value obtained
    during bench calibrations(normalized_transmittance_filter2)
  • Normalized filter function data, filter 6, measured transmittance value obtained
    during bench calibrations(normalized_transmittance_filter6)
  • Normalized filter function data, filter 4, wavelength value obtained during
    bench calibrations(wavelength_filter4)
  • Normalized filter function data, filter 5, wavelength value obtained during
    bench calibrations(wavelength_filter5)
  • Normalized filter function data, filter 2, wavelength value obtained during
    bench calibrations(wavelength_filter2)
  • Normalized filter function data, filter 3, wavelength value obtained during
    bench calibrations(wavelength_filter3)
  • Normalized filter function data, filter 1, wavelength value obtained during
    bench calibrations(wavelength_filter1)
  • Normalized filter function data, filter 6, wavelength value obtained during
    bench calibrations(wavelength_filter6)
  • Ratio of direct_normal_narrowband_filter6 to diffuse_hemisp_narrowband_filter6(direct_diffuse_ratio_filter6)
  • Ratio of direct_normal_filter5 to diffuse_hemisp_filter5(direct_diffuse_ratio_filter5)
  • Ratio of direct_normal_filter2 to diffuse_hemisp_filter2(direct_diffuse_ratio_filter2)
  • Ratio of direct_normal_filter1 to diffuse_hemisp_filter1(direct_diffuse_ratio_filter1)
  • Ratio of direct_normal_filter4 to diffuse_hemisp_filter4(direct_diffuse_ratio_filter4)
  • Ratio of direct_normal_narrowband_filter3 to diffuse_hemisp_narrowband_filter3(direct_diffuse_ratio_filter3)
  • Direct normal narrowband irradiance, filter 4, offset corrected(direct_normal_narrowband_filter4)
  • Narrowband Direct Normal Irradiance, Filter 3, cosine corrected(direct_normal_narrowband_filter3)
  • Direct normal narrowband irradiance, filter 6, offset corrected(direct_normal_narrowband_filter6)
  • Narrowband Direct Normal Irradiance, Filter 5(direct_normal_narrowband_filter5)
  • Direct normal narrowband irradiance, filter 2, offset corrected(direct_normal_narrowband_filter2)
  • Narrowband Direct Normal Irradiance, Filter 1(direct_normal_narrowband_filter1)
  • Offset subtracted from hemispheric filter1 data(offset_filter1)
  • Offset subtracted from upwelling hemispheric filter2 data(offset_filter2)
  • Offset subtracted from direct normal filter3 data(offset_filter3)
  • Offset subtracted from direct normal filter4 data(offset_filter4)
  • Offset subtracted from upwelling hemispheric filter5 data(offset_filter5)
  • Offset subtracted from hemispheric and diffuse filter6 data(offset_filter6)
  • Cosine correction of filter1 diffuse, assuming Rayleigh sky at 45 degree zenith
    angle(diffuse_correction_filter1)
  • Cosine correction of filter4 diffuse, assuming Rayleigh sky at 45 deg zenith
    angle(diffuse_correction_filter4)
  • Cosine correction of filter5 diffuse, assuming Rayleigh sky at 45 deg zenith
    angle(diffuse_correction_filter5)
  • Cosine correction of filter2 diffuse, assuming Rayleigh sky at 45 deg zenith
    angle(diffuse_correction_filter2)
  • Cosine correction of filter3 diffuse, assuming Rayleigh sky at 45 deg zenith
    angle(diffuse_correction_filter3)
  • Cosine correction of filter6 diffuse, assuming Rayleigh sky at 45 deg zenith
    angle(diffuse_correction_filter6)
  • Hemispheric broadband irradiance(hemisp_broadband)
  • Data logger supply voltage(logger_volt)
  • cosine correction, west to east, broadband channel(cosine_correction_we_broadband)
  • Ratio of direct_normal_broadband to diffuse_hemisp_broadband(direct_diffuse_ratio_broadband)
  • Cosine correction applied to direct_horizontal_broadband(computed_cosine_correction_broadband)
  • Narrowband hemispheric irradiance, filter 4, offset and cosine corrected(hemisp_narrowband_filter4)
  • Narrowband Hemispheric Irradiance, Filter 5, offset corrected(hemisp_narrowband_filter5)
  • Narrowband hemispheric irradiance, filter 6, nominal wavelength is 935 nm(hemisp_narrowband_filter6)
  • Narrowband Hemispheric Irradiance, Filter 1, offset corrected(hemisp_narrowband_filter1)
  • Narrowband Hemispheric Irradiance, Filter 2(hemisp_narrowband_filter2)
  • Narrowband hemispheric irradiance, filter 3, offset and cosine corrected(hemisp_narrowband_filter3)
  • Cosine correction, south to north, filter3(cosine_correction_sn_filter3)
  • Cosine correction, south to north, filter4(cosine_correction_sn_filter4)
  • cosine correction, south to north, filter5(cosine_correction_sn_filter5)
  • cosine correction, south to north, filter6(cosine_correction_sn_filter6)
  • cosine correction, south to north, filter1(cosine_correction_sn_filter1)
  • Cosine correction, south to north, filter2(cosine_correction_sn_filter2)
  • cosine correction, west to east, filter2(cosine_correction_we_filter2)
  • cosine correction, west to east, filter3(cosine_correction_we_filter3)
  • Cosine correction, west to east, filter1(cosine_correction_we_filter1)
  • cosine correction, west to east, filter6(cosine_correction_we_filter6)
  • Cosine correction, west to east, filter4(cosine_correction_we_filter4)
  • Cosine correction, west to east, filter5(cosine_correction_we_filter5)
  • Narrowband Direct Horizontal Irradiance, Filter 2, cosine corrected(direct_horizontal_narrowband_filter2)
  • Direct Horizontal Narrowband Irradiance, Filter 3(direct_horizontal_narrowband_filter3)
  • Direct horizontal narrowband irradiance, filter 1(direct_horizontal_narrowband_filter1)
  • Narrowband Direct Horizontal Irradiance, Filter 6, cosine corrected(direct_horizontal_narrowband_filter6)
  • Narrowband Direct Horizontal Irradiance, Filter 4, cosine corrected(direct_horizontal_narrowband_filter4)
  • Narrowband Direct Horizontal Irradiance, Filter 5, cosine corrected(direct_horizontal_narrowband_filter5)
  • Direct Normal Broadband Irradiance, cosine corrected, broadband scale applied(direct_normal_broadband)
  • Diffuse Hemispheric Broadband Irradiance, offset corrected(diffuse_hemisp_broadband)
  • Second detector temperature(head_temp2)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 6, offset corrected(diffuse_hemisp_narrowband_filter6)
  • Narrowband diffuse hemispheric irradiance, filter 5, offset and cosine corrected(diffuse_hemisp_narrowband_filter5)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 4(diffuse_hemisp_narrowband_filter4)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 3(diffuse_hemisp_narrowband_filter3)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 2, offset corrected(diffuse_hemisp_narrowband_filter2)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 1, offset corrected(diffuse_hemisp_narrowband_filter1)
  • Air mass(airmass)
more
sgpsirs20sE12.a0:
  • Instantaneous Upwelling Shortwave Hemispheric Irradiance, Pyranometer(inst_up_short_hemisp)
  • Instantaneous uncorrected downwelling shortwave diffuse, shaded pyranometer
    thermopile voltage(inst_diffuse)
  • Instantaneous Downwelling Hemispheric Shortwave, Pyranometer Thermopile Voltage(inst_global)
  • Instantaneous Upwelling Pyrgeometer Thermopile Pyrgeometer(inst_up_long_hemisp_tp)
  • Instantaneous Downwelling Pyrgeometer Case Thermistor Resistance, Shaded
    Pyrgeometer(inst_down_long_shaded_case_resist)
  • Instantaneous downwelling pyrgeometer dome thermistor resistance, shaded
    pyrgeometer(inst_down_long_shaded_dome_resist)
  • Instantaneous downwelling pyrgeometer thermopile voltage, shaded pyrgeometer(inst_down_long_hemisp_shaded_tp)
  • Instantaneous direct normal shortwave irradiance, pyrheliometer thermopile
    voltage(inst_direct_normal)
  • Instantaneous Upwelling Pyrgeometer Case Thermistor Resistance, Pyrgeometer(inst_up_long_case_resist)
  • Instantaneous Upwelling Pyrgeometer Dome Thermistor Resistance Pyrgeometer(inst_up_long_dome_resist)
more
sgpsirs20sE37.a0:
  • Instantaneous Downwelling Pyrgeometer Case Thermistor Resistance, Shaded
    Pyrgeometer(inst_down_long_shaded_case_resist)
  • Instantaneous Downwelling Hemispheric Shortwave, Pyranometer Thermopile Voltage(inst_global)
  • Instantaneous Upwelling Pyrgeometer Case Thermistor Resistance, Pyrgeometer(inst_up_long_case_resist)
  • Instantaneous Upwelling Pyrgeometer Dome Thermistor Resistance Pyrgeometer(inst_up_long_dome_resist)
  • Instantaneous uncorrected downwelling shortwave diffuse, shaded pyranometer
    thermopile voltage(inst_diffuse)
  • Instantaneous Upwelling Pyrgeometer Thermopile Pyrgeometer(inst_up_long_hemisp_tp)
  • Instantaneous downwelling pyrgeometer dome thermistor resistance, shaded
    pyrgeometer(inst_down_long_shaded_dome_resist)
  • Instantaneous downwelling pyrgeometer thermopile voltage, shaded pyrgeometer(inst_down_long_hemisp_shaded_tp)
  • Instantaneous direct normal shortwave irradiance, pyrheliometer thermopile
    voltage(inst_direct_normal)
  • Instantaneous Upwelling Shortwave Hemispheric Irradiance, Pyranometer(inst_up_short_hemisp)
more
sgpmetE15.b1:
  • Wind speed arithmetic mean(wspd_arith_mean)
  • TBRG precipitation total(tbrg_precip_total)
  • Vapor pressure mean, calculated(vapor_pressure_mean)
  • TBRG precipitation total, corrected(tbrg_precip_total_corr)
  • Wind direction vector mean standard deviation(wdir_vec_std)
  • Relative humidity observed by the Raman lidar(rh_mean)
  • Atmospheric pressure(atmos_pressure)
  • Temperature mean(temp_mean)
  • Wind direction vector mean(wdir_vec_mean)
  • Wind speed vector mean(wspd_vec_mean)
more
sgpmetE32.b1:
  • Wind speed vector mean(wspd_vec_mean)
  • TBRG precipitation total, corrected(tbrg_precip_total_corr)
  • Wind direction vector mean(wdir_vec_mean)
  • Wind speed arithmetic mean(wspd_arith_mean)
  • Wind direction vector mean standard deviation(wdir_vec_std)
  • Atmospheric pressure(atmos_pressure)
  • TBRG precipitation total(tbrg_precip_total)
  • Vapor pressure mean, calculated(vapor_pressure_mean)
  • Temperature mean(temp_mean)
  • Relative humidity observed by the Raman lidar(rh_mean)
more
sgpswatsE32.b1:
  • Soil temperature, east profile(tsoil_e)
  • Soil temperature, west profile(tsoil_w)
  • Reference sensor temperature rise, east profile(trise_ref_e)
  • Reference sensor temperature rise, west profile(trise_ref_w)
  • Reference Thermistor Temperature(tref)
  • depth(depth)
  • Fractional water index, west profile(fwi_w)
  • Fractional water index, east profile(fwi_e)
  • Sensor temperature rise, west profile(trise_w)
  • Sensor temperature rise, east profile(trise_e)
  • Soil water potential, west profile(soilwatpot_w)
  • Soil water potential, east profile(soilwatpot_e)
  • East profile sensor serial numbers(serial_numbers_e)
  • West profile sensor serial numbers(serial_numbers_w)
  • Volumetric water content, east profile(watcont_e)
  • Volumetric water content, west profile(watcont_w)
more
sgpmfrsrlangplotE35.c1:
  • log(irradiance) for the Direct Narrowband Filter5(barnard_lnI_filter5)
  • log(irradiance) for the Direct Narrowband Filter6(barnard_lnI_filter6)
  • log(irradiance) for the Direct Narrowband Filter3, Barnard(barnard_lnI_filter3)
  • log(irradiance) for the Direct Narrowband Filter4(barnard_lnI_filter4)
  • log(irradiance) for the Direct Narrowband Filter1, Barnard(barnard_lnI_filter1)
  • log(irradiance) for the Direct Narrowband Filter2, Barnard(barnard_lnI_filter2)
  • log(irradiance) for the Direct Broadband(michalsky_lnI_broadband)
  • rejected points for the final fit for the Direct Narrowband Filter3, Barnard(barnard_rejected_filter3)
  • rejected points for the final fit for the Direct Narrowband Filter2(barnard_rejected_filter2)
  • rejected points for the final fit for the Direct Narrowband Filter5, Barnard(barnard_rejected_filter5)
  • rejected points for the final fit for the Direct Narrowband Filter4, Barnard(barnard_rejected_filter4)
  • rejected points for the final fit for the Direct Narrowband Filter1(barnard_rejected_filter1)
  • Airmasses(barnard_airmass)
  • rejected points for the final fit for the Direct Narrowband Filter6(barnard_rejected_filter6)
  • log(irradiance) for the Direct Broadband(barnard_lnI_broadband)
  • log(irradiance) for the Direct Narrowband Filter6, Michalsky(michalsky_lnI_filter6)
  • log(irradiance) for the Direct Narrowband Filter1(michalsky_lnI_filter1)
  • log(irradiance) for the Direct Narrowband Filter5, Michalsky(michalsky_lnI_filter5)
  • log(irradiance) for the Direct Narrowband Filter4, Michalsky(michalsky_lnI_filter4)
  • log(irradiance) for the Direct Narrowband Filter3, Michalsky(michalsky_lnI_filter3)
  • log(irradiance) for the Direct Narrowband Filter2, Michalsky(michalsky_lnI_filter2)
  • rejected points for the final fit for the Direct Broadband, Barnard(barnard_rejected_broadband)
  • airmass(michalsky_airmass)
  • rejected points for the final fit for the Direct Narrowband Filter2(michalsky_rejected_filter2)
  • rejected points for the final fit for the Direct Narrowband Filter1, Michalsky(michalsky_rejected_filter1)
  • rejected points for the final fit for the Direct Narrowband Filter6, Michalsky(michalsky_rejected_filter6)
  • rejected points for the final fit for the Direct Narrowband Filter5, Michalsky(michalsky_rejected_filter5)
  • rejected points for the final fit for the Direct Narrowband Filter4, Michalsky(michalsky_rejected_filter4)
  • rejected points for the final fit for the Direct Narrowband Filter3, Michalsky(michalsky_rejected_filter3)
  • rejected points for the final fit for the Direct Broadband(michalsky_rejected_broadband)
more
sgpmfrsrlangleyE35.c1:
  • number of points used in final linear fit for the Direct Narrowband Filter3(barnard_number_points_filter3)
  • number of points used in final linear fit for the Direct Narrowband Filter2(barnard_number_points_filter2)
  • number of points used in final linear fit for the Direct Narrowband Filter5(barnard_number_points_filter5)
  • number of points used in final linear fit for the Direct Narrowband Filter4(barnard_number_points_filter4)
  • number of points used in final linear fit for the Direct Narrowband Filter1(barnard_number_points_filter1)
  • number of points used in final linear fit for the Direct Narrowband Filter6(barnard_number_points_filter6)
  • standard deviation around regression line for the Direct BroadBand(michalsky_standard_deviation_broadband)
  • solar constant corrected for solar distance for the Direct Narrowband Filter1(michalsky_solar_constant_sdist_filter1)
  • solar constant corrected for solar distance for the Direct Narrowband Filter3(michalsky_solar_constant_sdist_filter3)
  • solar constant corrected for solar distance for the Direct Narrowband Filter2(michalsky_solar_constant_sdist_filter2)
  • solar constant corrected for solar distance for the Direct Narrowband Filter5(michalsky_solar_constant_sdist_filter5)
  • solar constant corrected for solar distance for the Direct Narrowband Filter4(michalsky_solar_constant_sdist_filter4)
  • solar constant corrected for solar distance for the Direct Narrowband Filter6(michalsky_solar_constant_sdist_filter6)
  • optical depth for the Direct BroadBand(michalsky_optical_depth_broadband)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter6(michalsky_good_fraction_filter6)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter3(michalsky_good_fraction_filter3)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter2(michalsky_good_fraction_filter2)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter5(michalsky_good_fraction_filter5)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter4(michalsky_good_fraction_filter4)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter1(michalsky_good_fraction_filter1)
  • error in final linear fit for the Direct BroadBand(barnard_error_fit_broadband)
  • Langley regression Io, Michalsky, Direct BroadBand(michalsky_solar_constant_broadband)
  • rejection flag for Direct Narrowband Filter6(barnard_badflag_filter6)
  • rejection flag for Direct Narrowband Filter1(barnard_badflag_filter1)
  • rejection flag for Direct Narrowband Filter5(barnard_badflag_filter5)
  • rejection flag for Direct Narrowband Filter4(barnard_badflag_filter4)
  • rejection flag for Direct Narrowband Filter3(barnard_badflag_filter3)
  • rejection flag for Direct Narrowband Filter2(barnard_badflag_filter2)
  • optical depth for the Direct Narrowband Filter1(michalsky_optical_depth_filter1)
  • optical depth for the Direct Narrowband Filter4(michalsky_optical_depth_filter4)
  • optical depth for the Direct Narrowband Filter5(michalsky_optical_depth_filter5)
  • optical depth for the Direct Narrowband Filter2(michalsky_optical_depth_filter2)
  • optical depth for the Direct Narrowband Filter3(michalsky_optical_depth_filter3)
  • optical depth for the Direct Narrowband Filter6(michalsky_optical_depth_filter6)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter2(barnard_good_fraction_filter2)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter1(barnard_good_fraction_filter1)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter4(barnard_good_fraction_filter4)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter3(barnard_good_fraction_filter3)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter6(barnard_good_fraction_filter6)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter5(barnard_good_fraction_filter5)
  • solar constant corrected for solar distance for the Direct Broadband(michalsky_solar_constant_sdist_broadband)
  • Barnard computed sun to earth distance(barnard_sun_earth_distance)
  • rejection flag for Direct Narrowband Filter1(michalsky_badflag_filter1)
  • rejection flag for Direct Narrowband Filter2(michalsky_badflag_filter2)
  • rejection flag for Direct Narrowband Filter3(michalsky_badflag_filter3)
  • rejection flag for Direct Narrowband Filter4(michalsky_badflag_filter4)
  • rejection flag for Direct Narrowband Filter5(michalsky_badflag_filter5)
  • rejection flag for Direct Narrowband Filter6(michalsky_badflag_filter6)
  • rejection flag for Direct Broadband(barnard_badflag_broadband)
  • Michalsky computed sun to earth distance(michalsky_sun_earth_distance)
  • optical depth for the Direct Narrowband Filter5(barnard_optical_depth_filter5)
  • optical depth for the Direct Narrowband Filter6(barnard_optical_depth_filter6)
  • optical depth for the Direct Narrowband Filter3(barnard_optical_depth_filter3)
  • optical depth for the Direct Narrowband Filter4(barnard_optical_depth_filter4)
  • optical depth for the Direct Narrowband Filter1(barnard_optical_depth_filter1)
  • optical depth for the Direct Narrowband Filter2(barnard_optical_depth_filter2)
  • percentage of initial points used in final linear fit for the Direct Broadband(barnard_good_fraction_broadband)
  • percentage of initial points used in final linear fit for the Direct Broadband(michalsky_good_fraction_broadband)
  • solar constant for the Direct Narrowband Filter3(michalsky_solar_constant_filter3)
  • Langley regression Io, Michalsky, Direct Narrowband Filter2(michalsky_solar_constant_filter2)
  • Langley regression Io, Michalsky, Direct Narrowband Filter5(michalsky_solar_constant_filter5)
  • Langley regression Io, Michalsky, Direct Narrowband Filter4(michalsky_solar_constant_filter4)
  • solar constant for the Direct Narrowband Filter6(michalsky_solar_constant_filter6)
  • solar constant for the Direct Narrowband Filter1(michalsky_solar_constant_filter1)
  • Langley regression Io, adjusted to 1AU, Barnard, Direct BroadBand(barnard_solar_constant_sdist_broadband)
  • error in optical depth (slope) of final linear fit for the Direct Broadband(barnard_error_slope_broadband)
  • number of points used in final linear fit for the Direct Narrowband Filter6(michalsky_number_points_filter6)
  • number of points used in final linear fit for the Direct Narrowband Filter5(michalsky_number_points_filter5)
  • number of points used in final linear fit for the Direct Narrowband Filter2(michalsky_number_points_filter2)
  • number of points used in final linear fit for the Direct Narrowband Filter1(michalsky_number_points_filter1)
  • number of points used in final linear fit for the Direct Narrowband Filter4(michalsky_number_points_filter4)
  • number of points used in final linear fit for the Direct Narrowband Filter3(michalsky_number_points_filter3)
  • number of points used in final linear fit for the Direct Broadband(barnard_number_points_broadband)
  • standard deviation around regression line for the Direct Narrowband Filter3(michalsky_standard_deviation_filter3)
  • standard deviation around regression line for the Direct Narrowband Filter4(michalsky_standard_deviation_filter4)
  • standard deviation around regression line for the Direct Narrowband Filter1(michalsky_standard_deviation_filter1)
  • standard deviation around regression line for the Direct Narrowband Filter2(michalsky_standard_deviation_filter2)
  • standard deviation around regression line for the Direct Narrowband Filter5(michalsky_standard_deviation_filter5)
  • standard deviation around regression line for the Direct Narrowband Filter6(michalsky_standard_deviation_filter6)
  • error in optical depth (slope) of final linear fit for the Direct Narrowband
    Filter4(barnard_error_slope_filter4)
  • error in optical depth (slope) of final linear fit for the Direct Narrowband
    Filter3(barnard_error_slope_filter3)
  • error in optical depth (slope) of final linear fit for the Direct Narrowband
    Filter6(barnard_error_slope_filter6)
  • error in optical depth (slope) of final linear fit for the Direct Narrowband
    Filter5(barnard_error_slope_filter5)
  • error in optical depth (slope) of final linear fit for the Direct Narrowband
    Filter2(barnard_error_slope_filter2)
  • error in optical depth (slope) of final linear fit for the Direct Narrowband
    Filter1(barnard_error_slope_filter1)
  • rejection flag for Direct Broadband(michalsky_badflag_broadband)
  • error in final linear fit for the Direct Narrowband Filter2(barnard_error_fit_filter2)
  • error in final linear fit for the Direct Narrowband Filter1(barnard_error_fit_filter1)
  • error in final linear fit for the Direct Narrowband Filter4(barnard_error_fit_filter4)
  • error in final linear fit for the Direct Narrowband Filter3(barnard_error_fit_filter3)
  • error in final linear fit for the Direct Narrowband Filter6(barnard_error_fit_filter6)
  • error in final linear fit for the Direct Narrowband Filter5(barnard_error_fit_filter5)
  • solar constant corrected for solar distance for the Direct Narrowband Filter3(barnard_solar_constant_sdist_filter3)
  • Langley regression Io, adjusted to 1AU, Barnard, Direct Narrowband Filter4(barnard_solar_constant_sdist_filter4)
  • solar constant corrected for solar distance for the Direct Narrowband Filter5(barnard_solar_constant_sdist_filter5)
  • solar constant corrected for solar distance for the Direct Narrowband Filter6(barnard_solar_constant_sdist_filter6)
  • solar constant corrected for solar distance for the Direct Narrowband Filter1(barnard_solar_constant_sdist_filter1)
  • solar constant corrected for solar distance for the Direct Narrowband Filter2(barnard_solar_constant_sdist_filter2)
  • number of points used in final linear fit for the Direct Broadband(michalsky_number_points_broadband)
  • optical depth for the Direct BroadBand(barnard_optical_depth_broadband)
more
sgpmfrsrlangplotE12.c1:
  • log(irradiance) for the Direct Broadband(michalsky_lnI_broadband)
  • rejected points for the final fit for the Direct Narrowband Filter3, Barnard(barnard_rejected_filter3)
  • rejected points for the final fit for the Direct Narrowband Filter4, Barnard(barnard_rejected_filter4)
  • rejected points for the final fit for the Direct Narrowband Filter5, Barnard(barnard_rejected_filter5)
  • rejected points for the final fit for the Direct Narrowband Filter6(barnard_rejected_filter6)
  • rejected points for the final fit for the Direct Narrowband Filter1(barnard_rejected_filter1)
  • rejected points for the final fit for the Direct Narrowband Filter2(barnard_rejected_filter2)
  • log(irradiance) for the Direct Broadband(barnard_lnI_broadband)
  • rejected points for the final fit for the Direct Narrowband Filter5, Michalsky(michalsky_rejected_filter5)
  • rejected points for the final fit for the Direct Narrowband Filter4, Michalsky(michalsky_rejected_filter4)
  • rejected points for the final fit for the Direct Narrowband Filter6, Michalsky(michalsky_rejected_filter6)
  • rejected points for the final fit for the Direct Narrowband Filter1, Michalsky(michalsky_rejected_filter1)
  • rejected points for the final fit for the Direct Narrowband Filter3, Michalsky(michalsky_rejected_filter3)
  • rejected points for the final fit for the Direct Narrowband Filter2(michalsky_rejected_filter2)
  • rejected points for the final fit for the Direct Broadband(michalsky_rejected_broadband)
  • rejected points for the final fit for the Direct Broadband, Barnard(barnard_rejected_broadband)
  • log(irradiance) for the Direct Narrowband Filter3, Barnard(barnard_lnI_filter3)
  • log(irradiance) for the Direct Narrowband Filter2, Barnard(barnard_lnI_filter2)
  • log(irradiance) for the Direct Narrowband Filter5(barnard_lnI_filter5)
  • log(irradiance) for the Direct Narrowband Filter4(barnard_lnI_filter4)
  • log(irradiance) for the Direct Narrowband Filter6(barnard_lnI_filter6)
  • log(irradiance) for the Direct Narrowband Filter1, Barnard(barnard_lnI_filter1)
  • Airmasses(barnard_airmass)
  • log(irradiance) for the Direct Narrowband Filter2, Michalsky(michalsky_lnI_filter2)
  • log(irradiance) for the Direct Narrowband Filter1(michalsky_lnI_filter1)
  • log(irradiance) for the Direct Narrowband Filter4, Michalsky(michalsky_lnI_filter4)
  • log(irradiance) for the Direct Narrowband Filter3, Michalsky(michalsky_lnI_filter3)
  • log(irradiance) for the Direct Narrowband Filter6, Michalsky(michalsky_lnI_filter6)
  • log(irradiance) for the Direct Narrowband Filter5, Michalsky(michalsky_lnI_filter5)
  • airmass(michalsky_airmass)
more
sgp15ebbrE32.b1:
  • Soil moisture 2 (resistance)(soil_moisture_2_r)
  • AEM position indicator(home_signal)
  • Battery voltage(battery_voltage)
  • Reference temperature in enclosure (resistance ratio)(temp_reference_rr)
  • Soil heat flow 1 (mV)(soil_heat_flow_1_mv)
  • Soil moisture 3 (resistance)(soil_moisture_3_r)
  • Soil moisture 1 (resistance ratio)(soil_moisture_1_rr)
  • Soil temperature 5 (resistance ratio)(soil_temp_5_rr)
  • Soil heat flow 2 (mV)(soil_heat_flow_2_mv)
  • Soil moisture 1 (resistance)(soil_moisture_1_r)
  • Soil temperature 4 (resistance ratio)(soil_temp_4_rr)
  • Soil heat flow 5 (mV)(soil_heat_flow_5_mv)
  • Left T/RH sensor temperature (resistance ratio)(temp_trh_left_rr)
  • Soil moisture 4 (resistance)(soil_moisture_4_r)
  • Left air temperature(temp_air_left)
  • Right relative humidity (mV)(rh_right_mv)
  • Atmospheric pressure (mV)(atmos_pressure_mv)
  • Soil moisture 5 (resistance)(soil_moisture_5_r)
  • Soil moisture 2 (resistance ratio)(soil_moisture_2_rr)
  • Right T/RH sensor temperature (resistance ratio)(temp_trh_right_rr)
  • Soil heat flow 4 (mV)(soil_heat_flow_4_mv)
  • Soil moisture 3 (resistance ratio)(soil_moisture_3_rr)
  • Soil temperature 3 (resistance ratio)(soil_temp_3_rr)
  • Soil temperature 2 (resistance ratio)(soil_temp_2_rr)
  • Left relative humidity (mV)(rh_left_mv)
  • Net radiation (mV)(net_radiation_mv)
  • Wind direction vector mean (mV)(wdir_vec_mean_mv)
  • Soil moisture 4 (resistance ratio)(soil_moisture_4_rr)
  • Soil temperature 1 (resistance ratio)(soil_temp_1_rr)
  • Soil moisture 5 (resistance ratio)(soil_moisture_5_rr)
  • Soil heat flow 3 (mV)(soil_heat_flow_3_mv)
  • Wind speed arithmetic mean(wspd_arith_mean)
  • Right air temperature(temp_air_right)
more
sgpirt200msE31.a1:
  • Internal Reference Infra Red Temperature(ref_ir_temp)
  • Sky Infra-Red Temperature(sky_ir_temp)
more
sgpsirsE32.b1:
  • Shortwave Direct Normal Irradiance, Pyrheliometer, Maxima(short_direct_normal_max)
  • Shortwave direct normal irradiance, pyrheliometer, minima(short_direct_normal_min)
  • Instantaneous Upwelling Longwave Hemispheric Irradiance, Pyrgeometer(up_long_netir)
  • Shortwave direct normal irradiance, pyrheliometer(short_direct_normal)
  • Upwelling (10 meter) Longwave Hemispheric Irradiance, Ventilated Pyrgeometer,
    Standard Deviation(up_long_hemisp_std)
  • 10 meter Upwelling Longwave Hemispheric Irradiance, Pyrgeometer(up_long_hemisp)
  • Downwelling longwave hemispheric net infrared(down_long_netir)
  • Instantaneous Downwelling Pyrgeometer Dome Thermistor Temperature, Shaded
    Pyrgeometer(inst_down_long_shaded_dome_temp)
  • Upwelling shortwave hemispheric irradiance, pyranometer, minima(up_short_hemisp_min)
  • Upwelling (10 meter) Shortwave Hemispheric Irradiance, Pyranometer, Maxima(up_short_hemisp_max)
  • Instantaneous downwelling pyrgeometer case thermistor temperature, shaded
    pyrgeometer(inst_down_long_shaded_case_temp)
  • Downwelling shortwave hemispheric irradiance, pyranometer, maxima(down_short_hemisp_max)
  • Downwelling Shortwave Diffuse Hemispheric Irradiance, Pyranometer, Standard
    Deviation(down_short_diffuse_hemisp_std)
  • Downwelling Shortwave Hemispheric Irradiance, Pyranometer, Minima(down_short_hemisp_min)
  • Downwelling Longwave Hemispheric Irradiance, Shaded Pyrgeometer, Maxima(down_long_hemisp_shaded_max)
  • Downwelling Shortwave Diffuse Hemispheric Irradiance, Ventilated Pyranometer(down_short_diffuse_hemisp)
  • Downwelling Longwave Hemispheric Irradiance, Shaded Pyrgeometer, Minima(down_long_hemisp_shaded_min)
  • Upwelling (10 meter) Shortwave Hemispheric Irradiance, Ventilated Pyranometer,
    Standard Deviation(up_short_hemisp_std)
  • Downwelling Shortwave Diffuse Hemispheric Irradiance, Pyrgeometer, Minima(down_short_diffuse_hemisp_min)
  • Downwelling shortwave diffuse hemispheric irradiance, pyranometer, maxima(down_short_diffuse_hemisp_max)
  • Shortwave Direct Normal Irradiance, Pyrgeometer, Standard Deviation(short_direct_normal_std)
  • 25 meter Upwelling Shortwave Hemispheric Irradiance, Pyranometer(up_short_hemisp)
  • Instantaneous upwelling pyrgeometer case thermistor temperature, pyrgeometer(inst_up_long_case_temp)
  • Downwelling longwave hemispheric irradiance, shaded pyrgeometer(down_long_hemisp_shaded)
  • Instantaneous Dome Temperature(inst_up_long_dome_temp)
  • Battery voltage(vBatt)
  • Downwelling Shortwave Hemispheric Irradiance, Ventilated Pyrgeometer, Standard
    Deviation(down_short_hemisp_std)
  • Downwelling longwave hemispheric irradiance, shaded pyrgeometer, standard
    deviation(down_long_hemisp_shaded_std)
  • Upwelling longwave hemispheric irradiance, pyrgeometer, maxima(up_long_hemisp_max)
  • Down-welling unshaded pyranometer voltage(down_short_hemisp)
  • Upwelling Longwave Hemispheric Irradiance, Pyrgeometer, Minima(up_long_hemisp_min)
more
sgpmfrsrE38.b1:
  • Data Logger Temperature(logger_temp)
  • Normalized filter function data, filter 2, measured transmittance value obtained
    during bench calibrations(normalized_transmittance_filter2)
  • Normalized filter function data, filter 1, measured transmittance value obtained
    during bench calibrations(normalized_transmittance_filter1)
  • Normalized filter function data, filter 6, measured transmittance value obtained
    during bench calibrations(normalized_transmittance_filter6)
  • Normalized filter function data, filter 5, measured transmittance value obtained
    during bench calibrations(normalized_transmittance_filter5)
  • Normalized filter function data, filter 4, measured transmittance value obtained
    during bench calibrations(normalized_transmittance_filter4)
  • Normalized filter function data, filter 3, measured transmittance value obtained
    during bench calibrations(normalized_transmittance_filter3)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 2, offset corrected(diffuse_hemisp_narrowband_filter2)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 3(diffuse_hemisp_narrowband_filter3)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 1, offset corrected(diffuse_hemisp_narrowband_filter1)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 6, offset corrected(diffuse_hemisp_narrowband_filter6)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 4(diffuse_hemisp_narrowband_filter4)
  • Narrowband diffuse hemispheric irradiance, filter 5, offset and cosine corrected(diffuse_hemisp_narrowband_filter5)
  • Direct Normal Broadband Irradiance, cosine corrected, broadband scale applied(direct_normal_broadband)
  • Cosine correction applied to direct_horizontal_narrowband_filter2(computed_cosine_correction_filter2)
  • Cosine correction applied to direct_horizontal_narrowband_filter3(computed_cosine_correction_filter3)
  • Cosine correction applied to direct_horizontal_filter1(computed_cosine_correction_filter1)
  • Cosine correction applied to direct_horizontal_filter6(computed_cosine_correction_filter6)
  • Cosine correction applied to direct_horizontal_narrowband_filter4(computed_cosine_correction_filter4)
  • Cosine correction applied to direct_horizontal_filter5(computed_cosine_correction_filter5)
  • Offset subtracted from hemispheric and diffuse broadband data(offset_broadband)
  • angle of incidence during cosine bench measurements(bench_angle)
  • Normalized filter function data, filter 6, wavelength value obtained during
    bench calibrations(wavelength_filter6)
  • Normalized filter function data, filter 5, wavelength value obtained during
    bench calibrations(wavelength_filter5)
  • Normalized filter function data, filter 4, wavelength value obtained during
    bench calibrations(wavelength_filter4)
  • Normalized filter function data, filter 3, wavelength value obtained during
    bench calibrations(wavelength_filter3)
  • Normalized filter function data, filter 2, wavelength value obtained during
    bench calibrations(wavelength_filter2)
  • Normalized filter function data, filter 1, wavelength value obtained during
    bench calibrations(wavelength_filter1)
  • cosine correction, south to north, broadband channel(cosine_correction_sn_broadband)
  • Azimuth angle(azimuth_angle)
  • Cosine solar zenith angle(cosine_solar_zenith_angle)
  • Data logger supply voltage(logger_volt)
  • cosine correction, west to east, filter2(cosine_correction_we_filter2)
  • Cosine correction, west to east, filter1(cosine_correction_we_filter1)
  • Cosine correction, west to east, filter4(cosine_correction_we_filter4)
  • cosine correction, west to east, filter3(cosine_correction_we_filter3)
  • cosine correction, west to east, filter6(cosine_correction_we_filter6)
  • Cosine correction, west to east, filter5(cosine_correction_we_filter5)
  • Alltime hemispheric broadband irradiance(alltime_hemisp_broadband)
  • Nominal calibration factor, applied to filter1 data(nominal_calibration_factor_filter1)
  • Nominal calibration factor, applied to filter2 data(nominal_calibration_factor_filter2)
  • Nominal calibration factor, applied to filter3 data(nominal_calibration_factor_filter3)
  • Nominal calibration factor, applied to filter4 data(nominal_calibration_factor_filter4)
  • Nominal calibration factor, applied to filter5 data(nominal_calibration_factor_filter5)
  • Nominal calibration factor, applied to filter6 data(nominal_calibration_factor_filter6)
  • Ratio of direct_normal_broadband to diffuse_hemisp_broadband(direct_diffuse_ratio_broadband)
  • Detector temperature(head_temp)
  • Cosine correction of broadband diffuse, assuming Rayleigh sky at 45 degree
    zenith angle(diffuse_correction_broadband)
  • Offset subtracted from hemispheric and diffuse filter6 data(offset_filter6)
  • Offset subtracted from upwelling hemispheric filter5 data(offset_filter5)
  • Offset subtracted from direct normal filter4 data(offset_filter4)
  • Offset subtracted from direct normal filter3 data(offset_filter3)
  • Offset subtracted from upwelling hemispheric filter2 data(offset_filter2)
  • Offset subtracted from hemispheric filter1 data(offset_filter1)
  • Second detector temperature(head_temp2)
  • Narrowband Direct Normal Irradiance, Filter 5(direct_normal_narrowband_filter5)
  • Direct normal narrowband irradiance, filter 4, offset corrected(direct_normal_narrowband_filter4)
  • Direct normal narrowband irradiance, filter 6, offset corrected(direct_normal_narrowband_filter6)
  • Narrowband Direct Normal Irradiance, Filter 1(direct_normal_narrowband_filter1)
  • Narrowband Direct Normal Irradiance, Filter 3, cosine corrected(direct_normal_narrowband_filter3)
  • Direct normal narrowband irradiance, filter 2, offset corrected(direct_normal_narrowband_filter2)
  • Ratio of direct_normal_filter2 to diffuse_hemisp_filter2(direct_diffuse_ratio_filter2)
  • Ratio of direct_normal_narrowband_filter3 to diffuse_hemisp_narrowband_filter3(direct_diffuse_ratio_filter3)
  • Ratio of direct_normal_filter4 to diffuse_hemisp_filter4(direct_diffuse_ratio_filter4)
  • Ratio of direct_normal_filter5 to diffuse_hemisp_filter5(direct_diffuse_ratio_filter5)
  • Ratio of direct_normal_narrowband_filter6 to diffuse_hemisp_narrowband_filter6(direct_diffuse_ratio_filter6)
  • Ratio of direct_normal_filter1 to diffuse_hemisp_filter1(direct_diffuse_ratio_filter1)
  • Elevation angle(elevation_angle)
  • Diffuse Hemispheric Broadband Irradiance, offset corrected(diffuse_hemisp_broadband)
  • Alltime narrowband hemispheric irradiance, filter 5(alltime_hemisp_narrowband_filter5)
  • Alltime Narrowband Hemispheric Irradiance, Filter 4(alltime_hemisp_narrowband_filter4)
  • Alltime Narrowband Hemispheric Irradiance, Filter 6(alltime_hemisp_narrowband_filter6)
  • Alltime narrowband hemispheric irradiance, filter 1(alltime_hemisp_narrowband_filter1)
  • Alltime Narrowband Hemispheric Irradiance, Filter 3(alltime_hemisp_narrowband_filter3)
  • Alltime narrowband hemispheric irradiance, filter 2(alltime_hemisp_narrowband_filter2)
  • cosine correction, south to north, filter6(cosine_correction_sn_filter6)
  • cosine correction, south to north, filter5(cosine_correction_sn_filter5)
  • Cosine correction, south to north, filter4(cosine_correction_sn_filter4)
  • Cosine correction, south to north, filter3(cosine_correction_sn_filter3)
  • Cosine correction, south to north, filter2(cosine_correction_sn_filter2)
  • cosine correction, south to north, filter1(cosine_correction_sn_filter1)
  • Hemispheric broadband irradiance(hemisp_broadband)
  • Narrowband Direct Horizontal Irradiance, Filter 4, cosine corrected(direct_horizontal_narrowband_filter4)
  • Direct Horizontal Narrowband Irradiance, Filter 3(direct_horizontal_narrowband_filter3)
  • Narrowband Direct Horizontal Irradiance, Filter 2, cosine corrected(direct_horizontal_narrowband_filter2)
  • Direct horizontal narrowband irradiance, filter 1(direct_horizontal_narrowband_filter1)
  • Narrowband Direct Horizontal Irradiance, Filter 6, cosine corrected(direct_horizontal_narrowband_filter6)
  • Narrowband Direct Horizontal Irradiance, Filter 5, cosine corrected(direct_horizontal_narrowband_filter5)
  • Direct Horizontal Broadband Irradiance(direct_horizontal_broadband)
  • Air mass(airmass)
  • Narrowband Hemispheric Irradiance, Filter 5, offset corrected(hemisp_narrowband_filter5)
  • Narrowband hemispheric irradiance, filter 6, nominal wavelength is 935 nm(hemisp_narrowband_filter6)
  • Narrowband hemispheric irradiance, filter 3, offset and cosine corrected(hemisp_narrowband_filter3)
  • Narrowband hemispheric irradiance, filter 4, offset and cosine corrected(hemisp_narrowband_filter4)
  • Narrowband Hemispheric Irradiance, Filter 1, offset corrected(hemisp_narrowband_filter1)
  • Narrowband Hemispheric Irradiance, Filter 2(hemisp_narrowband_filter2)
  • Cosine correction applied to direct_horizontal_broadband(computed_cosine_correction_broadband)
  • Solar zenith angle(solar_zenith_angle)
  • Nominal calibration factor, applied to broadband data(nominal_calibration_factor_broadband)
  • Cosine correction of filter3 diffuse, assuming Rayleigh sky at 45 deg zenith
    angle(diffuse_correction_filter3)
  • Cosine correction of filter4 diffuse, assuming Rayleigh sky at 45 deg zenith
    angle(diffuse_correction_filter4)
  • Cosine correction of filter5 diffuse, assuming Rayleigh sky at 45 deg zenith
    angle(diffuse_correction_filter5)
  • Cosine correction of filter6 diffuse, assuming Rayleigh sky at 45 deg zenith
    angle(diffuse_correction_filter6)
  • Cosine correction of filter1 diffuse, assuming Rayleigh sky at 45 degree zenith
    angle(diffuse_correction_filter1)
  • Cosine correction of filter2 diffuse, assuming Rayleigh sky at 45 deg zenith
    angle(diffuse_correction_filter2)
  • cosine correction, west to east, broadband channel(cosine_correction_we_broadband)
more
sgp915rwpwindspecI9.a0:
  • HLN(VN)
more
sgp915rwpprecipspecI9.a0:
  • Range gate spacing(rgs)
  • Height of Center of First Range Gate(rgf)
  • Height of center of last range gate(rgl)
  • Delay Time to 1st Gate(dly)
  • Array of heights for each sample time(height_t)
  • Sample Rate(sampr)
  • Particle radius at logarithmic center of bin(bins)
  • Pulse repetition frequency(prf)
  • Vertical FFT Bandwidth(vband)
  • Spectral Data(spc_amp)
  • Rx Bandwidth Switch Code(bswitch)
  • Interpulse period(ipp)
  • Ave Time per Average Spectra. Also known as dwell.(spcavetime)
  • Number of Valid Heights(nheight)
  • Height Index(range_gate)
  • Time Domain Integration Time(tditime)
  • Individual Spectrum Integration Time(sitime)
  • Number of pulse code bits(pcbits)
  • Number of Coherent Samples/Spectral Point(ncoh)
  • Radial Velocity Spectral Resolution(vsr)
  • Number of Individual Spectra/Average Spectrum(nspc)
  • Pulse length(plen)
more
sgpmetE37.b1:
  • Vapor pressure mean, calculated(vapor_pressure_mean)
  • Wind direction vector mean standard deviation(wdir_vec_std)
  • TBRG precipitation total, corrected(tbrg_precip_total_corr)
  • Wind direction vector mean(wdir_vec_mean)
  • TBRG precipitation total(tbrg_precip_total)
  • Relative humidity observed by the Raman lidar(rh_mean)
  • Atmospheric pressure(atmos_pressure)
  • Wind speed vector mean(wspd_vec_mean)
  • Temperature mean(temp_mean)
  • Wind speed arithmetic mean(wspd_arith_mean)
more
sgpmfrsrE33.a0:
  • Offset subtracted from hemispheric and diffuse broadband data(offset_broadband)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 4(diffuse_hemisp_narrowband_filter4)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 3(diffuse_hemisp_narrowband_filter3)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 6, offset corrected(diffuse_hemisp_narrowband_filter6)
  • Narrowband diffuse hemispheric irradiance, filter 5, offset and cosine corrected(diffuse_hemisp_narrowband_filter5)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 2, offset corrected(diffuse_hemisp_narrowband_filter2)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 1, offset corrected(diffuse_hemisp_narrowband_filter1)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 2(diffuse_hemisp_narrowband_filter2_raw)
  • Detector temperature(head_temp)
  • Narrowband hemispheric irradiance, filter 5(hemisp_narrowband_filter5_raw)
  • Narrowband Direct Horizontal Irradiance, Filter 6, cosine corrected(direct_horizontal_narrowband_filter6)
  • Narrowband Direct Horizontal Irradiance, Filter 4, cosine corrected(direct_horizontal_narrowband_filter4)
  • Narrowband Direct Horizontal Irradiance, Filter 5, cosine corrected(direct_horizontal_narrowband_filter5)
  • Narrowband Direct Horizontal Irradiance, Filter 2, cosine corrected(direct_horizontal_narrowband_filter2)
  • Direct Horizontal Narrowband Irradiance, Filter 3(direct_horizontal_narrowband_filter3)
  • Direct horizontal narrowband irradiance, filter 1(direct_horizontal_narrowband_filter1)
  • Narrowband hemispheric irradiance, filter 6, nominal wavelength is 935 nm(hemisp_narrowband_filter6)
  • Narrowband Hemispheric Irradiance, Filter 1, offset corrected(hemisp_narrowband_filter1)
  • Narrowband hemispheric irradiance, filter 3, offset and cosine corrected(hemisp_narrowband_filter3)
  • Narrowband Hemispheric Irradiance, Filter 2(hemisp_narrowband_filter2)
  • Narrowband Hemispheric Irradiance, Filter 5, offset corrected(hemisp_narrowband_filter5)
  • Narrowband hemispheric irradiance, filter 4, offset and cosine corrected(hemisp_narrowband_filter4)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 5(diffuse_hemisp_narrowband_filter5_raw)
  • Direct Horizontal Broadband Irradiance(direct_horizontal_broadband)
  • Second detector temperature(head_temp2)
  • Offset subtracted from hemispheric filter1 data(offset_filter1)
  • Offset subtracted from upwelling hemispheric filter2 data(offset_filter2)
  • Offset subtracted from direct normal filter3 data(offset_filter3)
  • Offset subtracted from direct normal filter4 data(offset_filter4)
  • Offset subtracted from upwelling hemispheric filter5 data(offset_filter5)
  • Offset subtracted from hemispheric and diffuse filter6 data(offset_filter6)
  • Narrowband hemispheric irradiance, filter 2(hemisp_narrowband_filter2_raw)
  • Hemispheric broadband irradiance(hemisp_broadband)
  • Data logger supply voltage(logger_volt)
  • Diffuse narrowband hemispheric irradiance, filter 3(diffuse_hemisp_narrowband_filter3_raw)
  • Hemispheric broadband irradiance(hemisp_broadband_raw)
  • Narrowband hemispheric irradiance, filter 4(hemisp_narrowband_filter4_raw)
  • Diffuse Hemispheric Broadband Irradiance, offset corrected(diffuse_hemisp_broadband)
  • Alltime hemispheric broadband irradiance(alltime_hemisp_broadband)
  • Diffuse narrowband hemispheric irradiance, filter 6(diffuse_hemisp_narrowband_filter6_raw)
  • Narrowband hemispheric irradiance, filter 1(hemisp_narrowband_filter1_raw)
  • Diffuse Hemispheric Broadband Irradiance(diffuse_hemisp_broadband_raw)
  • Diffuse narrowband hemispheric irradiance, filter 1(diffuse_hemisp_narrowband_filter1_raw)
  • Narrowband Hemispheric Irradiance, Filter 6(hemisp_narrowband_filter6_raw)
  • Diffuse narrowband hemispheric irradiance, filter 4(diffuse_hemisp_narrowband_filter4_raw)
  • Data Logger Temperature(logger_temp)
  • Alltime narrowband hemispheric irradiance, filter 1(alltime_hemisp_narrowband_filter1)
  • Alltime narrowband hemispheric irradiance, filter 2(alltime_hemisp_narrowband_filter2)
  • Alltime Narrowband Hemispheric Irradiance, Filter 3(alltime_hemisp_narrowband_filter3)
  • Alltime Narrowband Hemispheric Irradiance, Filter 4(alltime_hemisp_narrowband_filter4)
  • Alltime narrowband hemispheric irradiance, filter 5(alltime_hemisp_narrowband_filter5)
  • Alltime Narrowband Hemispheric Irradiance, Filter 6(alltime_hemisp_narrowband_filter6)
  • Narrowband Hemispheric Irradiance, Filter 3(hemisp_narrowband_filter3_raw)
more
sgpsirs20sE32.a0:
  • Instantaneous uncorrected downwelling shortwave diffuse, shaded pyranometer
    thermopile voltage(inst_diffuse)
  • Instantaneous Downwelling Hemispheric Shortwave, Pyranometer Thermopile Voltage(inst_global)
  • Instantaneous Upwelling Pyrgeometer Dome Thermistor Resistance Pyrgeometer(inst_up_long_dome_resist)
  • Instantaneous downwelling pyrgeometer dome thermistor resistance, shaded
    pyrgeometer(inst_down_long_shaded_dome_resist)
  • Instantaneous Downwelling Pyrgeometer Case Thermistor Resistance, Shaded
    Pyrgeometer(inst_down_long_shaded_case_resist)
  • Instantaneous Upwelling Shortwave Hemispheric Irradiance, Pyranometer(inst_up_short_hemisp)
  • Instantaneous downwelling pyrgeometer thermopile voltage, shaded pyrgeometer(inst_down_long_hemisp_shaded_tp)
  • Instantaneous direct normal shortwave irradiance, pyrheliometer thermopile
    voltage(inst_direct_normal)
  • Instantaneous Upwelling Pyrgeometer Case Thermistor Resistance, Pyrgeometer(inst_up_long_case_resist)
  • Instantaneous Upwelling Pyrgeometer Thermopile Pyrgeometer(inst_up_long_hemisp_tp)
more
sgpsirs60sE12.a1:
  • Upwelling (10 meter) Longwave Hemispheric Irradiance, Ventilated Pyrgeometer,
    Standard Deviation(up_long_hemisp_std)
  • Downwelling longwave hemispheric irradiance, shaded pyrgeometer, standard
    deviation(down_long_hemisp_shaded_std)
  • Downwelling Shortwave Hemispheric Irradiance, Ventilated Pyrgeometer, Standard
    Deviation(down_short_hemisp_std)
  • 10 meter Upwelling Longwave Hemispheric Irradiance, Pyrgeometer(up_long_hemisp)
  • Upwelling longwave hemispheric irradiance, pyrgeometer, maxima(up_long_hemisp_max)
  • Downwelling shortwave diffuse hemispheric irradiance, pyranometer, maxima(down_short_diffuse_hemisp_max)
  • Upwelling shortwave hemispheric irradiance, pyranometer, minima(up_short_hemisp_min)
  • Upwelling Longwave Hemispheric Irradiance, Pyrgeometer, Minima(up_long_hemisp_min)
  • Upwelling (10 meter) Shortwave Hemispheric Irradiance, Pyranometer, Maxima(up_short_hemisp_max)
  • Downwelling shortwave hemispheric irradiance, pyranometer, maxima(down_short_hemisp_max)
  • Downwelling Shortwave Hemispheric Irradiance, Pyranometer, Minima(down_short_hemisp_min)
  • 25 meter Upwelling Shortwave Hemispheric Irradiance, Pyranometer(up_short_hemisp)
  • Shortwave direct normal irradiance, pyrheliometer, minima(short_direct_normal_min)
  • Shortwave Direct Normal Irradiance, Pyrheliometer, Maxima(short_direct_normal_max)
  • Downwelling Shortwave Diffuse Hemispheric Irradiance, Pyrgeometer, Minima(down_short_diffuse_hemisp_min)
  • Down-welling unshaded pyranometer voltage(down_short_hemisp)
  • Downwelling longwave hemispheric irradiance, shaded pyrgeometer(down_long_hemisp_shaded)
  • Downwelling Longwave Hemispheric Irradiance, Shaded Pyrgeometer, Minima(down_long_hemisp_shaded_min)
  • Downwelling Longwave Hemispheric Irradiance, Shaded Pyrgeometer, Maxima(down_long_hemisp_shaded_max)
  • Downwelling Shortwave Diffuse Hemispheric Irradiance, Ventilated Pyranometer(down_short_diffuse_hemisp)
  • Shortwave Direct Normal Irradiance, Pyrgeometer, Standard Deviation(short_direct_normal_std)
  • Battery voltage(vBatt)
  • Shortwave direct normal irradiance, pyrheliometer(short_direct_normal)
  • Downwelling Shortwave Diffuse Hemispheric Irradiance, Pyranometer, Standard
    Deviation(down_short_diffuse_hemisp_std)
  • Upwelling (10 meter) Shortwave Hemispheric Irradiance, Ventilated Pyranometer,
    Standard Deviation(up_short_hemisp_std)
more
sgpirtE11.b1:
  • Sky infrared temperature, standard deviation(sky_ir_temp_std)
  • Internal Reference Infra Red Temperature(ref_ir_temp)
  • Sky Infra Red Temperature Maxima(sky_ir_temp_max)
  • Sky Infra-Red Temperature Minima(sky_ir_temp_min)
  • Sky Infra-Red Temperature(sky_ir_temp)
  • Number of averaged samples(samples_in_average)
more
sgpxsaprhsrhiI6.00:
  • reflectivity(reflectivity)
  • Attenuation corrected differential reflectivity(diff_reflectivity_corr)
  • Lag-0 co-polar correlation coefficient, clutter filtered(copol_coeff)
  • Specific differential phase(diff_phase)
  • Differential reflectivity, clutter filtered(diff_reflectivity)
  • Unfiltered reflectivity(reflectivity_unf)
  • Signal quality index(sig_qual_index)
  • Mean doppler velocity(mean_doppler_velocity)
  • Doppler spectral width, clutter filtered(doppler_spectral_width)
  • Attenuation corrected reflectivity(reflectivity_corr)
  • Differential propagation phase shift(dp_phase_shift)
  • Range gate(gate)
more
sgp30baebbrE36.c1:
  • Top T/RH sensor temperature(temp_trh_top)
  • Surface soil heat flux 1(surface_soil_heat_flux_1)
  • Surface soil heat flux 5(surface_soil_heat_flux_5)
  • Surface soil heat flux 4(surface_soil_heat_flux_4)
  • Surface soil heat flux 3(surface_soil_heat_flux_3)
  • Surface soil heat flux 2(surface_soil_heat_flux_2)
  • Surface sensible heat flux(sensible_heat_flux)
  • Soil heat flow 5(soil_heat_flow_5)
  • Soil heat flow 4(soil_heat_flow_4)
  • Soil heat flow 3(soil_heat_flow_3)
  • Soil heat flow 2(soil_heat_flow_2)
  • Soil heat flow 1(soil_heat_flow_1)
  • Bottom relative humidity (fractional)(rh_bottom_fraction)
  • Soil temperature 1(soil_temp_1)
  • Soil temperature 2(soil_temp_2)
  • Soil temperature mean 3(soil_temp_3)
  • Half hour averaged soil temperature 4(soil_temp_4)
  • Half hour averaged soil temperature 5(soil_temp_5)
  • Aerodynamic latent heat flux(aerodynamic_latent_heat_flux)
  • Best estimate latent heat flux(be_latent_heat_flux)
  • Wind direction vector mean standard deviation(wdir_vec_std)
  • Best estimate sensible heat flux(be_sensible_heat_flux)
  • Bowen ratio(bowen_ratio)
  • Top vapor pressure(vapor_pressure_top)
  • Bottom T/RH sensor temperature(temp_trh_bottom)
  • Vegetation height outside fence(vegetation_height)
  • Change in energy storage 1, 0-5 cm soil layer(energy_storage_change_1)
  • Change in energy storage 2, 0-5 cm soil layer(energy_storage_change_2)
  • Change in energy storage 5, 0-5 cm soil layer(energy_storage_change_5)
  • Change in energy storage 3, 0-5 cm soil layer(energy_storage_change_3)
  • Change in energy storage 4, 0-5 cm soil layer(energy_storage_change_4)
  • Soil heat capacity 1(soil_heat_capacity_1)
  • Soil heat capacity 2(soil_heat_capacity_2)
  • Soil heat capacity 3(soil_heat_capacity_3)
  • Soil heat capacity 4(soil_heat_capacity_4)
  • Soil heat capacity 5(soil_heat_capacity_5)
  • Top relative humidity (fractional)(rh_top_fraction)
  • Solar radiation calculated from time of day, lat, and lon(solar_radiation)
  • Top air temperature(temp_air_top)
  • Bottom air temperature(temp_air_bottom)
  • Atmospheric pressure(atmos_pressure)
  • Soil moisture 1, gravimetric(soil_moisture_1)
  • Soil moisture 5, gravimetric(soil_moisture_5)
  • Soil moisture 4, gravimetric(soil_moisture_4)
  • Soil moisture 3, gravimetric(soil_moisture_3)
  • Soil moisture 2, gravimetric(soil_moisture_2)
  • Bottom vapor pressure(vapor_pressure_bottom)
  • Surface soil heat flux, average of fluxes 1-5(surface_soil_heat_flux_avg)
  • Surface latent heat flux(latent_heat_flux)
  • Aerodynamic sensible heat flux(aerodynamic_sensible_heat_flux)
  • Wind speed arithmetic mean(wspd_arith_mean)
  • Wind speed vector mean(wspd_vec_mean)
  • Friction velocity(friction_velocity)
  • Reference temperature in enclosure(temp_reference)
  • Wind direction vector mean(wdir_vec_mean)
  • Soil heat flow 3, corrected for soil moisture(corr_soil_heat_flow_3)
  • Soil heat flow 2, corrected for soil moisture(corr_soil_heat_flow_2)
  • Soil heat flow 5, corrected for soil moisture(corr_soil_heat_flow_5)
  • Soil heat flow 4, corrected for soil moisture(corr_soil_heat_flow_4)
  • Soil heat flow 1, corrected for soil moisture(corr_soil_heat_flow_1)
  • Net radiation(net_radiation)
  • AEM position indicator 0 to 15 mins(home_signal_15)
  • AEM position indicator 15 to 30 mins(home_signal_30)
more
sgpswatsE15.a1:
  • Volumetric Water Content, West Profile(watcont_W)
  • Volumetric Water Content, East Profile(watcont_E)
  • West profile sensor serial numbers(serial_numbers_W)
  • East profile sensor serial numbers(serial_numbers_E)
  • depth(depth)
  • Soil Temperature, East Profile(tsoil_E)
  • Soil Temperature, West Profile(tsoil_W)
  • Reference Thermistor Temperature(tref)
  • Soil Water Potential, West Profile(soilwatpot_W)
  • Soil Water Potential, East Profile(soilwatpot_E)
  • Sensor Temperature Rise, West Profile(trise_W)
  • Sensor Temperature Rise, East Profile(trise_E)
more
sgp30ebbrE12.b1:
  • Atmospheric pressure(atmos_pressure)
  • Soil heat flow 5, corrected for soil moisture(corr_soil_heat_flow_5)
  • Soil heat flow 4, corrected for soil moisture(corr_soil_heat_flow_4)
  • Soil heat flow 3, corrected for soil moisture(corr_soil_heat_flow_3)
  • Soil heat flow 2, corrected for soil moisture(corr_soil_heat_flow_2)
  • Soil heat flow 1, corrected for soil moisture(corr_soil_heat_flow_1)
  • Top T/RH sensor temperature(temp_trh_top)
  • Soil temperature mean 3(soil_temp_3)
  • Soil temperature 2(soil_temp_2)
  • Half hour averaged soil temperature 5(soil_temp_5)
  • Half hour averaged soil temperature 4(soil_temp_4)
  • Soil temperature 1(soil_temp_1)
  • Change in energy storage 1, 0-5 cm soil layer(energy_storage_change_1)
  • Change in energy storage 2, 0-5 cm soil layer(energy_storage_change_2)
  • Change in energy storage 5, 0-5 cm soil layer(energy_storage_change_5)
  • Change in energy storage 3, 0-5 cm soil layer(energy_storage_change_3)
  • Change in energy storage 4, 0-5 cm soil layer(energy_storage_change_4)
  • Bottom relative humidity (fractional)(rh_bottom_fraction)
  • Net radiation(net_radiation)
  • Wind direction vector mean standard deviation(wdir_vec_std)
  • Top vapor pressure(vapor_pressure_top)
  • Soil heat capacity 5(soil_heat_capacity_5)
  • Soil heat capacity 3(soil_heat_capacity_3)
  • Soil heat capacity 4(soil_heat_capacity_4)
  • Soil heat capacity 1(soil_heat_capacity_1)
  • Soil heat capacity 2(soil_heat_capacity_2)
  • Soil heat flow 2(soil_heat_flow_2)
  • Soil heat flow 1(soil_heat_flow_1)
  • Soil heat flow 5(soil_heat_flow_5)
  • Soil heat flow 4(soil_heat_flow_4)
  • Soil heat flow 3(soil_heat_flow_3)
  • Bowen ratio(bowen_ratio)
  • Top relative humidity (fractional)(rh_top_fraction)
  • Wind speed vector mean(wspd_vec_mean)
  • Bottom air temperature(temp_air_bottom)
  • Surface soil heat flux 4(surface_soil_heat_flux_4)
  • Surface soil heat flux 5(surface_soil_heat_flux_5)
  • Surface soil heat flux 2(surface_soil_heat_flux_2)
  • Surface soil heat flux 3(surface_soil_heat_flux_3)
  • Surface soil heat flux 1(surface_soil_heat_flux_1)
  • Bottom T/RH sensor temperature(temp_trh_bottom)
  • Bottom vapor pressure(vapor_pressure_bottom)
  • Surface soil heat flux, average of fluxes 1-5(surface_soil_heat_flux_avg)
  • Wind direction vector mean(wdir_vec_mean)
  • Wind speed arithmetic mean(wspd_arith_mean)
  • Reference temperature in enclosure(temp_reference)
  • Surface latent heat flux(latent_heat_flux)
  • Top air temperature(temp_air_top)
  • Soil moisture 1, gravimetric(soil_moisture_1)
  • Soil moisture 4, gravimetric(soil_moisture_4)
  • Soil moisture 5, gravimetric(soil_moisture_5)
  • Soil moisture 2, gravimetric(soil_moisture_2)
  • Soil moisture 3, gravimetric(soil_moisture_3)
  • Surface sensible heat flux(sensible_heat_flux)
  • AEM position indicator 0 to 15 mins(home_signal_15)
  • AEM position indicator 15 to 30 mins(home_signal_30)
more
sgpswatsE37.b1:
  • Volumetric water content, east profile(watcont_e)
  • Volumetric water content, west profile(watcont_w)
  • Soil temperature, east profile(tsoil_e)
  • Soil temperature, west profile(tsoil_w)
  • Sensor temperature rise, east profile(trise_e)
  • Sensor temperature rise, west profile(trise_w)
  • Fractional water index, west profile(fwi_w)
  • Fractional water index, east profile(fwi_e)
  • depth(depth)
  • Soil water potential, east profile(soilwatpot_e)
  • Soil water potential, west profile(soilwatpot_w)
  • Reference sensor temperature rise, west profile(trise_ref_w)
  • Reference sensor temperature rise, east profile(trise_ref_e)
  • Reference Thermistor Temperature(tref)
  • East profile sensor serial numbers(serial_numbers_e)
  • West profile sensor serial numbers(serial_numbers_w)
more
sgpmfrsrE33.b1:
  • Diffuse Hemispheric Broadband Irradiance, offset corrected(diffuse_hemisp_broadband)
  • Alltime narrowband hemispheric irradiance, filter 1(alltime_hemisp_narrowband_filter1)
  • Alltime narrowband hemispheric irradiance, filter 2(alltime_hemisp_narrowband_filter2)
  • Alltime Narrowband Hemispheric Irradiance, Filter 3(alltime_hemisp_narrowband_filter3)
  • Alltime Narrowband Hemispheric Irradiance, Filter 4(alltime_hemisp_narrowband_filter4)
  • Alltime narrowband hemispheric irradiance, filter 5(alltime_hemisp_narrowband_filter5)
  • Alltime Narrowband Hemispheric Irradiance, Filter 6(alltime_hemisp_narrowband_filter6)
  • Alltime hemispheric broadband irradiance(alltime_hemisp_broadband)
  • Detector temperature(head_temp)
  • Azimuth angle(azimuth_angle)
  • Direct horizontal narrowband irradiance, filter 1(direct_horizontal_narrowband_filter1)
  • Narrowband Direct Horizontal Irradiance, Filter 4, cosine corrected(direct_horizontal_narrowband_filter4)
  • Narrowband Direct Horizontal Irradiance, Filter 5, cosine corrected(direct_horizontal_narrowband_filter5)
  • Narrowband Direct Horizontal Irradiance, Filter 2, cosine corrected(direct_horizontal_narrowband_filter2)
  • Direct Horizontal Narrowband Irradiance, Filter 3(direct_horizontal_narrowband_filter3)
  • Narrowband Direct Horizontal Irradiance, Filter 6, cosine corrected(direct_horizontal_narrowband_filter6)
  • Offset subtracted from hemispheric and diffuse filter6 data(offset_filter6)
  • Offset subtracted from upwelling hemispheric filter5 data(offset_filter5)
  • Offset subtracted from direct normal filter4 data(offset_filter4)
  • Offset subtracted from direct normal filter3 data(offset_filter3)
  • Offset subtracted from upwelling hemispheric filter2 data(offset_filter2)
  • Offset subtracted from hemispheric filter1 data(offset_filter1)
  • Offset subtracted from hemispheric and diffuse broadband data(offset_broadband)
  • Direct Normal Broadband Irradiance, cosine corrected, broadband scale applied(direct_normal_broadband)
  • Cosine correction of filter4 diffuse, assuming Rayleigh sky at 45 deg zenith
    angle(diffuse_correction_filter4)
  • Cosine correction of filter5 diffuse, assuming Rayleigh sky at 45 deg zenith
    angle(diffuse_correction_filter5)
  • Cosine correction of filter6 diffuse, assuming Rayleigh sky at 45 deg zenith
    angle(diffuse_correction_filter6)
  • Cosine correction of filter1 diffuse, assuming Rayleigh sky at 45 degree zenith
    angle(diffuse_correction_filter1)
  • Cosine correction of filter2 diffuse, assuming Rayleigh sky at 45 deg zenith
    angle(diffuse_correction_filter2)
  • Cosine correction of filter3 diffuse, assuming Rayleigh sky at 45 deg zenith
    angle(diffuse_correction_filter3)
  • cosine correction, south to north, broadband channel(cosine_correction_sn_broadband)
  • cosine correction, south to north, filter6(cosine_correction_sn_filter6)
  • cosine correction, south to north, filter5(cosine_correction_sn_filter5)
  • Cosine correction, south to north, filter2(cosine_correction_sn_filter2)
  • cosine correction, south to north, filter1(cosine_correction_sn_filter1)
  • Cosine correction, south to north, filter4(cosine_correction_sn_filter4)
  • Cosine correction, south to north, filter3(cosine_correction_sn_filter3)
  • Normalized filter function data, filter 4, measured transmittance value obtained
    during bench calibrations(normalized_transmittance_filter4)
  • Normalized filter function data, filter 5, measured transmittance value obtained
    during bench calibrations(normalized_transmittance_filter5)
  • Normalized filter function data, filter 6, measured transmittance value obtained
    during bench calibrations(normalized_transmittance_filter6)
  • Normalized filter function data, filter 1, measured transmittance value obtained
    during bench calibrations(normalized_transmittance_filter1)
  • Normalized filter function data, filter 2, measured transmittance value obtained
    during bench calibrations(normalized_transmittance_filter2)
  • Normalized filter function data, filter 3, measured transmittance value obtained
    during bench calibrations(normalized_transmittance_filter3)
  • Normalized filter function data, filter 3, wavelength value obtained during
    bench calibrations(wavelength_filter3)
  • Normalized filter function data, filter 2, wavelength value obtained during
    bench calibrations(wavelength_filter2)
  • Normalized filter function data, filter 1, wavelength value obtained during
    bench calibrations(wavelength_filter1)
  • Normalized filter function data, filter 6, wavelength value obtained during
    bench calibrations(wavelength_filter6)
  • Normalized filter function data, filter 5, wavelength value obtained during
    bench calibrations(wavelength_filter5)
  • Normalized filter function data, filter 4, wavelength value obtained during
    bench calibrations(wavelength_filter4)
  • Nominal calibration factor, applied to filter3 data(nominal_calibration_factor_filter3)
  • Nominal calibration factor, applied to filter2 data(nominal_calibration_factor_filter2)
  • Nominal calibration factor, applied to filter1 data(nominal_calibration_factor_filter1)
  • Nominal calibration factor, applied to filter6 data(nominal_calibration_factor_filter6)
  • Nominal calibration factor, applied to filter5 data(nominal_calibration_factor_filter5)
  • Nominal calibration factor, applied to filter4 data(nominal_calibration_factor_filter4)
  • Cosine correction applied to direct_horizontal_narrowband_filter2(computed_cosine_correction_filter2)
  • Cosine correction applied to direct_horizontal_filter1(computed_cosine_correction_filter1)
  • Cosine correction applied to direct_horizontal_narrowband_filter4(computed_cosine_correction_filter4)
  • Cosine correction applied to direct_horizontal_narrowband_filter3(computed_cosine_correction_filter3)
  • Cosine correction applied to direct_horizontal_filter6(computed_cosine_correction_filter6)
  • Cosine correction applied to direct_horizontal_filter5(computed_cosine_correction_filter5)
  • Air mass(airmass)
  • Direct Horizontal Broadband Irradiance(direct_horizontal_broadband)
  • Data Logger Temperature(logger_temp)
  • Elevation angle(elevation_angle)
  • Cosine correction applied to direct_horizontal_broadband(computed_cosine_correction_broadband)
  • Ratio of direct_normal_broadband to diffuse_hemisp_broadband(direct_diffuse_ratio_broadband)
  • Data logger supply voltage(logger_volt)
  • Narrowband hemispheric irradiance, filter 6, nominal wavelength is 935 nm(hemisp_narrowband_filter6)
  • Narrowband Hemispheric Irradiance, Filter 1, offset corrected(hemisp_narrowband_filter1)
  • Narrowband Hemispheric Irradiance, Filter 5, offset corrected(hemisp_narrowband_filter5)
  • Narrowband hemispheric irradiance, filter 4, offset and cosine corrected(hemisp_narrowband_filter4)
  • Narrowband hemispheric irradiance, filter 3, offset and cosine corrected(hemisp_narrowband_filter3)
  • Narrowband Hemispheric Irradiance, Filter 2(hemisp_narrowband_filter2)
  • Ratio of direct_normal_filter2 to diffuse_hemisp_filter2(direct_diffuse_ratio_filter2)
  • Ratio of direct_normal_filter1 to diffuse_hemisp_filter1(direct_diffuse_ratio_filter1)
  • Ratio of direct_normal_filter4 to diffuse_hemisp_filter4(direct_diffuse_ratio_filter4)
  • Ratio of direct_normal_narrowband_filter3 to diffuse_hemisp_narrowband_filter3(direct_diffuse_ratio_filter3)
  • Ratio of direct_normal_narrowband_filter6 to diffuse_hemisp_narrowband_filter6(direct_diffuse_ratio_filter6)
  • Ratio of direct_normal_filter5 to diffuse_hemisp_filter5(direct_diffuse_ratio_filter5)
  • Narrowband Direct Normal Irradiance, Filter 5(direct_normal_narrowband_filter5)
  • Direct normal narrowband irradiance, filter 6, offset corrected(direct_normal_narrowband_filter6)
  • Narrowband Direct Normal Irradiance, Filter 3, cosine corrected(direct_normal_narrowband_filter3)
  • Direct normal narrowband irradiance, filter 4, offset corrected(direct_normal_narrowband_filter4)
  • Narrowband Direct Normal Irradiance, Filter 1(direct_normal_narrowband_filter1)
  • Direct normal narrowband irradiance, filter 2, offset corrected(direct_normal_narrowband_filter2)
  • Cosine solar zenith angle(cosine_solar_zenith_angle)
  • Nominal calibration factor, applied to broadband data(nominal_calibration_factor_broadband)
  • Solar zenith angle(solar_zenith_angle)
  • Hemispheric broadband irradiance(hemisp_broadband)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 4(diffuse_hemisp_narrowband_filter4)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 3(diffuse_hemisp_narrowband_filter3)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 6, offset corrected(diffuse_hemisp_narrowband_filter6)
  • Narrowband diffuse hemispheric irradiance, filter 5, offset and cosine corrected(diffuse_hemisp_narrowband_filter5)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 2, offset corrected(diffuse_hemisp_narrowband_filter2)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 1, offset corrected(diffuse_hemisp_narrowband_filter1)
  • Second detector temperature(head_temp2)
  • angle of incidence during cosine bench measurements(bench_angle)
  • cosine correction, west to east, filter6(cosine_correction_we_filter6)
  • Cosine correction, west to east, filter1(cosine_correction_we_filter1)
  • Cosine correction, west to east, filter5(cosine_correction_we_filter5)
  • Cosine correction, west to east, filter4(cosine_correction_we_filter4)
  • cosine correction, west to east, filter3(cosine_correction_we_filter3)
  • cosine correction, west to east, filter2(cosine_correction_we_filter2)
  • cosine correction, west to east, broadband channel(cosine_correction_we_broadband)
  • Cosine correction of broadband diffuse, assuming Rayleigh sky at 45 degree
    zenith angle(diffuse_correction_broadband)
more
sgpmfrsrE12.b1:
  • Second detector temperature(head_temp2)
  • Narrowband Direct Horizontal Irradiance, Filter 6, cosine corrected(direct_horizontal_narrowband_filter6)
  • Narrowband Direct Horizontal Irradiance, Filter 5, cosine corrected(direct_horizontal_narrowband_filter5)
  • Narrowband Direct Horizontal Irradiance, Filter 4, cosine corrected(direct_horizontal_narrowband_filter4)
  • Direct Horizontal Narrowband Irradiance, Filter 3(direct_horizontal_narrowband_filter3)
  • Narrowband Direct Horizontal Irradiance, Filter 2, cosine corrected(direct_horizontal_narrowband_filter2)
  • Direct horizontal narrowband irradiance, filter 1(direct_horizontal_narrowband_filter1)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 1, offset corrected(diffuse_hemisp_narrowband_filter1)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 3(diffuse_hemisp_narrowband_filter3)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 2, offset corrected(diffuse_hemisp_narrowband_filter2)
  • Narrowband diffuse hemispheric irradiance, filter 5, offset and cosine corrected(diffuse_hemisp_narrowband_filter5)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 4(diffuse_hemisp_narrowband_filter4)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 6, offset corrected(diffuse_hemisp_narrowband_filter6)
  • Normalized filter function data, filter 1, measured transmittance value obtained
    during bench calibrations(normalized_transmittance_filter1)
  • Normalized filter function data, filter 2, measured transmittance value obtained
    during bench calibrations(normalized_transmittance_filter2)
  • Normalized filter function data, filter 5, measured transmittance value obtained
    during bench calibrations(normalized_transmittance_filter5)
  • Normalized filter function data, filter 6, measured transmittance value obtained
    during bench calibrations(normalized_transmittance_filter6)
  • Normalized filter function data, filter 3, measured transmittance value obtained
    during bench calibrations(normalized_transmittance_filter3)
  • Normalized filter function data, filter 4, measured transmittance value obtained
    during bench calibrations(normalized_transmittance_filter4)
  • Cosine correction applied to direct_horizontal_broadband(computed_cosine_correction_broadband)
  • Offset subtracted from direct normal filter4 data(offset_filter4)
  • Offset subtracted from direct normal filter3 data(offset_filter3)
  • Offset subtracted from hemispheric and diffuse filter6 data(offset_filter6)
  • Offset subtracted from upwelling hemispheric filter5 data(offset_filter5)
  • Offset subtracted from upwelling hemispheric filter2 data(offset_filter2)
  • Offset subtracted from hemispheric filter1 data(offset_filter1)
  • Azimuth angle(azimuth_angle)
  • Cosine solar zenith angle(cosine_solar_zenith_angle)
  • Data logger supply voltage(logger_volt)
  • Air mass(airmass)
  • Alltime hemispheric broadband irradiance(alltime_hemisp_broadband)
  • Detector temperature(head_temp)
  • Solar zenith angle(solar_zenith_angle)
  • Narrowband Direct Normal Irradiance, Filter 1(direct_normal_narrowband_filter1)
  • Narrowband Direct Normal Irradiance, Filter 3, cosine corrected(direct_normal_narrowband_filter3)
  • Direct normal narrowband irradiance, filter 2, offset corrected(direct_normal_narrowband_filter2)
  • Narrowband Direct Normal Irradiance, Filter 5(direct_normal_narrowband_filter5)
  • Direct normal narrowband irradiance, filter 4, offset corrected(direct_normal_narrowband_filter4)
  • Direct normal narrowband irradiance, filter 6, offset corrected(direct_normal_narrowband_filter6)
  • Cosine correction applied to direct_horizontal_filter5(computed_cosine_correction_filter5)
  • Cosine correction applied to direct_horizontal_narrowband_filter4(computed_cosine_correction_filter4)
  • Cosine correction applied to direct_horizontal_filter6(computed_cosine_correction_filter6)
  • Cosine correction applied to direct_horizontal_filter1(computed_cosine_correction_filter1)
  • Cosine correction applied to direct_horizontal_narrowband_filter3(computed_cosine_correction_filter3)
  • Cosine correction applied to direct_horizontal_narrowband_filter2(computed_cosine_correction_filter2)
  • angle of incidence during cosine bench measurements(bench_angle)
  • Normalized filter function data, filter 5, wavelength value obtained during
    bench calibrations(wavelength_filter5)
  • Normalized filter function data, filter 6, wavelength value obtained during
    bench calibrations(wavelength_filter6)
  • Normalized filter function data, filter 3, wavelength value obtained during
    bench calibrations(wavelength_filter3)
  • Normalized filter function data, filter 4, wavelength value obtained during
    bench calibrations(wavelength_filter4)
  • Normalized filter function data, filter 1, wavelength value obtained during
    bench calibrations(wavelength_filter1)
  • Normalized filter function data, filter 2, wavelength value obtained during
    bench calibrations(wavelength_filter2)
  • Elevation angle(elevation_angle)
  • Ratio of direct_normal_broadband to diffuse_hemisp_broadband(direct_diffuse_ratio_broadband)
  • Nominal calibration factor, applied to broadband data(nominal_calibration_factor_broadband)
  • Direct Horizontal Broadband Irradiance(direct_horizontal_broadband)
  • Ratio of direct_normal_narrowband_filter6 to diffuse_hemisp_narrowband_filter6(direct_diffuse_ratio_filter6)
  • Ratio of direct_normal_filter1 to diffuse_hemisp_filter1(direct_diffuse_ratio_filter1)
  • Ratio of direct_normal_filter4 to diffuse_hemisp_filter4(direct_diffuse_ratio_filter4)
  • Ratio of direct_normal_filter5 to diffuse_hemisp_filter5(direct_diffuse_ratio_filter5)
  • Ratio of direct_normal_filter2 to diffuse_hemisp_filter2(direct_diffuse_ratio_filter2)
  • Ratio of direct_normal_narrowband_filter3 to diffuse_hemisp_narrowband_filter3(direct_diffuse_ratio_filter3)
  • Alltime Narrowband Hemispheric Irradiance, Filter 3(alltime_hemisp_narrowband_filter3)
  • Alltime narrowband hemispheric irradiance, filter 2(alltime_hemisp_narrowband_filter2)
  • Alltime narrowband hemispheric irradiance, filter 1(alltime_hemisp_narrowband_filter1)
  • Alltime Narrowband Hemispheric Irradiance, Filter 6(alltime_hemisp_narrowband_filter6)
  • Alltime narrowband hemispheric irradiance, filter 5(alltime_hemisp_narrowband_filter5)
  • Alltime Narrowband Hemispheric Irradiance, Filter 4(alltime_hemisp_narrowband_filter4)
  • Offset subtracted from hemispheric and diffuse broadband data(offset_broadband)
  • cosine correction, south to north, filter5(cosine_correction_sn_filter5)
  • Cosine correction, south to north, filter4(cosine_correction_sn_filter4)
  • cosine correction, south to north, filter6(cosine_correction_sn_filter6)
  • cosine correction, south to north, filter1(cosine_correction_sn_filter1)
  • Cosine correction, south to north, filter3(cosine_correction_sn_filter3)
  • Cosine correction, south to north, filter2(cosine_correction_sn_filter2)
  • cosine correction, south to north, broadband channel(cosine_correction_sn_broadband)
  • Nominal calibration factor, applied to filter5 data(nominal_calibration_factor_filter5)
  • Nominal calibration factor, applied to filter6 data(nominal_calibration_factor_filter6)
  • Nominal calibration factor, applied to filter3 data(nominal_calibration_factor_filter3)
  • Nominal calibration factor, applied to filter4 data(nominal_calibration_factor_filter4)
  • Nominal calibration factor, applied to filter1 data(nominal_calibration_factor_filter1)
  • Nominal calibration factor, applied to filter2 data(nominal_calibration_factor_filter2)
  • Diffuse Hemispheric Broadband Irradiance, offset corrected(diffuse_hemisp_broadband)
  • Cosine correction of broadband diffuse, assuming Rayleigh sky at 45 degree
    zenith angle(diffuse_correction_broadband)
  • cosine correction, west to east, filter6(cosine_correction_we_filter6)
  • Cosine correction, west to east, filter5(cosine_correction_we_filter5)
  • Cosine correction, west to east, filter4(cosine_correction_we_filter4)
  • cosine correction, west to east, filter3(cosine_correction_we_filter3)
  • cosine correction, west to east, filter2(cosine_correction_we_filter2)
  • Cosine correction, west to east, filter1(cosine_correction_we_filter1)
  • Narrowband hemispheric irradiance, filter 4, offset and cosine corrected(hemisp_narrowband_filter4)
  • Narrowband hemispheric irradiance, filter 3, offset and cosine corrected(hemisp_narrowband_filter3)
  • Narrowband hemispheric irradiance, filter 6, nominal wavelength is 935 nm(hemisp_narrowband_filter6)
  • Narrowband Hemispheric Irradiance, Filter 5, offset corrected(hemisp_narrowband_filter5)
  • Narrowband Hemispheric Irradiance, Filter 2(hemisp_narrowband_filter2)
  • Narrowband Hemispheric Irradiance, Filter 1, offset corrected(hemisp_narrowband_filter1)
  • Data Logger Temperature(logger_temp)
  • Cosine correction of filter6 diffuse, assuming Rayleigh sky at 45 deg zenith
    angle(diffuse_correction_filter6)
  • Cosine correction of filter5 diffuse, assuming Rayleigh sky at 45 deg zenith
    angle(diffuse_correction_filter5)
  • Cosine correction of filter4 diffuse, assuming Rayleigh sky at 45 deg zenith
    angle(diffuse_correction_filter4)
  • Cosine correction of filter3 diffuse, assuming Rayleigh sky at 45 deg zenith
    angle(diffuse_correction_filter3)
  • Cosine correction of filter2 diffuse, assuming Rayleigh sky at 45 deg zenith
    angle(diffuse_correction_filter2)
  • Cosine correction of filter1 diffuse, assuming Rayleigh sky at 45 degree zenith
    angle(diffuse_correction_filter1)
  • cosine correction, west to east, broadband channel(cosine_correction_we_broadband)
  • Direct Normal Broadband Irradiance, cosine corrected, broadband scale applied(direct_normal_broadband)
  • Hemispheric broadband irradiance(hemisp_broadband)
more
sgp30baebbrE36.s1:
  • Solar radiation calculated from time of day, lat, and lon(solar_radiation)
  • Reference temperature in enclosure(temp_reference)
  • Surface soil heat flux 2(surface_soil_heat_flux_2)
  • Surface soil heat flux 3(surface_soil_heat_flux_3)
  • Surface soil heat flux 4(surface_soil_heat_flux_4)
  • Surface soil heat flux 5(surface_soil_heat_flux_5)
  • Surface soil heat flux 1(surface_soil_heat_flux_1)
  • Change in energy storage 1, 0-5 cm soil layer(energy_storage_change_1)
  • Change in energy storage 2, 0-5 cm soil layer(energy_storage_change_2)
  • Change in energy storage 3, 0-5 cm soil layer(energy_storage_change_3)
  • Change in energy storage 4, 0-5 cm soil layer(energy_storage_change_4)
  • Change in energy storage 5, 0-5 cm soil layer(energy_storage_change_5)
  • Soil heat flow 4(soil_heat_flow_4)
  • Soil heat flow 3(soil_heat_flow_3)
  • Soil heat flow 5(soil_heat_flow_5)
  • Soil heat flow 2(soil_heat_flow_2)
  • Soil heat flow 1(soil_heat_flow_1)
  • Bottom relative humidity (fractional)(rh_bottom_fraction)
  • Aerodynamic sensible heat flux(aerodynamic_sensible_heat_flux)
  • Top air temperature(temp_air_top)
  • AEM position indicator 15 to 30 mins(home_signal_30)
  • AEM position indicator 0 to 15 mins(home_signal_15)
  • Vegetation height outside fence(vegetation_height)
  • Wind direction vector mean standard deviation(wdir_vec_std)
  • Friction velocity(friction_velocity)
  • Top T/RH sensor temperature(temp_trh_top)
  • Soil heat flow 1, corrected for soil moisture(corr_soil_heat_flow_1)
  • Soil heat flow 4, corrected for soil moisture(corr_soil_heat_flow_4)
  • Soil heat flow 5, corrected for soil moisture(corr_soil_heat_flow_5)
  • Soil heat flow 2, corrected for soil moisture(corr_soil_heat_flow_2)
  • Surface sensible heat flux(sensible_heat_flux)
  • Soil heat flow 3, corrected for soil moisture(corr_soil_heat_flow_3)
  • Atmospheric pressure(atmos_pressure)
  • Wind direction vector mean(wdir_vec_mean)
  • Wind speed arithmetic mean(wspd_arith_mean)
  • Best estimate sensible heat flux(be_sensible_heat_flux)
  • Surface soil heat flux, average of fluxes 1-5(surface_soil_heat_flux_avg)
  • Bowen ratio(bowen_ratio)
  • Best estimate latent heat flux(be_latent_heat_flux)
  • Surface latent heat flux(latent_heat_flux)
  • Bottom vapor pressure(vapor_pressure_bottom)
  • Aerodynamic latent heat flux(aerodynamic_latent_heat_flux)
  • Soil temperature mean 3(soil_temp_3)
  • Soil temperature 2(soil_temp_2)
  • Half hour averaged soil temperature 5(soil_temp_5)
  • Half hour averaged soil temperature 4(soil_temp_4)
  • Soil temperature 1(soil_temp_1)
  • Bottom air temperature(temp_air_bottom)
  • Net radiation(net_radiation)
  • Bottom T/RH sensor temperature(temp_trh_bottom)
  • Wind speed vector mean(wspd_vec_mean)
  • Soil moisture 3, gravimetric(soil_moisture_3)
  • Soil moisture 2, gravimetric(soil_moisture_2)
  • Soil moisture 5, gravimetric(soil_moisture_5)
  • Soil moisture 4, gravimetric(soil_moisture_4)
  • Soil moisture 1, gravimetric(soil_moisture_1)
  • Top relative humidity (fractional)(rh_top_fraction)
  • Top vapor pressure(vapor_pressure_top)
  • Soil heat capacity 4(soil_heat_capacity_4)
  • Soil heat capacity 3(soil_heat_capacity_3)
  • Soil heat capacity 5(soil_heat_capacity_5)
  • Soil heat capacity 2(soil_heat_capacity_2)
  • Soil heat capacity 1(soil_heat_capacity_1)
more
sgpirt200msE37.a1:
  • Internal Reference Infra Red Temperature(ref_ir_temp)
  • Sky Infra-Red Temperature(sky_ir_temp)
more
sgp915rwpwindmomI9.a0:
  • HLN(VN)
more
sgpirtE12.b1:
  • Sky infrared temperature, standard deviation(sky_ir_temp_std)
  • Number of averaged samples(samples_in_average)
  • Internal Reference Infra Red Temperature(ref_ir_temp)
  • Sky Infra Red Temperature Maxima(sky_ir_temp_max)
  • Sky Infra-Red Temperature Minima(sky_ir_temp_min)
  • Sky Infra-Red Temperature(sky_ir_temp)
more
sgpsirsE15.b1:
  • Instantaneous downwelling pyrgeometer case thermistor temperature, shaded
    pyrgeometer(inst_down_long_shaded_case_temp)
  • Upwelling (10 meter) Longwave Hemispheric Irradiance, Ventilated Pyrgeometer,
    Standard Deviation(up_long_hemisp_std)
  • Instantaneous Dome Temperature(inst_up_long_dome_temp)
  • Downwelling Shortwave Diffuse Hemispheric Irradiance, Ventilated Pyranometer(down_short_diffuse_hemisp)
  • Instantaneous upwelling pyrgeometer case thermistor temperature, pyrgeometer(inst_up_long_case_temp)
  • Upwelling (10 meter) Shortwave Hemispheric Irradiance, Pyranometer, Maxima(up_short_hemisp_max)
  • Upwelling shortwave hemispheric irradiance, pyranometer, minima(up_short_hemisp_min)
  • Shortwave direct normal irradiance, pyrheliometer(short_direct_normal)
  • Downwelling Shortwave Diffuse Hemispheric Irradiance, Pyranometer, Standard
    Deviation(down_short_diffuse_hemisp_std)
  • Battery voltage(vBatt)
  • 10 meter Upwelling Longwave Hemispheric Irradiance, Pyrgeometer(up_long_hemisp)
  • Shortwave Direct Normal Irradiance, Pyrgeometer, Standard Deviation(short_direct_normal_std)
  • Downwelling longwave hemispheric net infrared(down_long_netir)
  • Downwelling longwave hemispheric irradiance, shaded pyrgeometer, standard
    deviation(down_long_hemisp_shaded_std)
  • Downwelling Shortwave Hemispheric Irradiance, Ventilated Pyrgeometer, Standard
    Deviation(down_short_hemisp_std)
  • Instantaneous Downwelling Pyrgeometer Dome Thermistor Temperature, Shaded
    Pyrgeometer(inst_down_long_shaded_dome_temp)
  • Downwelling shortwave hemispheric irradiance, pyranometer, maxima(down_short_hemisp_max)
  • Downwelling Shortwave Hemispheric Irradiance, Pyranometer, Minima(down_short_hemisp_min)
  • Downwelling longwave hemispheric irradiance, shaded pyrgeometer(down_long_hemisp_shaded)
  • Upwelling Longwave Hemispheric Irradiance, Pyrgeometer, Minima(up_long_hemisp_min)
  • Upwelling longwave hemispheric irradiance, pyrgeometer, maxima(up_long_hemisp_max)
  • Shortwave Direct Normal Irradiance, Pyrheliometer, Maxima(short_direct_normal_max)
  • Shortwave direct normal irradiance, pyrheliometer, minima(short_direct_normal_min)
  • 25 meter Upwelling Shortwave Hemispheric Irradiance, Pyranometer(up_short_hemisp)
  • Downwelling Longwave Hemispheric Irradiance, Shaded Pyrgeometer, Minima(down_long_hemisp_shaded_min)
  • Downwelling Longwave Hemispheric Irradiance, Shaded Pyrgeometer, Maxima(down_long_hemisp_shaded_max)
  • Down-welling unshaded pyranometer voltage(down_short_hemisp)
  • Upwelling (10 meter) Shortwave Hemispheric Irradiance, Ventilated Pyranometer,
    Standard Deviation(up_short_hemisp_std)
  • Instantaneous Upwelling Longwave Hemispheric Irradiance, Pyrgeometer(up_long_netir)
  • Downwelling Shortwave Diffuse Hemispheric Irradiance, Pyrgeometer, Minima(down_short_diffuse_hemisp_min)
  • Downwelling shortwave diffuse hemispheric irradiance, pyranometer, maxima(down_short_diffuse_hemisp_max)
more
sgp30ebbrE34.b1:
  • Wind direction vector mean standard deviation(wdir_vec_std)
  • Surface soil heat flux, average of fluxes 1-5(surface_soil_heat_flux_avg)
  • AEM position indicator 15 to 30 mins(home_signal_30)
  • AEM position indicator 0 to 15 mins(home_signal_15)
  • Wind speed arithmetic mean(wspd_arith_mean)
  • Bottom T/RH sensor temperature(temp_trh_bottom)
  • Atmospheric pressure(atmos_pressure)
  • Top air temperature(temp_air_top)
  • Soil heat capacity 2(soil_heat_capacity_2)
  • Soil heat capacity 1(soil_heat_capacity_1)
  • Soil heat capacity 4(soil_heat_capacity_4)
  • Soil heat capacity 3(soil_heat_capacity_3)
  • Soil heat capacity 5(soil_heat_capacity_5)
  • Soil heat flow 1, corrected for soil moisture(corr_soil_heat_flow_1)
  • Soil heat flow 5, corrected for soil moisture(corr_soil_heat_flow_5)
  • Soil heat flow 4, corrected for soil moisture(corr_soil_heat_flow_4)
  • Soil heat flow 3, corrected for soil moisture(corr_soil_heat_flow_3)
  • Soil heat flow 2, corrected for soil moisture(corr_soil_heat_flow_2)
  • Change in energy storage 5, 0-5 cm soil layer(energy_storage_change_5)
  • Change in energy storage 4, 0-5 cm soil layer(energy_storage_change_4)
  • Change in energy storage 3, 0-5 cm soil layer(energy_storage_change_3)
  • Change in energy storage 2, 0-5 cm soil layer(energy_storage_change_2)
  • Change in energy storage 1, 0-5 cm soil layer(energy_storage_change_1)
  • Bottom relative humidity (fractional)(rh_bottom_fraction)
  • Surface sensible heat flux(sensible_heat_flux)
  • Net radiation(net_radiation)
  • Soil heat flow 1(soil_heat_flow_1)
  • Soil heat flow 2(soil_heat_flow_2)
  • Soil heat flow 3(soil_heat_flow_3)
  • Soil heat flow 4(soil_heat_flow_4)
  • Soil heat flow 5(soil_heat_flow_5)
  • Reference temperature in enclosure(temp_reference)
  • Surface latent heat flux(latent_heat_flux)
  • Bottom vapor pressure(vapor_pressure_bottom)
  • Wind direction vector mean(wdir_vec_mean)
  • Soil temperature 1(soil_temp_1)
  • Soil temperature mean 3(soil_temp_3)
  • Soil temperature 2(soil_temp_2)
  • Half hour averaged soil temperature 5(soil_temp_5)
  • Half hour averaged soil temperature 4(soil_temp_4)
  • Top vapor pressure(vapor_pressure_top)
  • Top relative humidity (fractional)(rh_top_fraction)
  • Bowen ratio(bowen_ratio)
  • Surface soil heat flux 5(surface_soil_heat_flux_5)
  • Surface soil heat flux 4(surface_soil_heat_flux_4)
  • Surface soil heat flux 3(surface_soil_heat_flux_3)
  • Surface soil heat flux 2(surface_soil_heat_flux_2)
  • Surface soil heat flux 1(surface_soil_heat_flux_1)
  • Bottom air temperature(temp_air_bottom)
  • Wind speed vector mean(wspd_vec_mean)
  • Top T/RH sensor temperature(temp_trh_top)
  • Soil moisture 1, gravimetric(soil_moisture_1)
  • Soil moisture 2, gravimetric(soil_moisture_2)
  • Soil moisture 3, gravimetric(soil_moisture_3)
  • Soil moisture 4, gravimetric(soil_moisture_4)
  • Soil moisture 5, gravimetric(soil_moisture_5)
more
sgpsirs20sE11.a0:
  • Instantaneous Downwelling Hemispheric Shortwave, Pyranometer Thermopile Voltage(inst_global)
  • Instantaneous direct normal shortwave irradiance, pyrheliometer thermopile
    voltage(inst_direct_normal)
  • Instantaneous Upwelling Shortwave Hemispheric Irradiance, Pyranometer(inst_up_short_hemisp)
  • Instantaneous Downwelling Pyrgeometer Case Thermistor Resistance, Shaded
    Pyrgeometer(inst_down_long_shaded_case_resist)
  • Instantaneous downwelling pyrgeometer dome thermistor resistance, shaded
    pyrgeometer(inst_down_long_shaded_dome_resist)
  • Instantaneous downwelling pyrgeometer thermopile voltage, shaded pyrgeometer(inst_down_long_hemisp_shaded_tp)
  • Instantaneous Upwelling Pyrgeometer Dome Thermistor Resistance Pyrgeometer(inst_up_long_dome_resist)
  • Instantaneous Upwelling Pyrgeometer Case Thermistor Resistance, Pyrgeometer(inst_up_long_case_resist)
  • Instantaneous uncorrected downwelling shortwave diffuse, shaded pyranometer
    thermopile voltage(inst_diffuse)
  • Instantaneous Upwelling Pyrgeometer Thermopile Pyrgeometer(inst_up_long_hemisp_tp)
more
sgp30ecorE31.b1:
  • Covariance qc(cvar_qc)
  • 0=real or 1=dummy value of rho(real_rho)
  • friction velocity(ustar)
  • average voltage of IRGA cooler(mean_cooler)
  • mean value of out of range values and spikes of c -9999 if no spikes(mean_spk_c)
  • mean value of out of range values and spikes of q -9999 if no spikes(mean_spk_q)
  • Mean value of "spike" v samples(mean_spk_v)
  • Mean value of "spike" u samples(mean_spk_u)
  • Mean value of "spike" t samples(mean_spk_t)
  • mean value of \spike\ w samples(mean_spk_w)
  • covariance wt(cvar_wt)
  • covariance wq(cvar_wq)
  • covariance of tq(cvar_tq)
  • Covariance tc(cvar_tc)
  • covariance ut(cvar_ut)
  • Covariance uv(cvar_uv)
  • covariance uw(cvar_uw)
  • covariance uq(cvar_uq)
  • Covariance uc(cvar_uc)
  • Covariance wc(cvar_wc)
  • Covariance vt(cvar_vt)
  • Covariance vw(cvar_vw)
  • Covariance vq(cvar_vq)
  • covariance vc(cvar_vc)
  • Standard deviation of wind direction(std_wind_dir)
  • corrected sensible heat flux(h)
  • momentum flux (dynamic)(k)
  • vertical (elevation) wind angle(elev)
  • skewness of variable c(skew_c)
  • kurtosis of variable c(kurt_c)
  • kurtosis of variable q(kurt_q)
  • kurtosis of variable w(kurt_w)
  • kurtosis of variable u(kurt_u)
  • kurtosis of variable v(kurt_v)
  • Kurtosis of variable mean_t(kurt_t)
  • vector averaged wind direction(wind_dir)
  • number of samples with \IRGA hardware problem\ flag(n_bad_irga)
  • Vector averaged wind speed(wind_spd)
  • Number of c samples removed due to spikes(n_spk_c)
  • Status of source for mixing ratio(real_mr)
  • Status of source for latent heat of vaporization(real_lv)
  • specific heat of moist air(cp)
  • number of t samples removed due to spikes(n_spk_t)
  • Number of u samples removed due to spikes(n_spk_u)
  • number of v samples removed due to spikes(n_spk_v)
  • number of w samples removed due to spikes(n_spk_w)
  • Number of q samples removed due to spikes(n_spk_q)
  • 0=real or 1=dummy value of cp(real_cp)
  • number of valid c samples(n_good_c)
  • number of valid q samples(n_good_q)
  • number of valid t samples(n_good_t)
  • number of valid v samples(n_good_v)
  • Number of valid u samples(n_good_u)
  • Number of valid w samples(n_good_w)
  • Latent heat of vaporization(lv)
  • Water vapor mixing ratio observed by the Raman lidar(mr)
  • CO2 flux(fc)
  • moist air density(rho)
  • rotated mean w(mean_rot_w)
  • rotated mean v(mean_rot_v)
  • Rotated mean u(mean_rot_u)
  • skewness of variable w(skew_w)
  • skewness of variable u(skew_u)
  • Skewness of variable mean_v(skew_v)
  • skewness of variable t(skew_t)
  • skewness of variable q(skew_q)
  • variance of c(var_c)
  • variance of variable w(var_w)
  • Variance of variable mean_v(var_v)
  • variance of variable u(var_u)
  • variance of t(var_t)
  • variance of q(var_q)
  • Rotated covariance wc(cvar_rot_wc)
  • rotated covariance wq(cvar_rot_wq)
  • rotated covariance wt(cvar_rot_wt)
  • Rotated covariance vc(cvar_rot_vc)
  • rotated covariance vq(cvar_rot_vq)
  • Rotated covariance vt(cvar_rot_vt)
  • rotated covariance vw(cvar_rot_vw)
  • rotated covariance uc(cvar_rot_uc)
  • Rotated covariance uq(cvar_rot_uq)
  • Rotated covariance ut(cvar_rot_ut)
  • rotated covariance uw(cvar_rot_uw)
  • rotated covariance uv(cvar_rot_uv)
  • Average temperature (IGRA internal sensor)(temp_irga)
  • latent heat flux(lv_e)
  • rotation to zero v(phi)
  • Number of bad or out of range c samples(n_bad_c)
  • Number of bad or out of range q samples(n_bad_q)
  • Atmospheric pressure(atm_pres)
  • number of bad or out of range w samples(n_bad_w)
  • Number of bad or out of range t samples(n_bad_t)
  • number of bad or out of range u samples(n_bad_u)
  • number of bad or out of range v samples(n_bad_v)
  • Cross-boom wind velocity (v)(mean_v)
  • Vertical wind velocity (w)(mean_w)
  • mean sonic temperature (t), i.e. virtual temperature(mean_t)
  • Down-boom wind velocity (u)(mean_u)
  • variance of v(var_rot_v)
  • rotated variance w(var_rot_w)
  • Rotated variance u(var_rot_u)
  • mean co2 concentration (c)(mean_c)
  • mean water vapor concentration (q)(mean_q)
  • number of samples with bad sonic status flag(n_bad_son_ic)
  • Standard deviation of wind elevation angle(std_elev)
  • number of samples with IRGA optical path blocked flag(n_bad_irga_light)
more
sgpsirsE21.b1:
  • Downwelling Shortwave Diffuse Hemispheric Irradiance, Ventilated Pyranometer(down_short_diffuse_hemisp)
  • Downwelling longwave hemispheric irradiance, shaded pyrgeometer, standard
    deviation(down_long_hemisp_shaded_std)
  • Downwelling Shortwave Hemispheric Irradiance, Ventilated Pyrgeometer, Standard
    Deviation(down_short_hemisp_std)
  • Instantaneous Dome Temperature(inst_up_long_dome_temp)
  • Upwelling longwave hemispheric irradiance, pyrgeometer, maxima(up_long_hemisp_max)
  • Upwelling Longwave Hemispheric Irradiance, Pyrgeometer, Minima(up_long_hemisp_min)
  • Downwelling longwave hemispheric irradiance, shaded pyrgeometer(down_long_hemisp_shaded)
  • 25 meter Upwelling Shortwave Hemispheric Irradiance, Pyranometer(up_short_hemisp)
  • Shortwave direct normal irradiance, pyrheliometer, minima(short_direct_normal_min)
  • Upwelling (10 meter) Longwave Hemispheric Irradiance, Ventilated Pyrgeometer,
    Standard Deviation(up_long_hemisp_std)
  • Shortwave Direct Normal Irradiance, Pyrheliometer, Maxima(short_direct_normal_max)
  • Downwelling longwave hemispheric net infrared(down_long_netir)
  • 10 meter Upwelling Longwave Hemispheric Irradiance, Pyrgeometer(up_long_hemisp)
  • Down-welling unshaded pyranometer voltage(down_short_hemisp)
  • Downwelling Longwave Hemispheric Irradiance, Shaded Pyrgeometer, Maxima(down_long_hemisp_shaded_max)
  • Downwelling Longwave Hemispheric Irradiance, Shaded Pyrgeometer, Minima(down_long_hemisp_shaded_min)
  • Upwelling (10 meter) Shortwave Hemispheric Irradiance, Ventilated Pyranometer,
    Standard Deviation(up_short_hemisp_std)
  • Downwelling Shortwave Diffuse Hemispheric Irradiance, Pyrgeometer, Minima(down_short_diffuse_hemisp_min)
  • Downwelling shortwave diffuse hemispheric irradiance, pyranometer, maxima(down_short_diffuse_hemisp_max)
  • Instantaneous Upwelling Longwave Hemispheric Irradiance, Pyrgeometer(up_long_netir)
  • Battery voltage(vBatt)
  • Instantaneous Downwelling Pyrgeometer Dome Thermistor Temperature, Shaded
    Pyrgeometer(inst_down_long_shaded_dome_temp)
  • Shortwave direct normal irradiance, pyrheliometer(short_direct_normal)
  • Downwelling Shortwave Hemispheric Irradiance, Pyranometer, Minima(down_short_hemisp_min)
  • Instantaneous downwelling pyrgeometer case thermistor temperature, shaded
    pyrgeometer(inst_down_long_shaded_case_temp)
  • Shortwave Direct Normal Irradiance, Pyrgeometer, Standard Deviation(short_direct_normal_std)
  • Upwelling shortwave hemispheric irradiance, pyranometer, minima(up_short_hemisp_min)
  • Upwelling (10 meter) Shortwave Hemispheric Irradiance, Pyranometer, Maxima(up_short_hemisp_max)
  • Downwelling Shortwave Diffuse Hemispheric Irradiance, Pyranometer, Standard
    Deviation(down_short_diffuse_hemisp_std)
  • Instantaneous upwelling pyrgeometer case thermistor temperature, pyrgeometer(inst_up_long_case_temp)
  • Downwelling shortwave hemispheric irradiance, pyranometer, maxima(down_short_hemisp_max)
more
sgpmfrsrE12.a0:
  • Narrowband hemispheric irradiance, filter 5(hemisp_narrowband_filter5_raw)
  • Direct Horizontal Broadband Irradiance(direct_horizontal_broadband)
  • Offset subtracted from hemispheric filter1 data(offset_filter1)
  • Offset subtracted from upwelling hemispheric filter2 data(offset_filter2)
  • Offset subtracted from upwelling hemispheric filter5 data(offset_filter5)
  • Offset subtracted from hemispheric and diffuse filter6 data(offset_filter6)
  • Offset subtracted from direct normal filter3 data(offset_filter3)
  • Offset subtracted from direct normal filter4 data(offset_filter4)
  • Alltime hemispheric broadband irradiance(alltime_hemisp_broadband)
  • Offset subtracted from hemispheric and diffuse broadband data(offset_broadband)
  • Second detector temperature(head_temp2)
  • Data logger supply voltage(logger_volt)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 2(diffuse_hemisp_narrowband_filter2_raw)
  • Hemispheric broadband irradiance(hemisp_broadband)
  • Diffuse narrowband hemispheric irradiance, filter 1(diffuse_hemisp_narrowband_filter1_raw)
  • Narrowband hemispheric irradiance, filter 2(hemisp_narrowband_filter2_raw)
  • Detector temperature(head_temp)
  • Diffuse Hemispheric Broadband Irradiance, offset corrected(diffuse_hemisp_broadband)
  • Data Logger Temperature(logger_temp)
  • Diffuse narrowband hemispheric irradiance, filter 4(diffuse_hemisp_narrowband_filter4_raw)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 1, offset corrected(diffuse_hemisp_narrowband_filter1)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 3(diffuse_hemisp_narrowband_filter3)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 2, offset corrected(diffuse_hemisp_narrowband_filter2)
  • Narrowband diffuse hemispheric irradiance, filter 5, offset and cosine corrected(diffuse_hemisp_narrowband_filter5)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 4(diffuse_hemisp_narrowband_filter4)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 6, offset corrected(diffuse_hemisp_narrowband_filter6)
  • Narrowband hemispheric irradiance, filter 1(hemisp_narrowband_filter1_raw)
  • Diffuse narrowband hemispheric irradiance, filter 3(diffuse_hemisp_narrowband_filter3_raw)
  • Narrowband Direct Horizontal Irradiance, Filter 5, cosine corrected(direct_horizontal_narrowband_filter5)
  • Narrowband Direct Horizontal Irradiance, Filter 6, cosine corrected(direct_horizontal_narrowband_filter6)
  • Direct horizontal narrowband irradiance, filter 1(direct_horizontal_narrowband_filter1)
  • Narrowband Direct Horizontal Irradiance, Filter 2, cosine corrected(direct_horizontal_narrowband_filter2)
  • Direct Horizontal Narrowband Irradiance, Filter 3(direct_horizontal_narrowband_filter3)
  • Narrowband Direct Horizontal Irradiance, Filter 4, cosine corrected(direct_horizontal_narrowband_filter4)
  • Narrowband hemispheric irradiance, filter 4(hemisp_narrowband_filter4_raw)
  • Diffuse narrowband hemispheric irradiance, filter 6(diffuse_hemisp_narrowband_filter6_raw)
  • Narrowband Hemispheric Irradiance, Filter 3(hemisp_narrowband_filter3_raw)
  • Hemispheric broadband irradiance(hemisp_broadband_raw)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 5(diffuse_hemisp_narrowband_filter5_raw)
  • Narrowband Hemispheric Irradiance, Filter 6(hemisp_narrowband_filter6_raw)
  • Alltime Narrowband Hemispheric Irradiance, Filter 4(alltime_hemisp_narrowband_filter4)
  • Alltime narrowband hemispheric irradiance, filter 5(alltime_hemisp_narrowband_filter5)
  • Alltime Narrowband Hemispheric Irradiance, Filter 6(alltime_hemisp_narrowband_filter6)
  • Alltime narrowband hemispheric irradiance, filter 1(alltime_hemisp_narrowband_filter1)
  • Alltime narrowband hemispheric irradiance, filter 2(alltime_hemisp_narrowband_filter2)
  • Alltime Narrowband Hemispheric Irradiance, Filter 3(alltime_hemisp_narrowband_filter3)
  • Diffuse Hemispheric Broadband Irradiance(diffuse_hemisp_broadband_raw)
  • Narrowband Hemispheric Irradiance, Filter 2(hemisp_narrowband_filter2)
  • Narrowband Hemispheric Irradiance, Filter 1, offset corrected(hemisp_narrowband_filter1)
  • Narrowband hemispheric irradiance, filter 6, nominal wavelength is 935 nm(hemisp_narrowband_filter6)
  • Narrowband Hemispheric Irradiance, Filter 5, offset corrected(hemisp_narrowband_filter5)
  • Narrowband hemispheric irradiance, filter 4, offset and cosine corrected(hemisp_narrowband_filter4)
  • Narrowband hemispheric irradiance, filter 3, offset and cosine corrected(hemisp_narrowband_filter3)
more
sgpmetE31.b1:
  • Relative humidity observed by the Raman lidar(rh_mean)
  • Vapor pressure mean, calculated(vapor_pressure_mean)
  • TBRG precipitation total(tbrg_precip_total)
  • Atmospheric pressure(atmos_pressure)
  • Wind speed vector mean(wspd_vec_mean)
  • Temperature mean(temp_mean)
  • TBRG precipitation total, corrected(tbrg_precip_total_corr)
  • Wind speed arithmetic mean(wspd_arith_mean)
  • Wind direction vector mean standard deviation(wdir_vec_std)
  • Wind direction vector mean(wdir_vec_mean)
more
sgpsirs20sE38.a0:
  • Instantaneous Upwelling Pyrgeometer Thermopile Pyrgeometer(inst_up_long_hemisp_tp)
  • Instantaneous direct normal shortwave irradiance, pyrheliometer thermopile
    voltage(inst_direct_normal)
  • Instantaneous Downwelling Hemispheric Shortwave, Pyranometer Thermopile Voltage(inst_global)
  • Instantaneous Upwelling Pyrgeometer Case Thermistor Resistance, Pyrgeometer(inst_up_long_case_resist)
  • Instantaneous Downwelling Pyrgeometer Case Thermistor Resistance, Shaded
    Pyrgeometer(inst_down_long_shaded_case_resist)
  • Instantaneous uncorrected downwelling shortwave diffuse, shaded pyranometer
    thermopile voltage(inst_diffuse)
  • Instantaneous Upwelling Pyrgeometer Dome Thermistor Resistance Pyrgeometer(inst_up_long_dome_resist)
  • Instantaneous Upwelling Shortwave Hemispheric Irradiance, Pyranometer(inst_up_short_hemisp)
  • Instantaneous downwelling pyrgeometer dome thermistor resistance, shaded
    pyrgeometer(inst_down_long_shaded_dome_resist)
  • Instantaneous downwelling pyrgeometer thermopile voltage, shaded pyrgeometer(inst_down_long_hemisp_shaded_tp)
more
sgpmfrsrlangplotE36.c1:
  • log(irradiance) for the Direct Narrowband Filter3, Michalsky(michalsky_lnI_filter3)
  • log(irradiance) for the Direct Narrowband Filter4, Michalsky(michalsky_lnI_filter4)
  • log(irradiance) for the Direct Narrowband Filter5, Michalsky(michalsky_lnI_filter5)
  • log(irradiance) for the Direct Narrowband Filter6, Michalsky(michalsky_lnI_filter6)
  • log(irradiance) for the Direct Narrowband Filter1(michalsky_lnI_filter1)
  • log(irradiance) for the Direct Narrowband Filter2, Michalsky(michalsky_lnI_filter2)
  • rejected points for the final fit for the Direct Narrowband Filter6, Michalsky(michalsky_rejected_filter6)
  • rejected points for the final fit for the Direct Narrowband Filter2(michalsky_rejected_filter2)
  • rejected points for the final fit for the Direct Narrowband Filter3, Michalsky(michalsky_rejected_filter3)
  • rejected points for the final fit for the Direct Narrowband Filter4, Michalsky(michalsky_rejected_filter4)
  • rejected points for the final fit for the Direct Narrowband Filter5, Michalsky(michalsky_rejected_filter5)
  • rejected points for the final fit for the Direct Narrowband Filter1, Michalsky(michalsky_rejected_filter1)
  • log(irradiance) for the Direct Broadband(barnard_lnI_broadband)
  • Airmasses(barnard_airmass)
  • airmass(michalsky_airmass)
  • rejected points for the final fit for the Direct Broadband(michalsky_rejected_broadband)
  • log(irradiance) for the Direct Broadband(michalsky_lnI_broadband)
  • log(irradiance) for the Direct Narrowband Filter1, Barnard(barnard_lnI_filter1)
  • log(irradiance) for the Direct Narrowband Filter2, Barnard(barnard_lnI_filter2)
  • log(irradiance) for the Direct Narrowband Filter3, Barnard(barnard_lnI_filter3)
  • rejected points for the final fit for the Direct Narrowband Filter2(barnard_rejected_filter2)
  • rejected points for the final fit for the Direct Narrowband Filter1(barnard_rejected_filter1)
  • rejected points for the final fit for the Direct Narrowband Filter4, Barnard(barnard_rejected_filter4)
  • rejected points for the final fit for the Direct Narrowband Filter3, Barnard(barnard_rejected_filter3)
  • rejected points for the final fit for the Direct Narrowband Filter6(barnard_rejected_filter6)
  • rejected points for the final fit for the Direct Narrowband Filter5, Barnard(barnard_rejected_filter5)
  • rejected points for the final fit for the Direct Broadband, Barnard(barnard_rejected_broadband)
  • log(irradiance) for the Direct Narrowband Filter4(barnard_lnI_filter4)
  • log(irradiance) for the Direct Narrowband Filter5(barnard_lnI_filter5)
  • log(irradiance) for the Direct Narrowband Filter6(barnard_lnI_filter6)
more
sgpxsaprrhiI6.a1:
  • data_volume_index_number(volume_number)
  • pulse_repetition_frequency(prt)
  • data_volume_start_time_utc(time_coverage_start)
  • File status(file_status)
  • Differential reflectivity(differential_reflectivity)
  • transmit_pulse_mode(prt_mode)
  • East longitude(longitude)
  • Index of first ray in sweep, 0-based(sweep_start_ray_index)
  • Beam Elevation Angle(elevation)
  • Time corresponding to last radial in file(time_coverage_end)
  • Clutter filtered reflectivity in horizontal polarization(reflectivity_horizontal)
  • Mean doppler velocity(mean_doppler_velocity)
  • ray_target_fixed_angle(fixed_angle)
  • Differential propagation phase shift(differential_phase)
  • Scan mode for sweep(sweep_mode)
  • altitude(altitude)
  • Cross correlation ratio (RhoHV)(cross_correlation_ratio)
  • Azimuth of Radar Ray(azimuth)
  • Doppler spectrum width(doppler_spectrum_width)
  • Unambiguous range(unambiguous_range)
  • North latitude(latitude)
  • Total power(total_power)
  • Time index of last ray in sweep, 0-based(sweep_end_ray_index)
  • Unambiguous Doppler velocity(nyquist_velocity)
  • Specific differential phase (KDP)(specific_differential_phase)
  • Normalized coherent power(normalized_coherent_power)
  • Sweep number, zero-based count(sweep_number)
  • Distance to the center of the corresponding range bin(range)
more
sgpirt200msE32.a1:
  • Internal Reference Infra Red Temperature(ref_ir_temp)
  • Sky Infra-Red Temperature(sky_ir_temp)
more
sgpmfrsrlangleyE36.c1:
  • solar constant corrected for solar distance for the Direct Broadband(michalsky_solar_constant_sdist_broadband)
  • rejection flag for Direct Broadband(michalsky_badflag_broadband)
  • error in final linear fit for the Direct BroadBand(barnard_error_fit_broadband)
  • rejection flag for Direct Narrowband Filter6(michalsky_badflag_filter6)
  • rejection flag for Direct Narrowband Filter2(michalsky_badflag_filter2)
  • rejection flag for Direct Narrowband Filter3(michalsky_badflag_filter3)
  • rejection flag for Direct Narrowband Filter4(michalsky_badflag_filter4)
  • rejection flag for Direct Narrowband Filter5(michalsky_badflag_filter5)
  • rejection flag for Direct Narrowband Filter1(michalsky_badflag_filter1)
  • optical depth for the Direct Narrowband Filter2(michalsky_optical_depth_filter2)
  • optical depth for the Direct Narrowband Filter1(michalsky_optical_depth_filter1)
  • optical depth for the Direct Narrowband Filter4(michalsky_optical_depth_filter4)
  • optical depth for the Direct Narrowband Filter3(michalsky_optical_depth_filter3)
  • optical depth for the Direct Narrowband Filter6(michalsky_optical_depth_filter6)
  • optical depth for the Direct Narrowband Filter5(michalsky_optical_depth_filter5)
  • number of points used in final linear fit for the Direct Narrowband Filter4(barnard_number_points_filter4)
  • number of points used in final linear fit for the Direct Narrowband Filter3(barnard_number_points_filter3)
  • number of points used in final linear fit for the Direct Narrowband Filter6(barnard_number_points_filter6)
  • number of points used in final linear fit for the Direct Narrowband Filter5(barnard_number_points_filter5)
  • number of points used in final linear fit for the Direct Narrowband Filter2(barnard_number_points_filter2)
  • number of points used in final linear fit for the Direct Narrowband Filter1(barnard_number_points_filter1)
  • rejection flag for Direct Broadband(barnard_badflag_broadband)
  • optical depth for the Direct BroadBand(michalsky_optical_depth_broadband)
  • optical depth for the Direct BroadBand(barnard_optical_depth_broadband)
  • Langley regression Io, adjusted to 1AU, Barnard, Direct BroadBand(barnard_solar_constant_sdist_broadband)
  • Michalsky computed sun to earth distance(michalsky_sun_earth_distance)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter1(barnard_good_fraction_filter1)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter3(barnard_good_fraction_filter3)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter2(barnard_good_fraction_filter2)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter5(barnard_good_fraction_filter5)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter4(barnard_good_fraction_filter4)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter6(barnard_good_fraction_filter6)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter3(michalsky_good_fraction_filter3)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter4(michalsky_good_fraction_filter4)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter5(michalsky_good_fraction_filter5)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter6(michalsky_good_fraction_filter6)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter1(michalsky_good_fraction_filter1)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter2(michalsky_good_fraction_filter2)
  • optical depth for the Direct Narrowband Filter1(barnard_optical_depth_filter1)
  • optical depth for the Direct Narrowband Filter3(barnard_optical_depth_filter3)
  • optical depth for the Direct Narrowband Filter2(barnard_optical_depth_filter2)
  • Langley regression Io, Michalsky, Direct BroadBand(michalsky_solar_constant_broadband)
  • optical depth for the Direct Narrowband Filter5(barnard_optical_depth_filter5)
  • optical depth for the Direct Narrowband Filter4(barnard_optical_depth_filter4)
  • optical depth for the Direct Narrowband Filter6(barnard_optical_depth_filter6)
  • rejection flag for Direct Narrowband Filter3(barnard_badflag_filter3)
  • rejection flag for Direct Narrowband Filter4(barnard_badflag_filter4)
  • rejection flag for Direct Narrowband Filter5(barnard_badflag_filter5)
  • rejection flag for Direct Narrowband Filter6(barnard_badflag_filter6)
  • rejection flag for Direct Narrowband Filter1(barnard_badflag_filter1)
  • rejection flag for Direct Narrowband Filter2(barnard_badflag_filter2)
  • number of points used in final linear fit for the Direct Broadband(barnard_number_points_broadband)
  • solar constant corrected for solar distance for the Direct Narrowband Filter2(barnard_solar_constant_sdist_filter2)
  • solar constant corrected for solar distance for the Direct Narrowband Filter3(barnard_solar_constant_sdist_filter3)
  • Langley regression Io, adjusted to 1AU, Barnard, Direct Narrowband Filter4(barnard_solar_constant_sdist_filter4)
  • solar constant corrected for solar distance for the Direct Narrowband Filter5(barnard_solar_constant_sdist_filter5)
  • solar constant corrected for solar distance for the Direct Narrowband Filter6(barnard_solar_constant_sdist_filter6)
  • solar constant corrected for solar distance for the Direct Narrowband Filter1(barnard_solar_constant_sdist_filter1)
  • error in final linear fit for the Direct Narrowband Filter6(barnard_error_fit_filter6)
  • percentage of initial points used in final linear fit for the Direct Broadband(michalsky_good_fraction_broadband)
  • error in final linear fit for the Direct Narrowband Filter3(barnard_error_fit_filter3)
  • error in final linear fit for the Direct Narrowband Filter2(barnard_error_fit_filter2)
  • error in final linear fit for the Direct Narrowband Filter5(barnard_error_fit_filter5)
  • error in final linear fit for the Direct Narrowband Filter4(barnard_error_fit_filter4)
  • error in final linear fit for the Direct Narrowband Filter1(barnard_error_fit_filter1)
  • number of points used in final linear fit for the Direct Narrowband Filter1(michalsky_number_points_filter1)
  • number of points used in final linear fit for the Direct Narrowband Filter6(michalsky_number_points_filter6)
  • number of points used in final linear fit for the Direct Narrowband Filter2(michalsky_number_points_filter2)
  • number of points used in final linear fit for the Direct Narrowband Filter3(michalsky_number_points_filter3)
  • number of points used in final linear fit for the Direct Narrowband Filter4(michalsky_number_points_filter4)
  • number of points used in final linear fit for the Direct Narrowband Filter5(michalsky_number_points_filter5)
  • error in optical depth (slope) of final linear fit for the Direct Broadband(barnard_error_slope_broadband)
  • standard deviation around regression line for the Direct Narrowband Filter2(michalsky_standard_deviation_filter2)
  • standard deviation around regression line for the Direct BroadBand(michalsky_standard_deviation_broadband)
  • standard deviation around regression line for the Direct Narrowband Filter3(michalsky_standard_deviation_filter3)
  • standard deviation around regression line for the Direct Narrowband Filter1(michalsky_standard_deviation_filter1)
  • standard deviation around regression line for the Direct Narrowband Filter6(michalsky_standard_deviation_filter6)
  • standard deviation around regression line for the Direct Narrowband Filter4(michalsky_standard_deviation_filter4)
  • standard deviation around regression line for the Direct Narrowband Filter5(michalsky_standard_deviation_filter5)
  • percentage of initial points used in final linear fit for the Direct Broadband(barnard_good_fraction_broadband)
  • Barnard computed sun to earth distance(barnard_sun_earth_distance)
  • Langley regression Io, Michalsky, Direct Narrowband Filter2(michalsky_solar_constant_filter2)
  • solar constant for the Direct Narrowband Filter1(michalsky_solar_constant_filter1)
  • Langley regression Io, Michalsky, Direct Narrowband Filter4(michalsky_solar_constant_filter4)
  • solar constant for the Direct Narrowband Filter3(michalsky_solar_constant_filter3)
  • solar constant for the Direct Narrowband Filter6(michalsky_solar_constant_filter6)
  • Langley regression Io, Michalsky, Direct Narrowband Filter5(michalsky_solar_constant_filter5)
  • number of points used in final linear fit for the Direct Broadband(michalsky_number_points_broadband)
  • solar constant corrected for solar distance for the Direct Narrowband Filter1(michalsky_solar_constant_sdist_filter1)
  • solar constant corrected for solar distance for the Direct Narrowband Filter2(michalsky_solar_constant_sdist_filter2)
  • solar constant corrected for solar distance for the Direct Narrowband Filter5(michalsky_solar_constant_sdist_filter5)
  • solar constant corrected for solar distance for the Direct Narrowband Filter6(michalsky_solar_constant_sdist_filter6)
  • solar constant corrected for solar distance for the Direct Narrowband Filter3(michalsky_solar_constant_sdist_filter3)
  • solar constant corrected for solar distance for the Direct Narrowband Filter4(michalsky_solar_constant_sdist_filter4)
  • error in optical depth (slope) of final linear fit for the Direct Narrowband
    Filter5(barnard_error_slope_filter5)
  • error in optical depth (slope) of final linear fit for the Direct Narrowband
    Filter4(barnard_error_slope_filter4)
  • error in optical depth (slope) of final linear fit for the Direct Narrowband
    Filter6(barnard_error_slope_filter6)
  • error in optical depth (slope) of final linear fit for the Direct Narrowband
    Filter1(barnard_error_slope_filter1)
  • error in optical depth (slope) of final linear fit for the Direct Narrowband
    Filter3(barnard_error_slope_filter3)
  • error in optical depth (slope) of final linear fit for the Direct Narrowband
    Filter2(barnard_error_slope_filter2)
more
sgpswatsE31.b1:
  • Sensor temperature rise, east profile(trise_e)
  • Sensor temperature rise, west profile(trise_w)
  • Reference Thermistor Temperature(tref)
  • Volumetric water content, east profile(watcont_e)
  • Volumetric water content, west profile(watcont_w)
  • Soil temperature, west profile(tsoil_w)
  • Soil temperature, east profile(tsoil_e)
  • Soil water potential, east profile(soilwatpot_e)
  • Soil water potential, west profile(soilwatpot_w)
  • Fractional water index, east profile(fwi_e)
  • Fractional water index, west profile(fwi_w)
  • East profile sensor serial numbers(serial_numbers_e)
  • West profile sensor serial numbers(serial_numbers_w)
  • depth(depth)
  • Reference sensor temperature rise, east profile(trise_ref_e)
  • Reference sensor temperature rise, west profile(trise_ref_w)
more
sgp915rwpprecipmomI8.a0:
  • Height of Center of First Range Gate(rgf)
  • Height of center of last range gate(rgl)
  • Range gate spacing(rgs)
  • Signal-to-noise-ratio(snr)
  • Number of Valid Heights(nheight)
  • Rx Bandwidth Switch Code(bswitch)
  • Pulse repetition frequency(prf)
  • Radial Velocity Spectral Resolution(vsr)
  • Time Domain Integration Time(tditime)
  • Number of pulse code bits(pcbits)
  • Array of heights for each sample time(height_t)
  • Spectral Width: vert velocity(specw)
  • Height Index(range_gate)
  • Delay Time to 1st Gate(dly)
  • Pulse length(plen)
  • Interpulse period(ipp)
  • Sample Rate(sampr)
  • Vertical FFT Bandwidth(vband)
  • Number of Coherent Samples/Spectral Point(ncoh)
  • Individual Spectrum Integration Time(sitime)
  • Number of Individual Spectra/Average Spectrum(nspc)
  • Mean atmospheric vertical velocity(mdf)
  • 1000 * log10(noise signal level)(noise)
  • Ave Time per Average Spectra. Also known as dwell.(spcavetime)
more
sgpirtE34.b1:
  • Sky Infra Red Temperature Maxima(sky_ir_temp_max)
  • Sky Infra-Red Temperature Minima(sky_ir_temp_min)
  • Sky Infra-Red Temperature(sky_ir_temp)
  • Sky infrared temperature, standard deviation(sky_ir_temp_std)
  • Number of averaged samples(samples_in_average)
  • Internal Reference Infra Red Temperature(ref_ir_temp)
more
sgpmfrsrlangplotE13.c1:
  • rejected points for the final fit for the Direct Narrowband Filter6(barnard_rejected_filter6)
  • rejected points for the final fit for the Direct Narrowband Filter1(barnard_rejected_filter1)
  • rejected points for the final fit for the Direct Narrowband Filter5, Barnard(barnard_rejected_filter5)
  • rejected points for the final fit for the Direct Narrowband Filter4, Barnard(barnard_rejected_filter4)
  • rejected points for the final fit for the Direct Narrowband Filter3, Barnard(barnard_rejected_filter3)
  • rejected points for the final fit for the Direct Narrowband Filter2(barnard_rejected_filter2)
  • log(irradiance) for the Direct Broadband(barnard_lnI_broadband)
  • log(irradiance) for the Direct Narrowband Filter1, Barnard(barnard_lnI_filter1)
  • log(irradiance) for the Direct Narrowband Filter2, Barnard(barnard_lnI_filter2)
  • log(irradiance) for the Direct Narrowband Filter5(barnard_lnI_filter5)
  • log(irradiance) for the Direct Narrowband Filter6(barnard_lnI_filter6)
  • log(irradiance) for the Direct Narrowband Filter3, Barnard(barnard_lnI_filter3)
  • log(irradiance) for the Direct Narrowband Filter4(barnard_lnI_filter4)
  • Airmasses(barnard_airmass)
  • rejected points for the final fit for the Direct Broadband, Barnard(barnard_rejected_broadband)
  • log(irradiance) for the Direct Narrowband Filter6, Michalsky(michalsky_lnI_filter6)
  • log(irradiance) for the Direct Narrowband Filter4, Michalsky(michalsky_lnI_filter4)
  • log(irradiance) for the Direct Narrowband Filter5, Michalsky(michalsky_lnI_filter5)
  • log(irradiance) for the Direct Narrowband Filter2, Michalsky(michalsky_lnI_filter2)
  • log(irradiance) for the Direct Narrowband Filter3, Michalsky(michalsky_lnI_filter3)
  • log(irradiance) for the Direct Narrowband Filter1(michalsky_lnI_filter1)
  • rejected points for the final fit for the Direct Broadband(michalsky_rejected_broadband)
  • rejected points for the final fit(rejected)
  • Air mass(airmass)
  • log(irradiance)(lnI)
  • MFRSR channels(channel)
  • log(irradiance) for the Direct Broadband(michalsky_lnI_broadband)
  • rejected points for the final fit for the Direct Narrowband Filter4, Michalsky(michalsky_rejected_filter4)
  • rejected points for the final fit for the Direct Narrowband Filter3, Michalsky(michalsky_rejected_filter3)
  • rejected points for the final fit for the Direct Narrowband Filter6, Michalsky(michalsky_rejected_filter6)
  • rejected points for the final fit for the Direct Narrowband Filter5, Michalsky(michalsky_rejected_filter5)
  • rejected points for the final fit for the Direct Narrowband Filter2(michalsky_rejected_filter2)
  • rejected points for the final fit for the Direct Narrowband Filter1, Michalsky(michalsky_rejected_filter1)
  • airmass(michalsky_airmass)
more
sgpsirsE15.a2:
  • Upwelling (10 meter) Longwave Hemispheric Irradiance, Ventilated Pyrgeometer,
    Standard Deviation(up_long_hemisp_std)
  • Upwelling (10 meter) Shortwave Hemispheric Irradiance, Ventilated Pyranometer,
    Standard Deviation(up_short_hemisp_std)
  • 25 meter Upwelling Shortwave Hemispheric Irradiance, Pyranometer(up_short_hemisp)
  • Downwelling Shortwave Diffuse Hemispheric Irradiance, Ventilated Pyranometer(down_short_diffuse_hemisp)
  • Downwelling shortwave diffuse hemispheric irradiance, pyranometer, maxima(down_short_diffuse_hemisp_max)
  • Instantaneous downwelling pyrgeometer case thermistor temperature, shaded
    pyrgeometer(inst_down_long_shaded_case_temp)
  • Down-welling unshaded pyranometer voltage(down_short_hemisp)
  • Downwelling Shortwave Diffuse Hemispheric Irradiance, Pyrgeometer, Minima(down_short_diffuse_hemisp_min)
  • Downwelling Shortwave Diffuse Hemispheric Irradiance, Pyranometer, Standard
    Deviation(down_short_diffuse_hemisp_std)
  • Instantaneous Downwelling Pyrgeometer Dome Thermistor Temperature, Shaded
    Pyrgeometer(inst_down_long_shaded_dome_temp)
  • Downwelling shortwave hemispheric irradiance, pyranometer, maxima(down_short_hemisp_max)
  • Upwelling shortwave hemispheric irradiance, pyranometer, minima(up_short_hemisp_min)
  • Downwelling longwave hemispheric net infrared(down_long_netir)
  • Downwelling Shortwave Hemispheric Irradiance, Pyranometer, Minima(down_short_hemisp_min)
  • Upwelling (10 meter) Shortwave Hemispheric Irradiance, Pyranometer, Maxima(up_short_hemisp_max)
  • Shortwave Direct Normal Irradiance, Pyrgeometer, Standard Deviation(short_direct_normal_std)
  • Downwelling Longwave Hemispheric Irradiance, Shaded Pyrgeometer, Minima(down_long_hemisp_shaded_min)
  • Downwelling Longwave Hemispheric Irradiance, Shaded Pyrgeometer, Maxima(down_long_hemisp_shaded_max)
  • 10 meter Upwelling Longwave Hemispheric Irradiance, Pyrgeometer(up_long_hemisp)
  • Upwelling Longwave Hemispheric Irradiance, Pyrgeometer, Minima(up_long_hemisp_min)
  • Instantaneous upwelling pyrgeometer case thermistor temperature, pyrgeometer(inst_up_long_case_temp)
  • Upwelling longwave hemispheric irradiance, pyrgeometer, maxima(up_long_hemisp_max)
  • Shortwave direct normal irradiance, pyrheliometer(short_direct_normal)
  • Instantaneous Dome Temperature(inst_up_long_dome_temp)
  • Battery voltage(vBatt)
  • Downwelling Shortwave Hemispheric Irradiance, Ventilated Pyrgeometer, Standard
    Deviation(down_short_hemisp_std)
  • Downwelling longwave hemispheric irradiance, shaded pyrgeometer(down_long_hemisp_shaded)
  • Instantaneous Upwelling Longwave Hemispheric Irradiance, Pyrgeometer(up_long_netir)
  • Shortwave Direct Normal Irradiance, Pyrheliometer, Maxima(short_direct_normal_max)
  • Shortwave direct normal irradiance, pyrheliometer, minima(short_direct_normal_min)
  • Downwelling longwave hemispheric irradiance, shaded pyrgeometer, standard
    deviation(down_long_hemisp_shaded_std)
more
sgpsirsE15.a1:
  • Shortwave direct normal irradiance, pyrheliometer, minima(short_direct_normal_min)
  • Shortwave Direct Normal Irradiance, Pyrheliometer, Maxima(short_direct_normal_max)
  • Downwelling Shortwave Diffuse Hemispheric Irradiance, Pyrgeometer, Minima(down_short_diffuse_hemisp_min)
  • Downwelling shortwave diffuse hemispheric irradiance, pyranometer, maxima(down_short_diffuse_hemisp_max)
  • Upwelling longwave hemispheric irradiance, pyrgeometer, maxima(up_long_hemisp_max)
  • Shortwave direct normal irradiance, pyrheliometer(short_direct_normal)
  • Upwelling Longwave Hemispheric Irradiance, Pyrgeometer, Minima(up_long_hemisp_min)
  • 25 meter Upwelling Shortwave Hemispheric Irradiance, Pyranometer(up_short_hemisp)
  • Downwelling Longwave Hemispheric Irradiance, Pyrgeometer, Minima(down_long_hemisp_min)
  • Downwelling Longwave Hemispheric Irradiance, Pyrgeometer, Maxima(down_long_hemisp_max)
  • Upwelling (10 meter) Longwave Hemispheric Irradiance, Ventilated Pyrgeometer,
    Standard Deviation(up_long_hemisp_std)
  • Upwelling (10 meter) Shortwave Hemispheric Irradiance, Pyranometer, Maxima(up_short_hemisp_max)
  • Upwelling shortwave hemispheric irradiance, pyranometer, minima(up_short_hemisp_min)
  • Downwelling longwave hemispheric irradiance, pyrgeometer(down_long_hemisp)
  • Downwelling Shortwave Diffuse Hemispheric Irradiance, Ventilated Pyranometer(down_short_diffuse_hemisp)
  • Downwelling Shortwave Hemispheric Irradiance, Ventilated Pyrgeometer, Standard
    Deviation(down_short_hemisp_std)
  • 10 meter Upwelling Longwave Hemispheric Irradiance, Pyrgeometer(up_long_hemisp)
  • Downwelling Shortwave Diffuse Hemispheric Irradiance, Pyranometer, Standard
    Deviation(down_short_diffuse_hemisp_std)
  • Upwelling (10 meter) Shortwave Hemispheric Irradiance, Ventilated Pyranometer,
    Standard Deviation(up_short_hemisp_std)
  • Shortwave Direct Normal Irradiance, Pyrgeometer, Standard Deviation(short_direct_normal_std)
  • Downwelling Longwave Hemispheric Irradiance, Ventilated Pyrgeometer, Standard
    Deviation(down_long_hemisp_std)
  • Battery voltage(vBatt)
  • Down-welling unshaded pyranometer voltage(down_short_hemisp)
  • Downwelling Shortwave Hemispheric Irradiance, Pyranometer, Minima(down_short_hemisp_min)
  • Downwelling shortwave hemispheric irradiance, pyranometer, maxima(down_short_hemisp_max)
more
sgpsirsE15.a0:
  • Downwelling longwave hemispheric irradiance, pyrgeometer(down_long_hemisp)
  • Direct-beam normal solar irradiance(nip)
  • Up-welling pyrgeometer dome thermistor resistance(up_long_dome_resist)
  • 10 meter Upwelling Longwave Hemispheric Irradiance, Pyrgeometer(up_long_hemisp)
  • Shaded pyranometer voltage(short_diffuse)
  • 25 meter Upwelling Shortwave Hemispheric Irradiance, Pyranometer(up_short_hemisp)
  • Up-welling pyrgeometer case thermistor resistance(up_long_case_resist)
  • Down-welling unshaded pyranometer voltage(down_short_hemisp)
  • Down-welling pyrgeometer case thermistor resistance(down_long_case_resist)
  • Down-welling pyrgeometer dome thermistor resistance(down_long_dome_resist)
more
sgpsirsE37.b1:
  • Upwelling (10 meter) Shortwave Hemispheric Irradiance, Ventilated Pyranometer,
    Standard Deviation(up_short_hemisp_std)
  • Upwelling (10 meter) Longwave Hemispheric Irradiance, Ventilated Pyrgeometer,
    Standard Deviation(up_long_hemisp_std)
  • Downwelling longwave hemispheric irradiance, shaded pyrgeometer(down_long_hemisp_shaded)
  • Instantaneous Downwelling Pyrgeometer Dome Thermistor Temperature, Shaded
    Pyrgeometer(inst_down_long_shaded_dome_temp)
  • Downwelling Longwave Hemispheric Irradiance, Shaded Pyrgeometer, Minima(down_long_hemisp_shaded_min)
  • Downwelling Longwave Hemispheric Irradiance, Shaded Pyrgeometer, Maxima(down_long_hemisp_shaded_max)
  • Downwelling Shortwave Diffuse Hemispheric Irradiance, Pyrgeometer, Minima(down_short_diffuse_hemisp_min)
  • Shortwave Direct Normal Irradiance, Pyrheliometer, Maxima(short_direct_normal_max)
  • Shortwave direct normal irradiance, pyrheliometer, minima(short_direct_normal_min)
  • Downwelling shortwave diffuse hemispheric irradiance, pyranometer, maxima(down_short_diffuse_hemisp_max)
  • Downwelling longwave hemispheric irradiance, shaded pyrgeometer, standard
    deviation(down_long_hemisp_shaded_std)
  • Downwelling Shortwave Diffuse Hemispheric Irradiance, Pyranometer, Standard
    Deviation(down_short_diffuse_hemisp_std)
  • Downwelling longwave hemispheric net infrared(down_long_netir)
  • Shortwave Direct Normal Irradiance, Pyrgeometer, Standard Deviation(short_direct_normal_std)
  • Upwelling shortwave hemispheric irradiance, pyranometer, minima(up_short_hemisp_min)
  • Upwelling (10 meter) Shortwave Hemispheric Irradiance, Pyranometer, Maxima(up_short_hemisp_max)
  • Downwelling Shortwave Hemispheric Irradiance, Ventilated Pyrgeometer, Standard
    Deviation(down_short_hemisp_std)
  • Battery voltage(vBatt)
  • Instantaneous Dome Temperature(inst_up_long_dome_temp)
  • Shortwave direct normal irradiance, pyrheliometer(short_direct_normal)
  • Instantaneous upwelling pyrgeometer case thermistor temperature, pyrgeometer(inst_up_long_case_temp)
  • Upwelling Longwave Hemispheric Irradiance, Pyrgeometer, Minima(up_long_hemisp_min)
  • Upwelling longwave hemispheric irradiance, pyrgeometer, maxima(up_long_hemisp_max)
  • Instantaneous Upwelling Longwave Hemispheric Irradiance, Pyrgeometer(up_long_netir)
  • 10 meter Upwelling Longwave Hemispheric Irradiance, Pyrgeometer(up_long_hemisp)
  • Downwelling Shortwave Hemispheric Irradiance, Pyranometer, Minima(down_short_hemisp_min)
  • Downwelling Shortwave Diffuse Hemispheric Irradiance, Ventilated Pyranometer(down_short_diffuse_hemisp)
  • Downwelling shortwave hemispheric irradiance, pyranometer, maxima(down_short_hemisp_max)
  • Instantaneous downwelling pyrgeometer case thermistor temperature, shaded
    pyrgeometer(inst_down_long_shaded_case_temp)
  • Down-welling unshaded pyranometer voltage(down_short_hemisp)
  • 25 meter Upwelling Shortwave Hemispheric Irradiance, Pyranometer(up_short_hemisp)
more
sgp5ebbrE36.b1:
  • Net radiation(net_radiation)
  • Wind direction vector mean(wdir_vec_mean)
  • Top T/RH sensor temperature(temp_trh_top)
  • Wind direction vector mean standard deviation(wdir_vec_std)
  • Top vapor pressure(vapor_pressure_top)
  • Bottom vapor pressure(vapor_pressure_bottom)
  • Top air temperature(temp_air_top)
  • Bottom T/RH sensor temperature(temp_trh_bottom)
  • Bottom relative humidity (fractional)(rh_bottom_fraction)
  • Top relative humidity (fractional)(rh_top_fraction)
  • Reference temperature in enclosure(temp_reference)
  • Bottom air temperature(temp_air_bottom)
  • AEM position indicator(home_signal)
  • Wind speed arithmetic mean(wspd_arith_mean)
  • Wind speed vector mean(wspd_vec_mean)
  • Atmospheric pressure(atmos_pressure)
more
sgp30baebbrE13.c1:
  • Standard deviation of wind direction (sigma theta)(sigma_wd)
  • Aerodynamic Latent heat flux(ale)
  • 0-5 cm change in soil heat storage with time, site 2(ces1)
  • 0-5 cm change in soil heat storage with time, site 2(ces2)
  • Change in energy storage 5(ces5)
  • Change in energy storage 3(ces3)
  • Change in energy storage 4(ces4)
  • Exchange Mechanism Position Indicator 0 to 15 mins(home_15)
  • Exchange Mechanism Position Indicator 15 to 30 mins(home_30)
  • Soil heat capacity 1(cs1)
  • 0-5 cm integrated soil temperature, site 5(ts5)
  • 0-5 cm integrated soil temperature, site 4(ts4)
  • 0-5 cm integrated soil temperature, site 3(ts3)
  • Soil temperature 2(ts2)
  • 0-5 cm integrated soil temperature, site 2(ts1)
  • Soil heat capacity 5(cs5)
  • Soil heat capacity 4(cs4)
  • Soil heat capacity 3(cs3)
  • Soil heat capacity 2(cs2)
  • Bottom relative humidity(hum_bot)
  • volumetric soil moisture, site 5(sm5)
  • volumetric soil moisture, site 4(sm4)
  • volumetric soil moisture, site 3(sm3)
  • volumetric soil moisture, site 2(sm2)
  • Soil moisture 1 (mass water/mass dry soil)(sm1)
  • Reference Thermistor Temperature(tref)
  • Friction velocity(austar)
  • Resultant wind speed(res_ws)
  • Top relative humidity(hum_top)
  • Corrected soil heat flow 4(c_shf4)
  • Corrected soil heat flow 3(c_shf3)
  • 5 cm soil heat flow corrected for soil moisture content, site 5(c_shf5)
  • 5 cm soil heat flow corrected for soil moisture content, site 2(c_shf2)
  • 5 cm soil heat flow corrected for soil moisture content, site 1(c_shf1)
  • Top air temperature(tair_top)
  • average surface soil heat flow(ave_shf)
  • Best estimate Sensible heat flux(hcomb)
  • Bottom air temperature(tair_bot)
  • ecomb
  • Retrieved pressure profile(pres)
  • Wind direction (relative to true north)(wind_d)
  • Scalar Wind speed(wind_s)
  • Temperature of the bottom humidity sensor chamber(thum_bot)
  • Temperature of the top humidity sensor chamber(thum_top)
  • Bowen ratio(bowen)
  • soil heat flow, site 5(g5)
  • soil heat flow, site 4(g4)
  • Soil heat flow at the surface 3(g3)
  • soil heat flow, site 2(g2)
  • Soil heat flow at the surface 1(g1)
  • Aerodynamic Sensible heat flux(ah)
  • corrected sensible heat flux(h)
  • Latent heat flux(e)
  • specific humidity(q)
  • Bottom vapor pressure(vp_bot)
  • Vegetation height outside fence(vegetation_height)
  • Top vapor pressure(vp_top)
  • 5 cm soil heat flow, site 1(shf1)
  • 5 cm soil heat flow, site 2(shf2)
  • 5 cm soil heat flow, site 5(shf5)
  • Soil heat flow 3(shf3)
  • 5 cm soil heat flow, site 4(shf4)
more
sgpmetE36.b1:
  • Wind speed vector mean(wspd_vec_mean)
  • Atmospheric pressure(atmos_pressure)
  • Vapor pressure mean, calculated(vapor_pressure_mean)
  • TBRG precipitation total, corrected(tbrg_precip_total_corr)
  • TBRG precipitation total(tbrg_precip_total)
  • Wind direction vector mean standard deviation(wdir_vec_std)
  • Temperature mean(temp_mean)
  • Wind direction vector mean(wdir_vec_mean)
  • Relative humidity observed by the Raman lidar(rh_mean)
  • Wind speed arithmetic mean(wspd_arith_mean)
more
sgpmfrsrE34.a0:
  • Narrowband hemispheric irradiance, filter 5(hemisp_narrowband_filter5_raw)
  • Offset subtracted from upwelling hemispheric filter5 data(offset_filter5)
  • Offset subtracted from hemispheric and diffuse filter6 data(offset_filter6)
  • Offset subtracted from direct normal filter3 data(offset_filter3)
  • Offset subtracted from direct normal filter4 data(offset_filter4)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 5(diffuse_hemisp_narrowband_filter5_raw)
  • Offset subtracted from hemispheric filter1 data(offset_filter1)
  • Offset subtracted from upwelling hemispheric filter2 data(offset_filter2)
  • Narrowband hemispheric irradiance, filter 2(hemisp_narrowband_filter2_raw)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 2(diffuse_hemisp_narrowband_filter2_raw)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 4(diffuse_hemisp_narrowband_filter4)
  • Narrowband diffuse hemispheric irradiance, filter 5, offset and cosine corrected(diffuse_hemisp_narrowband_filter5)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 6, offset corrected(diffuse_hemisp_narrowband_filter6)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 1, offset corrected(diffuse_hemisp_narrowband_filter1)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 2, offset corrected(diffuse_hemisp_narrowband_filter2)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 3(diffuse_hemisp_narrowband_filter3)
  • Hemispheric broadband irradiance(hemisp_broadband)
  • Narrowband Direct Horizontal Irradiance, Filter 5, cosine corrected(direct_horizontal_narrowband_filter5)
  • Narrowband Direct Horizontal Irradiance, Filter 6, cosine corrected(direct_horizontal_narrowband_filter6)
  • Direct Horizontal Narrowband Irradiance, Filter 3(direct_horizontal_narrowband_filter3)
  • Narrowband Direct Horizontal Irradiance, Filter 4, cosine corrected(direct_horizontal_narrowband_filter4)
  • Direct horizontal narrowband irradiance, filter 1(direct_horizontal_narrowband_filter1)
  • Narrowband Direct Horizontal Irradiance, Filter 2, cosine corrected(direct_horizontal_narrowband_filter2)
  • Diffuse Hemispheric Broadband Irradiance, offset corrected(diffuse_hemisp_broadband)
  • Diffuse narrowband hemispheric irradiance, filter 3(diffuse_hemisp_narrowband_filter3_raw)
  • Narrowband hemispheric irradiance, filter 4(hemisp_narrowband_filter4_raw)
  • Data logger supply voltage(logger_volt)
  • Narrowband hemispheric irradiance, filter 1(hemisp_narrowband_filter1_raw)
  • Diffuse narrowband hemispheric irradiance, filter 1(diffuse_hemisp_narrowband_filter1_raw)
  • Second detector temperature(head_temp2)
  • Hemispheric broadband irradiance(hemisp_broadband_raw)
  • Narrowband Hemispheric Irradiance, Filter 5, offset corrected(hemisp_narrowband_filter5)
  • Narrowband hemispheric irradiance, filter 6, nominal wavelength is 935 nm(hemisp_narrowband_filter6)
  • Narrowband hemispheric irradiance, filter 3, offset and cosine corrected(hemisp_narrowband_filter3)
  • Narrowband hemispheric irradiance, filter 4, offset and cosine corrected(hemisp_narrowband_filter4)
  • Narrowband Hemispheric Irradiance, Filter 1, offset corrected(hemisp_narrowband_filter1)
  • Narrowband Hemispheric Irradiance, Filter 2(hemisp_narrowband_filter2)
  • Direct Horizontal Broadband Irradiance(direct_horizontal_broadband)
  • Diffuse narrowband hemispheric irradiance, filter 6(diffuse_hemisp_narrowband_filter6_raw)
  • Narrowband Hemispheric Irradiance, Filter 3(hemisp_narrowband_filter3_raw)
  • Data Logger Temperature(logger_temp)
  • Offset subtracted from hemispheric and diffuse broadband data(offset_broadband)
  • Narrowband Hemispheric Irradiance, Filter 6(hemisp_narrowband_filter6_raw)
  • Diffuse Hemispheric Broadband Irradiance(diffuse_hemisp_broadband_raw)
  • Detector temperature(head_temp)
  • Alltime hemispheric broadband irradiance(alltime_hemisp_broadband)
  • Diffuse narrowband hemispheric irradiance, filter 4(diffuse_hemisp_narrowband_filter4_raw)
  • Alltime Narrowband Hemispheric Irradiance, Filter 3(alltime_hemisp_narrowband_filter3)
  • Alltime narrowband hemispheric irradiance, filter 2(alltime_hemisp_narrowband_filter2)
  • Alltime narrowband hemispheric irradiance, filter 1(alltime_hemisp_narrowband_filter1)
  • Alltime Narrowband Hemispheric Irradiance, Filter 6(alltime_hemisp_narrowband_filter6)
  • Alltime narrowband hemispheric irradiance, filter 5(alltime_hemisp_narrowband_filter5)
  • Alltime Narrowband Hemispheric Irradiance, Filter 4(alltime_hemisp_narrowband_filter4)
more
sgp915rwpprecipspecI8.a0:
  • Number of Valid Heights(nheight)
  • Vertical FFT Bandwidth(vband)
  • Spectral Data(spc_amp)
  • Height of Center of First Range Gate(rgf)
  • Height of center of last range gate(rgl)
  • Range gate spacing(rgs)
  • Height Index(range_gate)
  • Sample Rate(sampr)
  • Pulse repetition frequency(prf)
  • Array of heights for each sample time(height_t)
  • Number of pulse code bits(pcbits)
  • Particle radius at logarithmic center of bin(bins)
  • Radial Velocity Spectral Resolution(vsr)
  • Delay Time to 1st Gate(dly)
  • Time Domain Integration Time(tditime)
  • Interpulse period(ipp)
  • Ave Time per Average Spectra. Also known as dwell.(spcavetime)
  • Individual Spectrum Integration Time(sitime)
  • Number of Individual Spectra/Average Spectrum(nspc)
  • Number of Coherent Samples/Spectral Point(ncoh)
  • Rx Bandwidth Switch Code(bswitch)
  • Pulse length(plen)
more
sgpsirsE21.a2:
  • Upwelling Longwave Hemispheric Irradiance, Pyrgeometer, Minima(up_long_hemisp_min)
  • Downwelling Shortwave Diffuse Hemispheric Irradiance, Ventilated Pyranometer(down_short_diffuse_hemisp)
  • Shortwave Direct Normal Irradiance, Pyrgeometer, Standard Deviation(short_direct_normal_std)
  • Downwelling Longwave Hemispheric Irradiance, Shaded Pyrgeometer, Minima(down_long_hemisp_shaded_min)
  • Upwelling longwave hemispheric irradiance, pyrgeometer, maxima(up_long_hemisp_max)
  • 10 meter Upwelling Longwave Hemispheric Irradiance, Pyrgeometer(up_long_hemisp)
  • Down-welling unshaded pyranometer voltage(down_short_hemisp)
  • Downwelling Shortwave Diffuse Hemispheric Irradiance, Pyranometer, Standard
    Deviation(down_short_diffuse_hemisp_std)
  • Downwelling Shortwave Hemispheric Irradiance, Ventilated Pyrgeometer, Standard
    Deviation(down_short_hemisp_std)
  • Downwelling longwave hemispheric irradiance, shaded pyrgeometer(down_long_hemisp_shaded)
  • 25 meter Upwelling Shortwave Hemispheric Irradiance, Pyranometer(up_short_hemisp)
  • Downwelling Shortwave Hemispheric Irradiance, Pyranometer, Minima(down_short_hemisp_min)
  • Downwelling shortwave hemispheric irradiance, pyranometer, maxima(down_short_hemisp_max)
  • Battery voltage(vBatt)
  • Upwelling (10 meter) Longwave Hemispheric Irradiance, Ventilated Pyrgeometer,
    Standard Deviation(up_long_hemisp_std)
  • Downwelling longwave hemispheric irradiance, shaded pyrgeometer, standard
    deviation(down_long_hemisp_shaded_std)
  • Instantaneous Upwelling Longwave Hemispheric Irradiance, Pyrgeometer(up_long_netir)
  • Upwelling (10 meter) Shortwave Hemispheric Irradiance, Ventilated Pyranometer,
    Standard Deviation(up_short_hemisp_std)
  • Shortwave direct normal irradiance, pyrheliometer(short_direct_normal)
  • Instantaneous Downwelling Pyrgeometer Dome Thermistor Temperature, Shaded
    Pyrgeometer(inst_down_long_shaded_dome_temp)
  • Upwelling shortwave hemispheric irradiance, pyranometer, minima(up_short_hemisp_min)
  • Upwelling (10 meter) Shortwave Hemispheric Irradiance, Pyranometer, Maxima(up_short_hemisp_max)
  • Instantaneous downwelling pyrgeometer case thermistor temperature, shaded
    pyrgeometer(inst_down_long_shaded_case_temp)
  • Shortwave Direct Normal Irradiance, Pyrheliometer, Maxima(short_direct_normal_max)
  • Shortwave direct normal irradiance, pyrheliometer, minima(short_direct_normal_min)
  • Downwelling longwave hemispheric net infrared(down_long_netir)
  • Instantaneous upwelling pyrgeometer case thermistor temperature, pyrgeometer(inst_up_long_case_temp)
  • Downwelling shortwave diffuse hemispheric irradiance, pyranometer, maxima(down_short_diffuse_hemisp_max)
  • Downwelling Shortwave Diffuse Hemispheric Irradiance, Pyrgeometer, Minima(down_short_diffuse_hemisp_min)
  • Instantaneous Dome Temperature(inst_up_long_dome_temp)
  • Downwelling Longwave Hemispheric Irradiance, Shaded Pyrgeometer, Maxima(down_long_hemisp_shaded_max)
more
sgpsirsE21.a1:
  • Upwelling shortwave hemispheric irradiance, pyranometer, minima(up_short_hemisp_min)
  • Downwelling Shortwave Diffuse Hemispheric Irradiance, Pyrgeometer, Minima(down_short_diffuse_hemisp_min)
  • Downwelling shortwave diffuse hemispheric irradiance, pyranometer, maxima(down_short_diffuse_hemisp_max)
  • 10 meter Upwelling Longwave Hemispheric Irradiance, Pyrgeometer(up_long_hemisp)
  • Downwelling Longwave Hemispheric Irradiance, Ventilated Pyrgeometer, Standard
    Deviation(down_long_hemisp_std)
  • Shortwave direct normal irradiance, pyrheliometer(short_direct_normal)
  • Shortwave Direct Normal Irradiance, Pyrgeometer, Standard Deviation(short_direct_normal_std)
  • Downwelling Shortwave Hemispheric Irradiance, Ventilated Pyrgeometer, Standard
    Deviation(down_short_hemisp_std)
  • Downwelling Shortwave Diffuse Hemispheric Irradiance, Ventilated Pyranometer(down_short_diffuse_hemisp)
  • Upwelling (10 meter) Longwave Hemispheric Irradiance, Ventilated Pyrgeometer,
    Standard Deviation(up_long_hemisp_std)
  • Upwelling (10 meter) Shortwave Hemispheric Irradiance, Ventilated Pyranometer,
    Standard Deviation(up_short_hemisp_std)
  • Shortwave Direct Normal Irradiance, Pyrheliometer, Maxima(short_direct_normal_max)
  • Downwelling Longwave Hemispheric Irradiance, Pyrgeometer, Minima(down_long_hemisp_min)
  • Shortwave direct normal irradiance, pyrheliometer, minima(short_direct_normal_min)
  • Downwelling Longwave Hemispheric Irradiance, Pyrgeometer, Maxima(down_long_hemisp_max)
  • Down-welling unshaded pyranometer voltage(down_short_hemisp)
  • Downwelling shortwave hemispheric irradiance, pyranometer, maxima(down_short_hemisp_max)
  • Downwelling Shortwave Hemispheric Irradiance, Pyranometer, Minima(down_short_hemisp_min)
  • 25 meter Upwelling Shortwave Hemispheric Irradiance, Pyranometer(up_short_hemisp)
  • Downwelling Shortwave Diffuse Hemispheric Irradiance, Pyranometer, Standard
    Deviation(down_short_diffuse_hemisp_std)
  • Upwelling longwave hemispheric irradiance, pyrgeometer, maxima(up_long_hemisp_max)
  • Downwelling longwave hemispheric irradiance, pyrgeometer(down_long_hemisp)
  • Upwelling Longwave Hemispheric Irradiance, Pyrgeometer, Minima(up_long_hemisp_min)
  • Battery voltage(vBatt)
  • Upwelling (10 meter) Shortwave Hemispheric Irradiance, Pyranometer, Maxima(up_short_hemisp_max)
more
sgpsirs20sE33.a0:
  • Instantaneous Upwelling Pyrgeometer Thermopile Pyrgeometer(inst_up_long_hemisp_tp)
  • Instantaneous Downwelling Hemispheric Shortwave, Pyranometer Thermopile Voltage(inst_global)
  • Instantaneous Upwelling Pyrgeometer Dome Thermistor Resistance Pyrgeometer(inst_up_long_dome_resist)
  • Instantaneous uncorrected downwelling shortwave diffuse, shaded pyranometer
    thermopile voltage(inst_diffuse)
  • Instantaneous downwelling pyrgeometer dome thermistor resistance, shaded
    pyrgeometer(inst_down_long_shaded_dome_resist)
  • Instantaneous Downwelling Pyrgeometer Case Thermistor Resistance, Shaded
    Pyrgeometer(inst_down_long_shaded_case_resist)
  • Instantaneous downwelling pyrgeometer thermopile voltage, shaded pyrgeometer(inst_down_long_hemisp_shaded_tp)
  • Instantaneous Upwelling Pyrgeometer Case Thermistor Resistance, Pyrgeometer(inst_up_long_case_resist)
  • Instantaneous Upwelling Shortwave Hemispheric Irradiance, Pyranometer(inst_up_short_hemisp)
  • Instantaneous direct normal shortwave irradiance, pyrheliometer thermopile
    voltage(inst_direct_normal)
more
sgpsirsE21.a0:
  • 10 meter Upwelling Longwave Hemispheric Irradiance, Pyrgeometer(up_long_hemisp)
  • Shaded pyranometer voltage(short_diffuse)
  • Down-welling unshaded pyranometer voltage(down_short_hemisp)
  • Up-welling pyrgeometer case thermistor resistance(up_long_case_resist)
  • Downwelling longwave hemispheric irradiance, pyrgeometer(down_long_hemisp)
  • Direct-beam normal solar irradiance(nip)
  • Up-welling pyrgeometer dome thermistor resistance(up_long_dome_resist)
  • Down-welling pyrgeometer dome thermistor resistance(down_long_dome_resist)
  • 25 meter Upwelling Shortwave Hemispheric Irradiance, Pyranometer(up_short_hemisp)
  • Down-welling pyrgeometer case thermistor resistance(down_long_case_resist)
more
sgpsirs60sE13.a1:
  • Upwelling (10 meter) Shortwave Hemispheric Irradiance, Pyranometer, Maxima(up_short_hemisp_max)
  • Upwelling longwave hemispheric irradiance, pyrgeometer, maxima(up_long_hemisp_max)
  • Shortwave direct normal irradiance, pyrheliometer(short_direct_normal)
  • Downwelling shortwave hemispheric irradiance, pyranometer, maxima(down_short_hemisp_max)
  • 25 meter Upwelling Shortwave Hemispheric Irradiance, Pyranometer(up_short_hemisp)
  • Upwelling Longwave Hemispheric Irradiance, Pyrgeometer, Minima(up_long_hemisp_min)
  • Upwelling shortwave hemispheric irradiance, pyranometer, minima(up_short_hemisp_min)
  • Shortwave Direct Normal Irradiance, Pyrgeometer, Standard Deviation(short_direct_normal_std)
  • Downwelling Shortwave Hemispheric Irradiance, Pyranometer, Minima(down_short_hemisp_min)
  • Shortwave Direct Normal Irradiance, Pyrheliometer, Maxima(short_direct_normal_max)
  • Shortwave direct normal irradiance, pyrheliometer, minima(short_direct_normal_min)
  • Downwelling longwave hemispheric irradiance, shaded pyrgeometer(down_long_hemisp_shaded)
  • Battery voltage(vBatt)
  • Downwelling shortwave diffuse hemispheric irradiance, pyranometer, maxima(down_short_diffuse_hemisp_max)
  • Down-welling unshaded pyranometer voltage(down_short_hemisp)
  • Downwelling Shortwave Diffuse Hemispheric Irradiance, Pyrgeometer, Minima(down_short_diffuse_hemisp_min)
  • Downwelling Shortwave Hemispheric Irradiance, Ventilated Pyrgeometer, Standard
    Deviation(down_short_hemisp_std)
  • Downwelling longwave hemispheric irradiance, shaded pyrgeometer, standard
    deviation(down_long_hemisp_shaded_std)
  • Upwelling (10 meter) Longwave Hemispheric Irradiance, Ventilated Pyrgeometer,
    Standard Deviation(up_long_hemisp_std)
  • Upwelling (10 meter) Shortwave Hemispheric Irradiance, Ventilated Pyranometer,
    Standard Deviation(up_short_hemisp_std)
  • Downwelling Longwave Hemispheric Irradiance, Shaded Pyrgeometer, Maxima(down_long_hemisp_shaded_max)
  • Downwelling Shortwave Diffuse Hemispheric Irradiance, Pyranometer, Standard
    Deviation(down_short_diffuse_hemisp_std)
  • Downwelling Shortwave Diffuse Hemispheric Irradiance, Ventilated Pyranometer(down_short_diffuse_hemisp)
  • Downwelling Longwave Hemispheric Irradiance, Shaded Pyrgeometer, Minima(down_long_hemisp_shaded_min)
  • 10 meter Upwelling Longwave Hemispheric Irradiance, Pyrgeometer(up_long_hemisp)
more
sgpsirsE36.b1:
  • Downwelling Longwave Hemispheric Irradiance, Shaded Pyrgeometer, Maxima(down_long_hemisp_shaded_max)
  • Instantaneous Upwelling Longwave Hemispheric Irradiance, Pyrgeometer(up_long_netir)
  • Downwelling Longwave Hemispheric Irradiance, Shaded Pyrgeometer, Minima(down_long_hemisp_shaded_min)
  • Instantaneous downwelling pyrgeometer case thermistor temperature, shaded
    pyrgeometer(inst_down_long_shaded_case_temp)
  • Instantaneous Downwelling Pyrgeometer Dome Thermistor Temperature, Shaded
    Pyrgeometer(inst_down_long_shaded_dome_temp)
  • Shortwave Direct Normal Irradiance, Pyrgeometer, Standard Deviation(short_direct_normal_std)
  • Instantaneous Dome Temperature(inst_up_long_dome_temp)
  • Downwelling Shortwave Diffuse Hemispheric Irradiance, Pyrgeometer, Minima(down_short_diffuse_hemisp_min)
  • Downwelling Shortwave Hemispheric Irradiance, Ventilated Pyrgeometer, Standard
    Deviation(down_short_hemisp_std)
  • Downwelling shortwave diffuse hemispheric irradiance, pyranometer, maxima(down_short_diffuse_hemisp_max)
  • Instantaneous upwelling pyrgeometer case thermistor temperature, pyrgeometer(inst_up_long_case_temp)
  • Upwelling (10 meter) Longwave Hemispheric Irradiance, Ventilated Pyrgeometer,
    Standard Deviation(up_long_hemisp_std)
  • Downwelling Shortwave Diffuse Hemispheric Irradiance, Pyranometer, Standard
    Deviation(down_short_diffuse_hemisp_std)
  • Shortwave direct normal irradiance, pyrheliometer(short_direct_normal)
  • Upwelling (10 meter) Shortwave Hemispheric Irradiance, Ventilated Pyranometer,
    Standard Deviation(up_short_hemisp_std)
  • Downwelling longwave hemispheric irradiance, shaded pyrgeometer, standard
    deviation(down_long_hemisp_shaded_std)
  • Downwelling longwave hemispheric net infrared(down_long_netir)
  • Downwelling longwave hemispheric irradiance, shaded pyrgeometer(down_long_hemisp_shaded)
  • Downwelling Shortwave Diffuse Hemispheric Irradiance, Ventilated Pyranometer(down_short_diffuse_hemisp)
  • Shortwave direct normal irradiance, pyrheliometer, minima(short_direct_normal_min)
  • Downwelling Shortwave Hemispheric Irradiance, Pyranometer, Minima(down_short_hemisp_min)
  • Shortwave Direct Normal Irradiance, Pyrheliometer, Maxima(short_direct_normal_max)
  • Upwelling Longwave Hemispheric Irradiance, Pyrgeometer, Minima(up_long_hemisp_min)
  • Upwelling (10 meter) Shortwave Hemispheric Irradiance, Pyranometer, Maxima(up_short_hemisp_max)
  • Downwelling shortwave hemispheric irradiance, pyranometer, maxima(down_short_hemisp_max)
  • Battery voltage(vBatt)
  • 10 meter Upwelling Longwave Hemispheric Irradiance, Pyrgeometer(up_long_hemisp)
  • Upwelling shortwave hemispheric irradiance, pyranometer, minima(up_short_hemisp_min)
  • 25 meter Upwelling Shortwave Hemispheric Irradiance, Pyranometer(up_short_hemisp)
  • Upwelling longwave hemispheric irradiance, pyrgeometer, maxima(up_long_hemisp_max)
  • Down-welling unshaded pyranometer voltage(down_short_hemisp)
more
sgpxsaprvptI6.a1:
  • East longitude(longitude)
  • Unambiguous Doppler velocity(nyquist_velocity)
  • pulse_repetition_frequency(prt)
  • altitude(altitude)
  • Azimuth of Radar Ray(azimuth)
  • Unambiguous range(unambiguous_range)
  • Cross correlation ratio (RhoHV)(cross_correlation_ratio)
  • transmit_pulse_mode(prt_mode)
  • Total power(total_power)
  • Doppler spectrum width(doppler_spectrum_width)
  • data_volume_start_time_utc(time_coverage_start)
  • Differential reflectivity(differential_reflectivity)
  • North latitude(latitude)
  • data_volume_index_number(volume_number)
  • Mean doppler velocity(mean_doppler_velocity)
  • Clutter filtered reflectivity in horizontal polarization(reflectivity_horizontal)
  • Differential propagation phase shift(differential_phase)
  • Scan mode for sweep(sweep_mode)
  • File status(file_status)
  • Normalized coherent power(normalized_coherent_power)
  • Distance to the center of the corresponding range bin(range)
  • ray_target_fixed_angle(fixed_angle)
  • Beam Elevation Angle(elevation)
  • Time corresponding to last radial in file(time_coverage_end)
  • Time index of last ray in sweep, 0-based(sweep_end_ray_index)
  • Specific differential phase (KDP)(specific_differential_phase)
  • Sweep number, zero-based count(sweep_number)
  • Index of first ray in sweep, 0-based(sweep_start_ray_index)
more
sgpmfrsrlangplotE31.c1:
  • Airmasses(barnard_airmass)
  • rejected points for the final fit for the Direct Narrowband Filter1, Michalsky(michalsky_rejected_filter1)
  • rejected points for the final fit for the Direct Narrowband Filter2(michalsky_rejected_filter2)
  • rejected points for the final fit for the Direct Narrowband Filter3, Michalsky(michalsky_rejected_filter3)
  • rejected points for the final fit for the Direct Narrowband Filter4, Michalsky(michalsky_rejected_filter4)
  • rejected points for the final fit for the Direct Narrowband Filter5, Michalsky(michalsky_rejected_filter5)
  • rejected points for the final fit for the Direct Narrowband Filter6, Michalsky(michalsky_rejected_filter6)
  • rejected points for the final fit for the Direct Broadband(michalsky_rejected_broadband)
  • log(irradiance) for the Direct Broadband(barnard_lnI_broadband)
  • log(irradiance) for the Direct Broadband(michalsky_lnI_broadband)
  • rejected points for the final fit for the Direct Narrowband Filter1(barnard_rejected_filter1)
  • rejected points for the final fit for the Direct Narrowband Filter6(barnard_rejected_filter6)
  • rejected points for the final fit for the Direct Narrowband Filter3, Barnard(barnard_rejected_filter3)
  • rejected points for the final fit for the Direct Narrowband Filter2(barnard_rejected_filter2)
  • rejected points for the final fit for the Direct Narrowband Filter5, Barnard(barnard_rejected_filter5)
  • rejected points for the final fit for the Direct Narrowband Filter4, Barnard(barnard_rejected_filter4)
  • rejected points for the final fit for the Direct Broadband, Barnard(barnard_rejected_broadband)
  • airmass(michalsky_airmass)
  • log(irradiance) for the Direct Narrowband Filter1(michalsky_lnI_filter1)
  • log(irradiance) for the Direct Narrowband Filter1, Barnard(barnard_lnI_filter1)
  • log(irradiance) for the Direct Narrowband Filter2, Barnard(barnard_lnI_filter2)
  • log(irradiance) for the Direct Narrowband Filter3, Barnard(barnard_lnI_filter3)
  • log(irradiance) for the Direct Narrowband Filter4(barnard_lnI_filter4)
  • log(irradiance) for the Direct Narrowband Filter5(barnard_lnI_filter5)
  • log(irradiance) for the Direct Narrowband Filter6(barnard_lnI_filter6)
  • log(irradiance) for the Direct Narrowband Filter6, Michalsky(michalsky_lnI_filter6)
  • log(irradiance) for the Direct Narrowband Filter4, Michalsky(michalsky_lnI_filter4)
  • log(irradiance) for the Direct Narrowband Filter5, Michalsky(michalsky_lnI_filter5)
  • log(irradiance) for the Direct Narrowband Filter2, Michalsky(michalsky_lnI_filter2)
  • log(irradiance) for the Direct Narrowband Filter3, Michalsky(michalsky_lnI_filter3)
more
sgpsirsE13.b1:
  • Instantaneous Upwelling Longwave Hemispheric Irradiance, Pyrgeometer(up_long_netir)
  • Shortwave Direct Normal Irradiance, Pyrgeometer, Standard Deviation(short_direct_normal_std)
  • Upwelling longwave hemispheric irradiance, pyrgeometer, maxima(up_long_hemisp_max)
  • Upwelling Longwave Hemispheric Irradiance, Pyrgeometer, Minima(up_long_hemisp_min)
  • 10 meter Upwelling Longwave Hemispheric Irradiance, Pyrgeometer(up_long_hemisp)
  • Upwelling shortwave hemispheric irradiance, pyranometer, minima(up_short_hemisp_min)
  • Downwelling Shortwave Diffuse Hemispheric Irradiance, Pyranometer, Standard
    Deviation(down_short_diffuse_hemisp_std)
  • Upwelling (10 meter) Shortwave Hemispheric Irradiance, Pyranometer, Maxima(up_short_hemisp_max)
  • Downwelling longwave hemispheric irradiance, shaded pyrgeometer, standard
    deviation(down_long_hemisp_shaded_std)
  • Battery voltage(vBatt)
  • Downwelling longwave hemispheric irradiance, shaded pyrgeometer(down_long_hemisp_shaded)
  • Shortwave direct normal irradiance, pyrheliometer(short_direct_normal)
  • Downwelling longwave hemispheric net infrared(down_long_netir)
  • Instantaneous Dome Temperature(inst_up_long_dome_temp)
  • Downwelling Shortwave Diffuse Hemispheric Irradiance, Ventilated Pyranometer(down_short_diffuse_hemisp)
  • Instantaneous upwelling pyrgeometer case thermistor temperature, pyrgeometer(inst_up_long_case_temp)
  • Upwelling (10 meter) Longwave Hemispheric Irradiance, Ventilated Pyrgeometer,
    Standard Deviation(up_long_hemisp_std)
  • Downwelling Shortwave Hemispheric Irradiance, Pyranometer, Minima(down_short_hemisp_min)
  • Downwelling shortwave hemispheric irradiance, pyranometer, maxima(down_short_hemisp_max)
  • Upwelling (10 meter) Shortwave Hemispheric Irradiance, Ventilated Pyranometer,
    Standard Deviation(up_short_hemisp_std)
  • Downwelling Longwave Hemispheric Irradiance, Shaded Pyrgeometer, Maxima(down_long_hemisp_shaded_max)
  • Downwelling Longwave Hemispheric Irradiance, Shaded Pyrgeometer, Minima(down_long_hemisp_shaded_min)
  • Shortwave direct normal irradiance, pyrheliometer, minima(short_direct_normal_min)
  • Shortwave Direct Normal Irradiance, Pyrheliometer, Maxima(short_direct_normal_max)
  • 25 meter Upwelling Shortwave Hemispheric Irradiance, Pyranometer(up_short_hemisp)
  • Downwelling shortwave diffuse hemispheric irradiance, pyranometer, maxima(down_short_diffuse_hemisp_max)
  • Instantaneous Downwelling Pyrgeometer Dome Thermistor Temperature, Shaded
    Pyrgeometer(inst_down_long_shaded_dome_temp)
  • Downwelling Shortwave Diffuse Hemispheric Irradiance, Pyrgeometer, Minima(down_short_diffuse_hemisp_min)
  • Downwelling Shortwave Hemispheric Irradiance, Ventilated Pyrgeometer, Standard
    Deviation(down_short_hemisp_std)
  • Down-welling unshaded pyranometer voltage(down_short_hemisp)
  • Instantaneous downwelling pyrgeometer case thermistor temperature, shaded
    pyrgeometer(inst_down_long_shaded_case_temp)
more
sgp915rwpwindconI8.a1:
  • HLN(VN)
more
sgp30baebbrE35.c1:
  • Aerodynamic latent heat flux(aerodynamic_latent_heat_flux)
  • Best estimate latent heat flux(be_latent_heat_flux)
  • Atmospheric pressure(atmos_pressure)
  • Wind direction vector mean(wdir_vec_mean)
  • Surface soil heat flux 5(surface_soil_heat_flux_5)
  • Surface soil heat flux 4(surface_soil_heat_flux_4)
  • Surface soil heat flux 3(surface_soil_heat_flux_3)
  • Surface soil heat flux 2(surface_soil_heat_flux_2)
  • Surface soil heat flux 1(surface_soil_heat_flux_1)
  • Top T/RH sensor temperature(temp_trh_top)
  • Half hour averaged soil temperature 5(soil_temp_5)
  • Soil temperature mean 3(soil_temp_3)
  • Half hour averaged soil temperature 4(soil_temp_4)
  • Soil temperature 1(soil_temp_1)
  • Soil temperature 2(soil_temp_2)
  • AEM position indicator 15 to 30 mins(home_signal_30)
  • AEM position indicator 0 to 15 mins(home_signal_15)
  • Top relative humidity (fractional)(rh_top_fraction)
  • Soil heat flow 4, corrected for soil moisture(corr_soil_heat_flow_4)
  • Soil heat flow 3, corrected for soil moisture(corr_soil_heat_flow_3)
  • Soil heat flow 2, corrected for soil moisture(corr_soil_heat_flow_2)
  • Soil heat flow 1, corrected for soil moisture(corr_soil_heat_flow_1)
  • Soil heat flow 5, corrected for soil moisture(corr_soil_heat_flow_5)
  • Solar radiation calculated from time of day, lat, and lon(solar_radiation)
  • Net radiation(net_radiation)
  • Top air temperature(temp_air_top)
  • Wind speed vector mean(wspd_vec_mean)
  • Bottom T/RH sensor temperature(temp_trh_bottom)
  • Bowen ratio(bowen_ratio)
  • Surface sensible heat flux(sensible_heat_flux)
  • Surface soil heat flux, average of fluxes 1-5(surface_soil_heat_flux_avg)
  • Aerodynamic sensible heat flux(aerodynamic_sensible_heat_flux)
  • Soil moisture 5, gravimetric(soil_moisture_5)
  • Soil moisture 2, gravimetric(soil_moisture_2)
  • Soil moisture 1, gravimetric(soil_moisture_1)
  • Soil moisture 4, gravimetric(soil_moisture_4)
  • Soil moisture 3, gravimetric(soil_moisture_3)
  • Wind speed arithmetic mean(wspd_arith_mean)
  • Soil heat flow 4(soil_heat_flow_4)
  • Soil heat flow 5(soil_heat_flow_5)
  • Soil heat flow 2(soil_heat_flow_2)
  • Soil heat flow 3(soil_heat_flow_3)
  • Soil heat flow 1(soil_heat_flow_1)
  • Soil heat capacity 1(soil_heat_capacity_1)
  • Soil heat capacity 2(soil_heat_capacity_2)
  • Soil heat capacity 3(soil_heat_capacity_3)
  • Soil heat capacity 4(soil_heat_capacity_4)
  • Soil heat capacity 5(soil_heat_capacity_5)
  • Surface latent heat flux(latent_heat_flux)
  • Wind direction vector mean standard deviation(wdir_vec_std)
  • Bottom air temperature(temp_air_bottom)
  • Bottom relative humidity (fractional)(rh_bottom_fraction)
  • Top vapor pressure(vapor_pressure_top)
  • Bottom vapor pressure(vapor_pressure_bottom)
  • Change in energy storage 1, 0-5 cm soil layer(energy_storage_change_1)
  • Change in energy storage 3, 0-5 cm soil layer(energy_storage_change_3)
  • Change in energy storage 2, 0-5 cm soil layer(energy_storage_change_2)
  • Change in energy storage 5, 0-5 cm soil layer(energy_storage_change_5)
  • Change in energy storage 4, 0-5 cm soil layer(energy_storage_change_4)
  • Reference temperature in enclosure(temp_reference)
  • Friction velocity(friction_velocity)
  • Best estimate sensible heat flux(be_sensible_heat_flux)
  • Vegetation height outside fence(vegetation_height)
more
sgpmfrsrlangleyE31.c1:
  • Langley regression Io, adjusted to 1AU, Barnard, Direct BroadBand(barnard_solar_constant_sdist_broadband)
  • percentage of initial points used in final linear fit for the Direct Broadband(barnard_good_fraction_broadband)
  • error in final linear fit for the Direct Narrowband Filter5(barnard_error_fit_filter5)
  • error in final linear fit for the Direct Narrowband Filter6(barnard_error_fit_filter6)
  • error in final linear fit for the Direct Narrowband Filter3(barnard_error_fit_filter3)
  • error in final linear fit for the Direct Narrowband Filter4(barnard_error_fit_filter4)
  • error in final linear fit for the Direct Narrowband Filter1(barnard_error_fit_filter1)
  • error in final linear fit for the Direct Narrowband Filter2(barnard_error_fit_filter2)
  • solar constant corrected for solar distance for the Direct Broadband(michalsky_solar_constant_sdist_broadband)
  • rejection flag for Direct Broadband(barnard_badflag_broadband)
  • number of points used in final linear fit for the Direct Broadband(michalsky_number_points_broadband)
  • solar constant corrected for solar distance for the Direct Narrowband Filter6(barnard_solar_constant_sdist_filter6)
  • solar constant corrected for solar distance for the Direct Narrowband Filter5(barnard_solar_constant_sdist_filter5)
  • Langley regression Io, adjusted to 1AU, Barnard, Direct Narrowband Filter4(barnard_solar_constant_sdist_filter4)
  • solar constant corrected for solar distance for the Direct Narrowband Filter3(barnard_solar_constant_sdist_filter3)
  • solar constant corrected for solar distance for the Direct Narrowband Filter2(barnard_solar_constant_sdist_filter2)
  • solar constant corrected for solar distance for the Direct Narrowband Filter1(barnard_solar_constant_sdist_filter1)
  • solar constant corrected for solar distance for the Direct Narrowband Filter6(michalsky_solar_constant_sdist_filter6)
  • solar constant corrected for solar distance for the Direct Narrowband Filter5(michalsky_solar_constant_sdist_filter5)
  • solar constant corrected for solar distance for the Direct Narrowband Filter4(michalsky_solar_constant_sdist_filter4)
  • solar constant corrected for solar distance for the Direct Narrowband Filter3(michalsky_solar_constant_sdist_filter3)
  • solar constant corrected for solar distance for the Direct Narrowband Filter2(michalsky_solar_constant_sdist_filter2)
  • solar constant corrected for solar distance for the Direct Narrowband Filter1(michalsky_solar_constant_sdist_filter1)
  • Barnard computed sun to earth distance(barnard_sun_earth_distance)
  • optical depth for the Direct Narrowband Filter2(barnard_optical_depth_filter2)
  • optical depth for the Direct Narrowband Filter1(barnard_optical_depth_filter1)
  • optical depth for the Direct Narrowband Filter6(barnard_optical_depth_filter6)
  • optical depth for the Direct Narrowband Filter5(barnard_optical_depth_filter5)
  • optical depth for the Direct Narrowband Filter4(barnard_optical_depth_filter4)
  • optical depth for the Direct Narrowband Filter3(barnard_optical_depth_filter3)
  • error in optical depth (slope) of final linear fit for the Direct Narrowband
    Filter3(barnard_error_slope_filter3)
  • error in optical depth (slope) of final linear fit for the Direct Narrowband
    Filter4(barnard_error_slope_filter4)
  • error in optical depth (slope) of final linear fit for the Direct Narrowband
    Filter5(barnard_error_slope_filter5)
  • error in optical depth (slope) of final linear fit for the Direct Narrowband
    Filter6(barnard_error_slope_filter6)
  • error in optical depth (slope) of final linear fit for the Direct Narrowband
    Filter1(barnard_error_slope_filter1)
  • error in optical depth (slope) of final linear fit for the Direct Narrowband
    Filter2(barnard_error_slope_filter2)
  • optical depth for the Direct BroadBand(michalsky_optical_depth_broadband)
  • Langley regression Io, Michalsky, Direct BroadBand(michalsky_solar_constant_broadband)
  • rejection flag for Direct Broadband(michalsky_badflag_broadband)
  • standard deviation around regression line for the Direct Narrowband Filter2(michalsky_standard_deviation_filter2)
  • standard deviation around regression line for the Direct Narrowband Filter1(michalsky_standard_deviation_filter1)
  • standard deviation around regression line for the Direct Narrowband Filter4(michalsky_standard_deviation_filter4)
  • standard deviation around regression line for the Direct Narrowband Filter3(michalsky_standard_deviation_filter3)
  • standard deviation around regression line for the Direct Narrowband Filter6(michalsky_standard_deviation_filter6)
  • standard deviation around regression line for the Direct Narrowband Filter5(michalsky_standard_deviation_filter5)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter5(barnard_good_fraction_filter5)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter6(barnard_good_fraction_filter6)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter3(barnard_good_fraction_filter3)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter4(barnard_good_fraction_filter4)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter1(barnard_good_fraction_filter1)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter2(barnard_good_fraction_filter2)
  • number of points used in final linear fit for the Direct Narrowband Filter5(michalsky_number_points_filter5)
  • number of points used in final linear fit for the Direct Narrowband Filter6(michalsky_number_points_filter6)
  • number of points used in final linear fit for the Direct Narrowband Filter1(michalsky_number_points_filter1)
  • number of points used in final linear fit for the Direct Narrowband Filter2(michalsky_number_points_filter2)
  • number of points used in final linear fit for the Direct Narrowband Filter3(michalsky_number_points_filter3)
  • number of points used in final linear fit for the Direct Narrowband Filter4(michalsky_number_points_filter4)
  • optical depth for the Direct Narrowband Filter1(michalsky_optical_depth_filter1)
  • optical depth for the Direct Narrowband Filter6(michalsky_optical_depth_filter6)
  • optical depth for the Direct Narrowband Filter3(michalsky_optical_depth_filter3)
  • optical depth for the Direct Narrowband Filter2(michalsky_optical_depth_filter2)
  • optical depth for the Direct Narrowband Filter5(michalsky_optical_depth_filter5)
  • optical depth for the Direct Narrowband Filter4(michalsky_optical_depth_filter4)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter1(michalsky_good_fraction_filter1)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter2(michalsky_good_fraction_filter2)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter3(michalsky_good_fraction_filter3)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter4(michalsky_good_fraction_filter4)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter5(michalsky_good_fraction_filter5)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter6(michalsky_good_fraction_filter6)
  • rejection flag for Direct Narrowband Filter2(michalsky_badflag_filter2)
  • rejection flag for Direct Narrowband Filter1(michalsky_badflag_filter1)
  • rejection flag for Direct Narrowband Filter4(michalsky_badflag_filter4)
  • rejection flag for Direct Narrowband Filter3(michalsky_badflag_filter3)
  • rejection flag for Direct Narrowband Filter6(michalsky_badflag_filter6)
  • rejection flag for Direct Narrowband Filter5(michalsky_badflag_filter5)
  • number of points used in final linear fit for the Direct Narrowband Filter1(barnard_number_points_filter1)
  • number of points used in final linear fit for the Direct Narrowband Filter6(barnard_number_points_filter6)
  • number of points used in final linear fit for the Direct Narrowband Filter4(barnard_number_points_filter4)
  • number of points used in final linear fit for the Direct Narrowband Filter5(barnard_number_points_filter5)
  • number of points used in final linear fit for the Direct Narrowband Filter2(barnard_number_points_filter2)
  • number of points used in final linear fit for the Direct Narrowband Filter3(barnard_number_points_filter3)
  • standard deviation around regression line for the Direct BroadBand(michalsky_standard_deviation_broadband)
  • error in final linear fit for the Direct BroadBand(barnard_error_fit_broadband)
  • optical depth for the Direct BroadBand(barnard_optical_depth_broadband)
  • error in optical depth (slope) of final linear fit for the Direct Broadband(barnard_error_slope_broadband)
  • percentage of initial points used in final linear fit for the Direct Broadband(michalsky_good_fraction_broadband)
  • rejection flag for Direct Narrowband Filter1(barnard_badflag_filter1)
  • rejection flag for Direct Narrowband Filter6(barnard_badflag_filter6)
  • rejection flag for Direct Narrowband Filter5(barnard_badflag_filter5)
  • rejection flag for Direct Narrowband Filter4(barnard_badflag_filter4)
  • rejection flag for Direct Narrowband Filter3(barnard_badflag_filter3)
  • rejection flag for Direct Narrowband Filter2(barnard_badflag_filter2)
  • number of points used in final linear fit for the Direct Broadband(barnard_number_points_broadband)
  • solar constant for the Direct Narrowband Filter6(michalsky_solar_constant_filter6)
  • solar constant for the Direct Narrowband Filter1(michalsky_solar_constant_filter1)
  • Langley regression Io, Michalsky, Direct Narrowband Filter4(michalsky_solar_constant_filter4)
  • Langley regression Io, Michalsky, Direct Narrowband Filter5(michalsky_solar_constant_filter5)
  • Langley regression Io, Michalsky, Direct Narrowband Filter2(michalsky_solar_constant_filter2)
  • solar constant for the Direct Narrowband Filter3(michalsky_solar_constant_filter3)
  • Michalsky computed sun to earth distance(michalsky_sun_earth_distance)
more
sgpmfrsrE31.b1:
  • Normalized filter function data, filter 2, measured transmittance value obtained
    during bench calibrations(normalized_transmittance_filter2)
  • Normalized filter function data, filter 3, measured transmittance value obtained
    during bench calibrations(normalized_transmittance_filter3)
  • Normalized filter function data, filter 4, measured transmittance value obtained
    during bench calibrations(normalized_transmittance_filter4)
  • Normalized filter function data, filter 5, measured transmittance value obtained
    during bench calibrations(normalized_transmittance_filter5)
  • Normalized filter function data, filter 1, measured transmittance value obtained
    during bench calibrations(normalized_transmittance_filter1)
  • Normalized filter function data, filter 6, measured transmittance value obtained
    during bench calibrations(normalized_transmittance_filter6)
  • Cosine correction of broadband diffuse, assuming Rayleigh sky at 45 degree
    zenith angle(diffuse_correction_broadband)
  • Azimuth angle(azimuth_angle)
  • Direct horizontal narrowband irradiance, filter 1(direct_horizontal_narrowband_filter1)
  • Direct Horizontal Narrowband Irradiance, Filter 3(direct_horizontal_narrowband_filter3)
  • Narrowband Direct Horizontal Irradiance, Filter 2, cosine corrected(direct_horizontal_narrowband_filter2)
  • Narrowband Direct Horizontal Irradiance, Filter 5, cosine corrected(direct_horizontal_narrowband_filter5)
  • Narrowband Direct Horizontal Irradiance, Filter 4, cosine corrected(direct_horizontal_narrowband_filter4)
  • Narrowband Direct Horizontal Irradiance, Filter 6, cosine corrected(direct_horizontal_narrowband_filter6)
  • Narrowband Hemispheric Irradiance, Filter 2(hemisp_narrowband_filter2)
  • Narrowband hemispheric irradiance, filter 3, offset and cosine corrected(hemisp_narrowband_filter3)
  • Narrowband Hemispheric Irradiance, Filter 1, offset corrected(hemisp_narrowband_filter1)
  • Narrowband hemispheric irradiance, filter 6, nominal wavelength is 935 nm(hemisp_narrowband_filter6)
  • Narrowband hemispheric irradiance, filter 4, offset and cosine corrected(hemisp_narrowband_filter4)
  • Narrowband Hemispheric Irradiance, Filter 5, offset corrected(hemisp_narrowband_filter5)
  • cosine correction, west to east, filter3(cosine_correction_we_filter3)
  • cosine correction, west to east, filter2(cosine_correction_we_filter2)
  • Cosine correction, west to east, filter1(cosine_correction_we_filter1)
  • cosine correction, west to east, filter6(cosine_correction_we_filter6)
  • Cosine correction, west to east, filter5(cosine_correction_we_filter5)
  • Cosine correction, west to east, filter4(cosine_correction_we_filter4)
  • cosine correction, west to east, broadband channel(cosine_correction_we_broadband)
  • Diffuse Hemispheric Broadband Irradiance, offset corrected(diffuse_hemisp_broadband)
  • Cosine correction applied to direct_horizontal_broadband(computed_cosine_correction_broadband)
  • Normalized filter function data, filter 6, wavelength value obtained during
    bench calibrations(wavelength_filter6)
  • Normalized filter function data, filter 5, wavelength value obtained during
    bench calibrations(wavelength_filter5)
  • Normalized filter function data, filter 4, wavelength value obtained during
    bench calibrations(wavelength_filter4)
  • Normalized filter function data, filter 3, wavelength value obtained during
    bench calibrations(wavelength_filter3)
  • Normalized filter function data, filter 2, wavelength value obtained during
    bench calibrations(wavelength_filter2)
  • Normalized filter function data, filter 1, wavelength value obtained during
    bench calibrations(wavelength_filter1)
  • Ratio of direct_normal_broadband to diffuse_hemisp_broadband(direct_diffuse_ratio_broadband)
  • Alltime Narrowband Hemispheric Irradiance, Filter 4(alltime_hemisp_narrowband_filter4)
  • Alltime Narrowband Hemispheric Irradiance, Filter 3(alltime_hemisp_narrowband_filter3)
  • Alltime narrowband hemispheric irradiance, filter 2(alltime_hemisp_narrowband_filter2)
  • Alltime narrowband hemispheric irradiance, filter 1(alltime_hemisp_narrowband_filter1)
  • Alltime Narrowband Hemispheric Irradiance, Filter 6(alltime_hemisp_narrowband_filter6)
  • Alltime narrowband hemispheric irradiance, filter 5(alltime_hemisp_narrowband_filter5)
  • Elevation angle(elevation_angle)
  • Nominal calibration factor, applied to filter3 data(nominal_calibration_factor_filter3)
  • Nominal calibration factor, applied to filter2 data(nominal_calibration_factor_filter2)
  • Nominal calibration factor, applied to filter5 data(nominal_calibration_factor_filter5)
  • Nominal calibration factor, applied to filter4 data(nominal_calibration_factor_filter4)
  • Nominal calibration factor, applied to filter6 data(nominal_calibration_factor_filter6)
  • Nominal calibration factor, applied to filter1 data(nominal_calibration_factor_filter1)
  • Cosine correction applied to direct_horizontal_narrowband_filter2(computed_cosine_correction_filter2)
  • Cosine correction applied to direct_horizontal_filter1(computed_cosine_correction_filter1)
  • Cosine correction applied to direct_horizontal_filter6(computed_cosine_correction_filter6)
  • Cosine correction applied to direct_horizontal_filter5(computed_cosine_correction_filter5)
  • Cosine correction applied to direct_horizontal_narrowband_filter4(computed_cosine_correction_filter4)
  • Cosine correction applied to direct_horizontal_narrowband_filter3(computed_cosine_correction_filter3)
  • Cosine correction, south to north, filter2(cosine_correction_sn_filter2)
  • cosine correction, south to north, filter1(cosine_correction_sn_filter1)
  • Cosine correction, south to north, filter4(cosine_correction_sn_filter4)
  • Cosine correction, south to north, filter3(cosine_correction_sn_filter3)
  • cosine correction, south to north, filter6(cosine_correction_sn_filter6)
  • cosine correction, south to north, filter5(cosine_correction_sn_filter5)
  • Data Logger Temperature(logger_temp)
  • Cosine solar zenith angle(cosine_solar_zenith_angle)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 1, offset corrected(diffuse_hemisp_narrowband_filter1)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 2, offset corrected(diffuse_hemisp_narrowband_filter2)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 3(diffuse_hemisp_narrowband_filter3)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 4(diffuse_hemisp_narrowband_filter4)
  • Narrowband diffuse hemispheric irradiance, filter 5, offset and cosine corrected(diffuse_hemisp_narrowband_filter5)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 6, offset corrected(diffuse_hemisp_narrowband_filter6)
  • Direct Normal Broadband Irradiance, cosine corrected, broadband scale applied(direct_normal_broadband)
  • Nominal calibration factor, applied to broadband data(nominal_calibration_factor_broadband)
  • Offset subtracted from hemispheric and diffuse broadband data(offset_broadband)
  • Narrowband Direct Normal Irradiance, Filter 5(direct_normal_narrowband_filter5)
  • Direct normal narrowband irradiance, filter 6, offset corrected(direct_normal_narrowband_filter6)
  • Narrowband Direct Normal Irradiance, Filter 3, cosine corrected(direct_normal_narrowband_filter3)
  • Direct normal narrowband irradiance, filter 4, offset corrected(direct_normal_narrowband_filter4)
  • Narrowband Direct Normal Irradiance, Filter 1(direct_normal_narrowband_filter1)
  • Direct normal narrowband irradiance, filter 2, offset corrected(direct_normal_narrowband_filter2)
  • Data logger supply voltage(logger_volt)
  • Ratio of direct_normal_narrowband_filter3 to diffuse_hemisp_narrowband_filter3(direct_diffuse_ratio_filter3)
  • Ratio of direct_normal_filter4 to diffuse_hemisp_filter4(direct_diffuse_ratio_filter4)
  • Ratio of direct_normal_filter1 to diffuse_hemisp_filter1(direct_diffuse_ratio_filter1)
  • Ratio of direct_normal_filter2 to diffuse_hemisp_filter2(direct_diffuse_ratio_filter2)
  • Ratio of direct_normal_filter5 to diffuse_hemisp_filter5(direct_diffuse_ratio_filter5)
  • Ratio of direct_normal_narrowband_filter6 to diffuse_hemisp_narrowband_filter6(direct_diffuse_ratio_filter6)
  • Cosine correction of filter6 diffuse, assuming Rayleigh sky at 45 deg zenith
    angle(diffuse_correction_filter6)
  • Cosine correction of filter5 diffuse, assuming Rayleigh sky at 45 deg zenith
    angle(diffuse_correction_filter5)
  • Cosine correction of filter4 diffuse, assuming Rayleigh sky at 45 deg zenith
    angle(diffuse_correction_filter4)
  • Cosine correction of filter3 diffuse, assuming Rayleigh sky at 45 deg zenith
    angle(diffuse_correction_filter3)
  • Cosine correction of filter2 diffuse, assuming Rayleigh sky at 45 deg zenith
    angle(diffuse_correction_filter2)
  • Cosine correction of filter1 diffuse, assuming Rayleigh sky at 45 degree zenith
    angle(diffuse_correction_filter1)
  • Air mass(airmass)
  • Direct Horizontal Broadband Irradiance(direct_horizontal_broadband)
  • Detector temperature(head_temp)
  • Second detector temperature(head_temp2)
  • Offset subtracted from upwelling hemispheric filter5 data(offset_filter5)
  • Offset subtracted from direct normal filter4 data(offset_filter4)
  • Offset subtracted from direct normal filter3 data(offset_filter3)
  • Offset subtracted from upwelling hemispheric filter2 data(offset_filter2)
  • Offset subtracted from hemispheric filter1 data(offset_filter1)
  • Offset subtracted from hemispheric and diffuse filter6 data(offset_filter6)
  • angle of incidence during cosine bench measurements(bench_angle)
  • Alltime hemispheric broadband irradiance(alltime_hemisp_broadband)
  • Solar zenith angle(solar_zenith_angle)
  • cosine correction, south to north, broadband channel(cosine_correction_sn_broadband)
  • Hemispheric broadband irradiance(hemisp_broadband)
more
sgp915rwpprecipconI10.a1:
  • Vertical FFT Bandwidth(vband)
  • Array of heights for each sample time(height_p)
  • Number of Individual Spectra/Average Spectrum(nspc)
  • Interpulse period(ipp)
  • Number of pulses/ave int, Beam 0(nrec)
  • Height Index(range_gate)
  • Sample Rate(sampr)
  • Number of Coherent Samples/Spectral Point(ncoh)
  • Number of values that passed consensus(ncns)
  • Pulse length(plen)
  • Pulse repetition frequency(prf)
  • Averaging interval(avgint)
  • Number of Valid Heights(nheight)
  • Height of Center of First Range Gate(rgf)
  • Time Domain Integration Time(tditime)
  • Height of center of last range gate(rgl)
  • Range gate spacing(rgs)
  • Power offset(power)
  • Number of Values Required for Consensus, Beam 0(nrcns)
  • Signal-to-noise-ratio(snr)
  • Radial wind speed(vel)
  • Delay Time to 1st Gate(dly)
more
sgpswatsE13.b1:
  • Soil water potential, west profile(soilwatpot_w)
  • Soil water potential, east profile(soilwatpot_e)
  • Sensor temperature rise, west profile(trise_w)
  • Sensor temperature rise, east profile(trise_e)
  • Volumetric water content, west profile(watcont_w)
  • Volumetric water content, east profile(watcont_e)
  • Reference sensor temperature rise, east profile(trise_ref_e)
  • Reference sensor temperature rise, west profile(trise_ref_w)
  • Reference Thermistor Temperature(tref)
  • Fractional water index, east profile(fwi_e)
  • depth(depth)
  • Fractional water index, west profile(fwi_w)
  • Soil temperature, east profile(tsoil_e)
  • Soil temperature, west profile(tsoil_w)
  • West profile sensor serial numbers(serial_numbers_w)
  • East profile sensor serial numbers(serial_numbers_e)
more
sgpxsaprppiI6.a1:
  • transmit_pulse_mode(prt_mode)
  • Index of first ray in sweep, 0-based(sweep_start_ray_index)
  • Unambiguous range(unambiguous_range)
  • File status(file_status)
  • Specific differential phase (KDP)(specific_differential_phase)
  • Doppler spectrum width(doppler_spectrum_width)
  • data_volume_start_time_utc(time_coverage_start)
  • North latitude(latitude)
  • ray_target_fixed_angle(fixed_angle)
  • Sweep number, zero-based count(sweep_number)
  • pulse_repetition_frequency(prt)
  • Differential reflectivity(differential_reflectivity)
  • Unambiguous Doppler velocity(nyquist_velocity)
  • data_volume_index_number(volume_number)
  • Beam Elevation Angle(elevation)
  • Azimuth of Radar Ray(azimuth)
  • Total power(total_power)
  • Distance to the center of the corresponding range bin(range)
  • Mean doppler velocity(mean_doppler_velocity)
  • Normalized coherent power(normalized_coherent_power)
  • Cross correlation ratio (RhoHV)(cross_correlation_ratio)
  • Time index of last ray in sweep, 0-based(sweep_end_ray_index)
  • Time corresponding to last radial in file(time_coverage_end)
  • Differential propagation phase shift(differential_phase)
  • Scan mode for sweep(sweep_mode)
  • East longitude(longitude)
  • Clutter filtered reflectivity in horizontal polarization(reflectivity_horizontal)
  • altitude(altitude)
more
sgp30baebbrE12.c1:
  • Aerodynamic Latent heat flux(ale)
  • 5 cm soil heat flow, site 5(shf5)
  • 5 cm soil heat flow, site 4(shf4)
  • 5 cm soil heat flow, site 1(shf1)
  • Soil heat flow 3(shf3)
  • 5 cm soil heat flow, site 2(shf2)
  • Bottom vapor pressure(vp_bot)
  • average surface soil heat flow(ave_shf)
  • Top vapor pressure(vp_top)
  • Temperature of the bottom humidity sensor chamber(thum_bot)
  • Standard deviation of wind direction (sigma theta)(sigma_wd)
  • Temperature of the top humidity sensor chamber(thum_top)
  • Change in energy storage 4(ces4)
  • Change in energy storage 5(ces5)
  • 0-5 cm change in soil heat storage with time, site 2(ces2)
  • Change in energy storage 3(ces3)
  • 0-5 cm change in soil heat storage with time, site 2(ces1)
  • Resultant wind speed(res_ws)
  • Friction velocity(austar)
  • 5 cm soil heat flow corrected for soil moisture content, site 1(c_shf1)
  • 5 cm soil heat flow corrected for soil moisture content, site 2(c_shf2)
  • Corrected soil heat flow 3(c_shf3)
  • Corrected soil heat flow 4(c_shf4)
  • 5 cm soil heat flow corrected for soil moisture content, site 5(c_shf5)
  • specific humidity(q)
  • Latent heat flux(e)
  • corrected sensible heat flux(h)
  • ecomb
  • Soil heat flow at the surface 3(g3)
  • soil heat flow, site 2(g2)
  • soil heat flow, site 5(g5)
  • soil heat flow, site 4(g4)
  • Soil heat flow at the surface 1(g1)
  • Reference Thermistor Temperature(tref)
  • Aerodynamic Sensible heat flux(ah)
  • Best estimate Sensible heat flux(hcomb)
  • Bowen ratio(bowen)
  • Bottom relative humidity(hum_bot)
  • Top relative humidity(hum_top)
  • Vegetation height outside fence(vegetation_height)
  • Exchange Mechanism Position Indicator 0 to 15 mins(home_15)
  • Exchange Mechanism Position Indicator 15 to 30 mins(home_30)
  • Soil heat capacity 5(cs5)
  • Soil heat capacity 3(cs3)
  • Soil heat capacity 4(cs4)
  • Soil heat capacity 1(cs1)
  • Soil heat capacity 2(cs2)
  • Top air temperature(tair_top)
  • 0-5 cm integrated soil temperature, site 4(ts4)
  • 0-5 cm integrated soil temperature, site 5(ts5)
  • Soil temperature 2(ts2)
  • 0-5 cm integrated soil temperature, site 3(ts3)
  • 0-5 cm integrated soil temperature, site 2(ts1)
  • Retrieved pressure profile(pres)
  • Bottom air temperature(tair_bot)
  • volumetric soil moisture, site 5(sm5)
  • volumetric soil moisture, site 3(sm3)
  • volumetric soil moisture, site 4(sm4)
  • Soil moisture 1 (mass water/mass dry soil)(sm1)
  • volumetric soil moisture, site 2(sm2)
  • Wind direction (relative to true north)(wind_d)
  • Scalar Wind speed(wind_s)
more
sgp915rwpwindconI10.a1:
  • Horizontal wind speed(spd)
  • Number of Values Required for Consensus, Beam 2(nrcns2)
  • Number of Values Required for Consensus, Beam 3(nrcns3)
  • Number of values required for consensus, beam 4(nrcns4)
  • Number of values required for consensus, beam 0(nrcns0)
  • Number of Values Required for Consensus, Beam 1(nrcns1)
  • Pulse length(plen)
  • Individual Spectrum Integration Time(sitime)
  • Delay Time to 1st Gate(dly)
  • Height Index(range_gate)
  • Horizontal wind direction(dir)
  • Number of Valid Heights(nheight)
  • Rx Bandwidth Switch Code(bswitch)
  • Vertical FFT Bandwidth(vband)
  • Height of center of last range gate(rgl)
  • Range gate spacing(rgs)
  • Height of Center of First Range Gate(rgf)
  • V wind component(v_wind)
  • Array of heights for each sample time(height_p)
  • Ave Time per Average Spectra.(spcavetim)
  • Number of values that passed consensus, beam 2(ncns2)
  • Number of values that passed consensus, beam 3(ncns3)
  • Number of values that passed consensus, beam 0(ncns0)
  • Number of values that passed consensus, beam 1(ncns1)
  • Number of values that passed consensus, beam 4(ncns4)
  • Pulse repetition frequency(prf)
  • Power offset(power)
  • Sample Rate(sampr)
  • Number of spectra per averaging interval, beam 1(nrec1)
  • Number of pulses/ave int, Beam 0(nrec0)
  • Number of spectra/ave int, Beam 3(nrec3)
  • Number of spectra/ave int, Beam 2(nrec2)
  • Number of Spectra/ave int, Beam 4(nrec4)
  • Vertical Velocity Spectral Resolution(vvsr)
  • Beam 3 radial wind speed(vel3)
  • Beam 4 radial wind speed(vel4)
  • Beam 0 radial wind speed(vel0)
  • Beam 1 radial wind speed(vel1)
  • Beam 2 radial wind speed(vel2)
  • Oblique FFT bandwidth(oband)
  • Interpulse period(ipp)
  • Signal to Noise Ratio, Beam 0(snr0)
  • Signal to Noise Ratio, Beam 3(snr3)
  • Signal to noise ratio, beam 4(snr4)
  • Ave snr*10 level, Beam 1(snr1)
  • Signal to noise ratio, beam 2(snr2)
  • Easterly Wind Component(u_wind)
  • Averaging interval(avgint)
  • Time Domain Integration Time(tditime)
  • Number of Individual Spectra/Average Spectrum(nspc)
  • Oblique Velocity Spectral Resolution(ovsr)
  • Number of Coherent Samples/Spectral Point(ncoh)
  • Elevation angle of Beam 2 for WINDS data(elevation2)
  • Elevation angle of beam 1(elevation1)
  • Elevation angle of beam 0(elevation0)
  • Elevation angle of beam 4(elevation4)
  • Elevation angle of beam 3(elevation3)
  • Azimuth of Beam 2(azimuth2)
  • Azimuth of Beam 3 for WINDS data(azimuth3)
  • Azimuth of beam 4(azimuth4)
  • Azimuth of Beam 0(azimuth0)
  • Azimuth of Beam 1 for WINDS data(azimuth1)
  • Number of pulse code bits(pcbits)
more
sgpswatsE36.b1:
  • Sensor temperature rise, east profile(trise_e)
  • Sensor temperature rise, west profile(trise_w)
  • Soil temperature, west profile(tsoil_w)
  • Soil temperature, east profile(tsoil_e)
  • Soil water potential, west profile(soilwatpot_w)
  • East profile sensor serial numbers(serial_numbers_e)
  • West profile sensor serial numbers(serial_numbers_w)
  • Soil water potential, east profile(soilwatpot_e)
  • Fractional water index, east profile(fwi_e)
  • Fractional water index, west profile(fwi_w)
  • depth(depth)
  • Volumetric water content, west profile(watcont_w)
  • Volumetric water content, east profile(watcont_e)
  • Reference Thermistor Temperature(tref)
  • Reference sensor temperature rise, west profile(trise_ref_w)
  • Reference sensor temperature rise, east profile(trise_ref_e)
more
sgpsirs20sE9.a0:
  • Instantaneous Upwelling Pyrgeometer Dome Thermistor Resistance Pyrgeometer(inst_up_long_dome_resist)
  • Instantaneous Downwelling Hemispheric Shortwave, Pyranometer Thermopile Voltage(inst_global)
  • Instantaneous direct normal shortwave irradiance, pyrheliometer thermopile
    voltage(inst_direct_normal)
  • Instantaneous Downwelling Pyrgeometer Case Thermistor Resistance, Shaded
    Pyrgeometer(inst_down_long_shaded_case_resist)
  • Instantaneous Upwelling Pyrgeometer Case Thermistor Resistance, Pyrgeometer(inst_up_long_case_resist)
  • Instantaneous downwelling pyrgeometer dome thermistor resistance, shaded
    pyrgeometer(inst_down_long_shaded_dome_resist)
  • Instantaneous Upwelling Shortwave Hemispheric Irradiance, Pyranometer(inst_up_short_hemisp)
  • Instantaneous uncorrected downwelling shortwave diffuse, shaded pyranometer
    thermopile voltage(inst_diffuse)
  • Instantaneous Upwelling Pyrgeometer Thermopile Pyrgeometer(inst_up_long_hemisp_tp)
  • Instantaneous downwelling pyrgeometer thermopile voltage, shaded pyrgeometer(inst_down_long_hemisp_shaded_tp)
more
sgpsebsE33.b1:
  • Soil heat flow 2(soil_heat_flow_2)
  • Soil heat flow 1(soil_heat_flow_1)
  • Soil heat flow 3(soil_heat_flow_3)
  • Sky longwave irradiance(down_long)
  • Wetness, rain detector(wetness)
  • Soil moisture 1, gravimetric(soil_moisture_1)
  • Soil moisture 3, gravimetric(soil_moisture_3)
  • Soil moisture 2, gravimetric(soil_moisture_2)
  • Soil temperature 2(soil_temp_2)
  • Soil temperature mean 3(soil_temp_3)
  • Soil temperature 1(soil_temp_1)
  • 25 meter Upwelling Shortwave Hemispheric Irradiance, Pyranometer(up_short_hemisp)
  • Change in energy storage 3, 0-5 cm soil layer(energy_storage_change_3)
  • Change in energy storage 1, 0-5 cm soil layer(energy_storage_change_1)
  • Change in energy storage 2, 0-5 cm soil layer(energy_storage_change_2)
  • Surface energy balance(surface_energy_balance)
  • Surface soil heat flux, average of fluxes 1-5(surface_soil_heat_flux_avg)
  • Surface soil heat flux 1(surface_soil_heat_flux_1)
  • Surface soil heat flux 2(surface_soil_heat_flux_2)
  • Surface soil heat flux 3(surface_soil_heat_flux_3)
  • Soil heat capacity 2(soil_heat_capacity_2)
  • Soil heat capacity 1(soil_heat_capacity_1)
  • Soil heat capacity 3(soil_heat_capacity_3)
  • Soil heat flow 1, corrected for soil moisture(corr_soil_heat_flow_1)
  • Soil heat flow 3, corrected for soil moisture(corr_soil_heat_flow_3)
  • Soil heat flow 2, corrected for soil moisture(corr_soil_heat_flow_2)
  • Down-welling unshaded pyranometer voltage(down_short_hemisp)
  • Net radiation(net radiation)
  • Surface longwave irradiance(up_long)
  • Net radiometer temperature(temp_net_radiometer)
  • cloud narrowband albedo(albedo)
  • Battery voltage(battery_voltage)
more
sgpmfrsrE37.a0:
  • Hemispheric broadband irradiance(hemisp_broadband_raw)
  • Data Logger Temperature(logger_temp)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 2(diffuse_hemisp_narrowband_filter2_raw)
  • Hemispheric broadband irradiance(hemisp_broadband)
  • Offset subtracted from hemispheric filter1 data(offset_filter1)
  • Offset subtracted from direct normal filter3 data(offset_filter3)
  • Offset subtracted from upwelling hemispheric filter2 data(offset_filter2)
  • Offset subtracted from upwelling hemispheric filter5 data(offset_filter5)
  • Offset subtracted from direct normal filter4 data(offset_filter4)
  • Offset subtracted from hemispheric and diffuse filter6 data(offset_filter6)
  • Alltime hemispheric broadband irradiance(alltime_hemisp_broadband)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 5(diffuse_hemisp_narrowband_filter5_raw)
  • Narrowband hemispheric irradiance, filter 2(hemisp_narrowband_filter2_raw)
  • Narrowband hemispheric irradiance, filter 1(hemisp_narrowband_filter1_raw)
  • Diffuse Hemispheric Broadband Irradiance(diffuse_hemisp_broadband_raw)
  • Second detector temperature(head_temp2)
  • Narrowband hemispheric irradiance, filter 6, nominal wavelength is 935 nm(hemisp_narrowband_filter6)
  • Narrowband Hemispheric Irradiance, Filter 2(hemisp_narrowband_filter2)
  • Narrowband hemispheric irradiance, filter 3, offset and cosine corrected(hemisp_narrowband_filter3)
  • Narrowband hemispheric irradiance, filter 4, offset and cosine corrected(hemisp_narrowband_filter4)
  • Narrowband Hemispheric Irradiance, Filter 5, offset corrected(hemisp_narrowband_filter5)
  • Narrowband Hemispheric Irradiance, Filter 1, offset corrected(hemisp_narrowband_filter1)
  • Diffuse narrowband hemispheric irradiance, filter 6(diffuse_hemisp_narrowband_filter6_raw)
  • Narrowband hemispheric irradiance, filter 4(hemisp_narrowband_filter4_raw)
  • Diffuse narrowband hemispheric irradiance, filter 3(diffuse_hemisp_narrowband_filter3_raw)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 1, offset corrected(diffuse_hemisp_narrowband_filter1)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 2, offset corrected(diffuse_hemisp_narrowband_filter2)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 3(diffuse_hemisp_narrowband_filter3)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 4(diffuse_hemisp_narrowband_filter4)
  • Narrowband diffuse hemispheric irradiance, filter 5, offset and cosine corrected(diffuse_hemisp_narrowband_filter5)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 6, offset corrected(diffuse_hemisp_narrowband_filter6)
  • Narrowband Hemispheric Irradiance, Filter 3(hemisp_narrowband_filter3_raw)
  • Narrowband Hemispheric Irradiance, Filter 6(hemisp_narrowband_filter6_raw)
  • Diffuse narrowband hemispheric irradiance, filter 1(diffuse_hemisp_narrowband_filter1_raw)
  • Alltime narrowband hemispheric irradiance, filter 2(alltime_hemisp_narrowband_filter2)
  • Alltime narrowband hemispheric irradiance, filter 1(alltime_hemisp_narrowband_filter1)
  • Alltime Narrowband Hemispheric Irradiance, Filter 6(alltime_hemisp_narrowband_filter6)
  • Alltime narrowband hemispheric irradiance, filter 5(alltime_hemisp_narrowband_filter5)
  • Alltime Narrowband Hemispheric Irradiance, Filter 4(alltime_hemisp_narrowband_filter4)
  • Alltime Narrowband Hemispheric Irradiance, Filter 3(alltime_hemisp_narrowband_filter3)
  • Diffuse narrowband hemispheric irradiance, filter 4(diffuse_hemisp_narrowband_filter4_raw)
  • Direct Horizontal Broadband Irradiance(direct_horizontal_broadband)
  • Narrowband hemispheric irradiance, filter 5(hemisp_narrowband_filter5_raw)
  • Data logger supply voltage(logger_volt)
  • Narrowband Direct Horizontal Irradiance, Filter 6, cosine corrected(direct_horizontal_narrowband_filter6)
  • Narrowband Direct Horizontal Irradiance, Filter 5, cosine corrected(direct_horizontal_narrowband_filter5)
  • Narrowband Direct Horizontal Irradiance, Filter 4, cosine corrected(direct_horizontal_narrowband_filter4)
  • Direct Horizontal Narrowband Irradiance, Filter 3(direct_horizontal_narrowband_filter3)
  • Narrowband Direct Horizontal Irradiance, Filter 2, cosine corrected(direct_horizontal_narrowband_filter2)
  • Direct horizontal narrowband irradiance, filter 1(direct_horizontal_narrowband_filter1)
  • Diffuse Hemispheric Broadband Irradiance, offset corrected(diffuse_hemisp_broadband)
  • Offset subtracted from hemispheric and diffuse broadband data(offset_broadband)
  • Detector temperature(head_temp)
more
sgpxsaprvptI6.00:
  • Lag-0 co-polar correlation coefficient, clutter filtered(copol_coeff)
  • Unfiltered reflectivity(reflectivity_unf)
  • Signal quality index(sig_qual_index)
  • reflectivity(reflectivity)
  • Attenuation corrected differential reflectivity(diff_reflectivity_corr)
  • Doppler spectral width, clutter filtered(doppler_spectral_width)
  • Attenuation corrected reflectivity(reflectivity_corr)
  • Mean doppler velocity(mean_doppler_velocity)
  • Differential propagation phase shift(dp_phase_shift)
  • Range gate(gate)
  • Specific differential phase(diff_phase)
  • Differential reflectivity, clutter filtered(diff_reflectivity)
more
sgpirt200msE15.a1:
  • Sky Infra-Red Temperature(sky_ir_temp)
  • Internal Reference Infra Red Temperature(ref_ir_temp)
more
sgp30baebbrE35.s1:
  • Bottom vapor pressure(vapor_pressure_bottom)
  • Wind direction vector mean(wdir_vec_mean)
  • Best estimate latent heat flux(be_latent_heat_flux)
  • Bottom air temperature(temp_air_bottom)
  • Surface soil heat flux 1(surface_soil_heat_flux_1)
  • Surface soil heat flux 2(surface_soil_heat_flux_2)
  • Surface soil heat flux 3(surface_soil_heat_flux_3)
  • Surface soil heat flux 4(surface_soil_heat_flux_4)
  • Surface soil heat flux 5(surface_soil_heat_flux_5)
  • Bottom T/RH sensor temperature(temp_trh_bottom)
  • Top T/RH sensor temperature(temp_trh_top)
  • Best estimate sensible heat flux(be_sensible_heat_flux)
  • Soil heat capacity 1(soil_heat_capacity_1)
  • Soil heat capacity 3(soil_heat_capacity_3)
  • Soil heat capacity 2(soil_heat_capacity_2)
  • Soil heat capacity 5(soil_heat_capacity_5)
  • Soil heat capacity 4(soil_heat_capacity_4)
  • Net radiation(net_radiation)
  • Bottom relative humidity (fractional)(rh_bottom_fraction)
  • Wind speed vector mean(wspd_vec_mean)
  • Vegetation height outside fence(vegetation_height)
  • Top vapor pressure(vapor_pressure_top)
  • Soil heat flow 4(soil_heat_flow_4)
  • Soil heat flow 5(soil_heat_flow_5)
  • Soil heat flow 1(soil_heat_flow_1)
  • Soil heat flow 2(soil_heat_flow_2)
  • Soil heat flow 3(soil_heat_flow_3)
  • Change in energy storage 5, 0-5 cm soil layer(energy_storage_change_5)
  • Change in energy storage 4, 0-5 cm soil layer(energy_storage_change_4)
  • Change in energy storage 3, 0-5 cm soil layer(energy_storage_change_3)
  • Change in energy storage 2, 0-5 cm soil layer(energy_storage_change_2)
  • Change in energy storage 1, 0-5 cm soil layer(energy_storage_change_1)
  • Top air temperature(temp_air_top)
  • Wind direction vector mean standard deviation(wdir_vec_std)
  • Friction velocity(friction_velocity)
  • Atmospheric pressure(atmos_pressure)
  • Bowen ratio(bowen_ratio)
  • Soil heat flow 5, corrected for soil moisture(corr_soil_heat_flow_5)
  • Soil heat flow 1, corrected for soil moisture(corr_soil_heat_flow_1)
  • Soil heat flow 2, corrected for soil moisture(corr_soil_heat_flow_2)
  • Soil heat flow 3, corrected for soil moisture(corr_soil_heat_flow_3)
  • Soil heat flow 4, corrected for soil moisture(corr_soil_heat_flow_4)
  • Reference temperature in enclosure(temp_reference)
  • Surface soil heat flux, average of fluxes 1-5(surface_soil_heat_flux_avg)
  • Solar radiation calculated from time of day, lat, and lon(solar_radiation)
  • Aerodynamic latent heat flux(aerodynamic_latent_heat_flux)
  • Wind speed arithmetic mean(wspd_arith_mean)
  • Surface latent heat flux(latent_heat_flux)
  • Top relative humidity (fractional)(rh_top_fraction)
  • AEM position indicator 0 to 15 mins(home_signal_15)
  • Aerodynamic sensible heat flux(aerodynamic_sensible_heat_flux)
  • AEM position indicator 15 to 30 mins(home_signal_30)
  • Half hour averaged soil temperature 5(soil_temp_5)
  • Half hour averaged soil temperature 4(soil_temp_4)
  • Soil temperature mean 3(soil_temp_3)
  • Soil temperature 2(soil_temp_2)
  • Soil temperature 1(soil_temp_1)
  • Surface sensible heat flux(sensible_heat_flux)
  • Soil moisture 4, gravimetric(soil_moisture_4)
  • Soil moisture 3, gravimetric(soil_moisture_3)
  • Soil moisture 2, gravimetric(soil_moisture_2)
  • Soil moisture 1, gravimetric(soil_moisture_1)
  • Soil moisture 5, gravimetric(soil_moisture_5)
more
sgpirt200msE38.a1:
  • Internal Reference Infra Red Temperature(ref_ir_temp)
  • Sky Infra-Red Temperature(sky_ir_temp)
more
sgpsirs60sE9.a1:
  • Downwelling shortwave diffuse hemispheric irradiance, pyranometer, maxima(down_short_diffuse_hemisp_max)
  • Downwelling Shortwave Diffuse Hemispheric Irradiance, Pyrgeometer, Minima(down_short_diffuse_hemisp_min)
  • Upwelling shortwave hemispheric irradiance, pyranometer, minima(up_short_hemisp_min)
  • Upwelling (10 meter) Shortwave Hemispheric Irradiance, Pyranometer, Maxima(up_short_hemisp_max)
  • Downwelling longwave hemispheric irradiance, shaded pyrgeometer(down_long_hemisp_shaded)
  • Upwelling (10 meter) Longwave Hemispheric Irradiance, Ventilated Pyrgeometer,
    Standard Deviation(up_long_hemisp_std)
  • Shortwave direct normal irradiance, pyrheliometer, minima(short_direct_normal_min)
  • Shortwave Direct Normal Irradiance, Pyrheliometer, Maxima(short_direct_normal_max)
  • 10 meter Upwelling Longwave Hemispheric Irradiance, Pyrgeometer(up_long_hemisp)
  • 25 meter Upwelling Shortwave Hemispheric Irradiance, Pyranometer(up_short_hemisp)
  • Downwelling shortwave hemispheric irradiance, pyranometer, maxima(down_short_hemisp_max)
  • Downwelling Shortwave Hemispheric Irradiance, Pyranometer, Minima(down_short_hemisp_min)
  • Downwelling longwave hemispheric irradiance, shaded pyrgeometer, standard
    deviation(down_long_hemisp_shaded_std)
  • Upwelling (10 meter) Shortwave Hemispheric Irradiance, Ventilated Pyranometer,
    Standard Deviation(up_short_hemisp_std)
  • Downwelling Longwave Hemispheric Irradiance, Shaded Pyrgeometer, Maxima(down_long_hemisp_shaded_max)
  • Upwelling longwave hemispheric irradiance, pyrgeometer, maxima(up_long_hemisp_max)
  • Downwelling Longwave Hemispheric Irradiance, Shaded Pyrgeometer, Minima(down_long_hemisp_shaded_min)
  • Shortwave Direct Normal Irradiance, Pyrgeometer, Standard Deviation(short_direct_normal_std)
  • Downwelling Shortwave Diffuse Hemispheric Irradiance, Ventilated Pyranometer(down_short_diffuse_hemisp)
  • Down-welling unshaded pyranometer voltage(down_short_hemisp)
  • Downwelling Shortwave Diffuse Hemispheric Irradiance, Pyranometer, Standard
    Deviation(down_short_diffuse_hemisp_std)
  • Downwelling Shortwave Hemispheric Irradiance, Ventilated Pyrgeometer, Standard
    Deviation(down_short_hemisp_std)
  • Shortwave direct normal irradiance, pyrheliometer(short_direct_normal)
  • Battery voltage(vBatt)
  • Upwelling Longwave Hemispheric Irradiance, Pyrgeometer, Minima(up_long_hemisp_min)
more
sgpmfrsrlangleyE13.c1:
  • Langley regression Io, Michalsky, Direct BroadBand(michalsky_solar_constant_broadband)
  • number of points used in final linear fit for the Direct Narrowband Filter2(barnard_number_points_filter2)
  • number of points used in final linear fit for the Direct Narrowband Filter3(barnard_number_points_filter3)
  • number of points used in final linear fit for the Direct Narrowband Filter4(barnard_number_points_filter4)
  • number of points used in final linear fit for the Direct Narrowband Filter5(barnard_number_points_filter5)
  • number of points used in final linear fit for the Direct Narrowband Filter1(barnard_number_points_filter1)
  • number of points used in final linear fit for the Direct Narrowband Filter6(barnard_number_points_filter6)
  • percentage of initial points used in final linear fit for the Direct Broadband(michalsky_good_fraction_broadband)
  • MFRSR channels(channel)
  • percentage of initial points used in final linear fit for the Direct Broadband(barnard_good_fraction_broadband)
  • Angstrom exponent(angstrom_exponent)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter1(barnard_good_fraction_filter1)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter2(barnard_good_fraction_filter2)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter3(barnard_good_fraction_filter3)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter4(barnard_good_fraction_filter4)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter5(barnard_good_fraction_filter5)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter6(barnard_good_fraction_filter6)
  • number of points used in final linear fit(npoints)
  • Langley regression Io, adjusted to 1AU, Barnard, Direct BroadBand(barnard_solar_constant_sdist_broadband)
  • error in optical depth (slope) of final linear fit for the Direct Narrowband
    Filter4(barnard_error_slope_filter4)
  • error in optical depth (slope) of final linear fit for the Direct Narrowband
    Filter3(barnard_error_slope_filter3)
  • error in optical depth (slope) of final linear fit for the Direct Narrowband
    Filter6(barnard_error_slope_filter6)
  • error in optical depth (slope) of final linear fit for the Direct Narrowband
    Filter5(barnard_error_slope_filter5)
  • error in optical depth (slope) of final linear fit for the Direct Narrowband
    Filter2(barnard_error_slope_filter2)
  • error in optical depth (slope) of final linear fit for the Direct Narrowband
    Filter1(barnard_error_slope_filter1)
  • optical depth for the Direct Narrowband Filter4(barnard_optical_depth_filter4)
  • optical depth for the Direct Narrowband Filter3(barnard_optical_depth_filter3)
  • optical depth for the Direct Narrowband Filter6(barnard_optical_depth_filter6)
  • optical depth for the Direct Narrowband Filter5(barnard_optical_depth_filter5)
  • optical depth for the Direct Narrowband Filter2(barnard_optical_depth_filter2)
  • optical depth for the Direct Narrowband Filter1(barnard_optical_depth_filter1)
  • solar constant corrected for solar distance for the Direct Narrowband Filter2(barnard_solar_constant_sdist_filter2)
  • solar constant corrected for solar distance for the Direct Narrowband Filter1(barnard_solar_constant_sdist_filter1)
  • Langley regression Io, adjusted to 1AU, Barnard, Direct Narrowband Filter4(barnard_solar_constant_sdist_filter4)
  • solar constant corrected for solar distance for the Direct Narrowband Filter3(barnard_solar_constant_sdist_filter3)
  • solar constant corrected for solar distance for the Direct Narrowband Filter6(barnard_solar_constant_sdist_filter6)
  • solar constant corrected for solar distance for the Direct Narrowband Filter5(barnard_solar_constant_sdist_filter5)
  • percentage of initial points used in final linear fit(good_fraction)
  • standard deviation around regression line for the Direct Narrowband Filter4(michalsky_standard_deviation_filter4)
  • standard deviation around regression line for the Direct Narrowband Filter3(michalsky_standard_deviation_filter3)
  • standard deviation around regression line for the Direct Narrowband Filter2(michalsky_standard_deviation_filter2)
  • standard deviation around regression line for the Direct Narrowband Filter1(michalsky_standard_deviation_filter1)
  • standard deviation around regression line for the Direct Narrowband Filter6(michalsky_standard_deviation_filter6)
  • standard deviation around regression line for the Direct Narrowband Filter5(michalsky_standard_deviation_filter5)
  • rejection flag for Direct Narrowband Filter6(barnard_badflag_filter6)
  • rejection flag for Direct Narrowband Filter1(barnard_badflag_filter1)
  • rejection flag for Direct Narrowband Filter4(barnard_badflag_filter4)
  • rejection flag for Direct Narrowband Filter5(barnard_badflag_filter5)
  • rejection flag for Direct Narrowband Filter2(barnard_badflag_filter2)
  • rejection flag for Direct Narrowband Filter3(barnard_badflag_filter3)
  • solar constant from Langley analysis(solar_constant)
  • Angstrom exponent(michalsky_angstrom_exponent)
  • Angstrom exponent(barnard_angstrom_exponent)
  • solar constant corrected for solar distance for the Direct Broadband(michalsky_solar_constant_sdist_broadband)
  • optical depth for the Direct BroadBand(barnard_optical_depth_broadband)
  • number of points used in final linear fit for the Direct Narrowband Filter6(michalsky_number_points_filter6)
  • number of points used in final linear fit for the Direct Narrowband Filter5(michalsky_number_points_filter5)
  • number of points used in final linear fit for the Direct Narrowband Filter4(michalsky_number_points_filter4)
  • number of points used in final linear fit for the Direct Narrowband Filter3(michalsky_number_points_filter3)
  • number of points used in final linear fit for the Direct Narrowband Filter2(michalsky_number_points_filter2)
  • number of points used in final linear fit for the Direct Narrowband Filter1(michalsky_number_points_filter1)
  • rejection flag for Direct Broadband(michalsky_badflag_broadband)
  • optical depth for the Direct BroadBand(michalsky_optical_depth_broadband)
  • standard deviation around regression line for the Direct BroadBand(michalsky_standard_deviation_broadband)
  • solar constant corrected for solar distance for the Direct Narrowband Filter5(michalsky_solar_constant_sdist_filter5)
  • solar constant corrected for solar distance for the Direct Narrowband Filter4(michalsky_solar_constant_sdist_filter4)
  • solar constant corrected for solar distance for the Direct Narrowband Filter6(michalsky_solar_constant_sdist_filter6)
  • solar constant corrected for solar distance for the Direct Narrowband Filter1(michalsky_solar_constant_sdist_filter1)
  • solar constant corrected for solar distance for the Direct Narrowband Filter3(michalsky_solar_constant_sdist_filter3)
  • solar constant corrected for solar distance for the Direct Narrowband Filter2(michalsky_solar_constant_sdist_filter2)
  • error in final linear fit for the Direct BroadBand(barnard_error_fit_broadband)
  • error in final linear fit for Langley analysis(error_fit)
  • optical depth from Langley analysis(optical_depth)
  • error in final linear fit for the Direct Narrowband Filter3(barnard_error_fit_filter3)
  • error in final linear fit for the Direct Narrowband Filter4(barnard_error_fit_filter4)
  • error in final linear fit for the Direct Narrowband Filter1(barnard_error_fit_filter1)
  • error in final linear fit for the Direct Narrowband Filter2(barnard_error_fit_filter2)
  • error in final linear fit for the Direct Narrowband Filter5(barnard_error_fit_filter5)
  • error in final linear fit for the Direct Narrowband Filter6(barnard_error_fit_filter6)
  • rejection flag for Direct Broadband(barnard_badflag_broadband)
  • number of points used in final linear fit for the Direct Broadband(michalsky_number_points_broadband)
  • rejection flag for Direct Narrowband Filter6(michalsky_badflag_filter6)
  • rejection flag for Direct Narrowband Filter5(michalsky_badflag_filter5)
  • rejection flag for Direct Narrowband Filter2(michalsky_badflag_filter2)
  • rejection flag for Direct Narrowband Filter1(michalsky_badflag_filter1)
  • rejection flag for Direct Narrowband Filter4(michalsky_badflag_filter4)
  • rejection flag for Direct Narrowband Filter3(michalsky_badflag_filter3)
  • error in optical depth (slope) of final linear fit(error_slope)
  • solar constant for the Direct Narrowband Filter1(michalsky_solar_constant_filter1)
  • solar constant for the Direct Narrowband Filter6(michalsky_solar_constant_filter6)
  • Langley regression Io, Michalsky, Direct Narrowband Filter2(michalsky_solar_constant_filter2)
  • solar constant for the Direct Narrowband Filter3(michalsky_solar_constant_filter3)
  • Langley regression Io, Michalsky, Direct Narrowband Filter4(michalsky_solar_constant_filter4)
  • Langley regression Io, Michalsky, Direct Narrowband Filter5(michalsky_solar_constant_filter5)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter6(michalsky_good_fraction_filter6)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter5(michalsky_good_fraction_filter5)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter4(michalsky_good_fraction_filter4)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter3(michalsky_good_fraction_filter3)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter2(michalsky_good_fraction_filter2)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter1(michalsky_good_fraction_filter1)
  • number of points used in final linear fit for the Direct Broadband(barnard_number_points_broadband)
  • rejection flag for Langley analysis(badflag)
  • error in optical depth (slope) of final linear fit for the Direct Broadband(barnard_error_slope_broadband)
  • optical depth for the Direct Narrowband Filter2(michalsky_optical_depth_filter2)
  • optical depth for the Direct Narrowband Filter3(michalsky_optical_depth_filter3)
  • optical depth for the Direct Narrowband Filter4(michalsky_optical_depth_filter4)
  • optical depth for the Direct Narrowband Filter5(michalsky_optical_depth_filter5)
  • optical depth for the Direct Narrowband Filter1(michalsky_optical_depth_filter1)
  • optical depth for the Direct Narrowband Filter6(michalsky_optical_depth_filter6)
more
sgpsirsE13.a1:
  • Downwelling Shortwave Hemispheric Irradiance, Ventilated Pyrgeometer, Standard
    Deviation(down_short_hemisp_std)
  • Down-welling unshaded pyranometer voltage(down_short_hemisp)
  • Downwelling shortwave diffuse hemispheric irradiance, pyranometer, maxima(down_short_diffuse_hemisp_max)
  • Downwelling Shortwave Diffuse Hemispheric Irradiance, Pyrgeometer, Minima(down_short_diffuse_hemisp_min)
  • Upwelling (10 meter) Shortwave Hemispheric Irradiance, Ventilated Pyranometer,
    Standard Deviation(up_short_hemisp_std)
  • Downwelling Shortwave Diffuse Hemispheric Irradiance, Ventilated Pyranometer(down_short_diffuse_hemisp)
  • 10 meter Upwelling Longwave Hemispheric Irradiance, Pyrgeometer(up_long_hemisp)
  • Shortwave direct normal irradiance, pyrheliometer(short_direct_normal)
  • Downwelling Longwave Hemispheric Irradiance, Ventilated Pyrgeometer, Standard
    Deviation(down_long_hemisp_std)
  • 25 meter Upwelling Shortwave Hemispheric Irradiance, Pyranometer(up_short_hemisp)
  • Upwelling (10 meter) Longwave Hemispheric Irradiance, Ventilated Pyrgeometer,
    Standard Deviation(up_long_hemisp_std)
  • Downwelling Longwave Hemispheric Irradiance, Pyrgeometer, Maxima(down_long_hemisp_max)
  • Downwelling Longwave Hemispheric Irradiance, Pyrgeometer, Minima(down_long_hemisp_min)
  • Upwelling longwave hemispheric irradiance, pyrgeometer, maxima(up_long_hemisp_max)
  • Upwelling Longwave Hemispheric Irradiance, Pyrgeometer, Minima(up_long_hemisp_min)
  • Downwelling Shortwave Hemispheric Irradiance, Pyranometer, Minima(down_short_hemisp_min)
  • Upwelling (10 meter) Shortwave Hemispheric Irradiance, Pyranometer, Maxima(up_short_hemisp_max)
  • Downwelling shortwave hemispheric irradiance, pyranometer, maxima(down_short_hemisp_max)
  • Upwelling shortwave hemispheric irradiance, pyranometer, minima(up_short_hemisp_min)
  • Shortwave Direct Normal Irradiance, Pyrgeometer, Standard Deviation(short_direct_normal_std)
  • Shortwave Direct Normal Irradiance, Pyrheliometer, Maxima(short_direct_normal_max)
  • Downwelling Shortwave Diffuse Hemispheric Irradiance, Pyranometer, Standard
    Deviation(down_short_diffuse_hemisp_std)
  • Shortwave direct normal irradiance, pyrheliometer, minima(short_direct_normal_min)
  • Battery voltage(vBatt)
  • Downwelling longwave hemispheric irradiance, pyrgeometer(down_long_hemisp)
more
sgpsirsE31.b1:
  • Downwelling longwave hemispheric irradiance, shaded pyrgeometer, standard
    deviation(down_long_hemisp_shaded_std)
  • Downwelling shortwave hemispheric irradiance, pyranometer, maxima(down_short_hemisp_max)
  • Downwelling Shortwave Hemispheric Irradiance, Pyranometer, Minima(down_short_hemisp_min)
  • Shortwave Direct Normal Irradiance, Pyrgeometer, Standard Deviation(short_direct_normal_std)
  • Battery voltage(vBatt)
  • Upwelling Longwave Hemispheric Irradiance, Pyrgeometer, Minima(up_long_hemisp_min)
  • Shortwave direct normal irradiance, pyrheliometer(short_direct_normal)
  • Upwelling (10 meter) Shortwave Hemispheric Irradiance, Pyranometer, Maxima(up_short_hemisp_max)
  • Upwelling longwave hemispheric irradiance, pyrgeometer, maxima(up_long_hemisp_max)
  • 10 meter Upwelling Longwave Hemispheric Irradiance, Pyrgeometer(up_long_hemisp)
  • Upwelling shortwave hemispheric irradiance, pyranometer, minima(up_short_hemisp_min)
  • Downwelling Longwave Hemispheric Irradiance, Shaded Pyrgeometer, Minima(down_long_hemisp_shaded_min)
  • Downwelling Longwave Hemispheric Irradiance, Shaded Pyrgeometer, Maxima(down_long_hemisp_shaded_max)
  • Downwelling Shortwave Diffuse Hemispheric Irradiance, Pyranometer, Standard
    Deviation(down_short_diffuse_hemisp_std)
  • Downwelling Shortwave Hemispheric Irradiance, Ventilated Pyrgeometer, Standard
    Deviation(down_short_hemisp_std)
  • Down-welling unshaded pyranometer voltage(down_short_hemisp)
  • Downwelling longwave hemispheric net infrared(down_long_netir)
  • 25 meter Upwelling Shortwave Hemispheric Irradiance, Pyranometer(up_short_hemisp)
  • Upwelling (10 meter) Longwave Hemispheric Irradiance, Ventilated Pyrgeometer,
    Standard Deviation(up_long_hemisp_std)
  • Upwelling (10 meter) Shortwave Hemispheric Irradiance, Ventilated Pyranometer,
    Standard Deviation(up_short_hemisp_std)
  • Downwelling shortwave diffuse hemispheric irradiance, pyranometer, maxima(down_short_diffuse_hemisp_max)
  • Instantaneous downwelling pyrgeometer case thermistor temperature, shaded
    pyrgeometer(inst_down_long_shaded_case_temp)
  • Shortwave direct normal irradiance, pyrheliometer, minima(short_direct_normal_min)
  • Shortwave Direct Normal Irradiance, Pyrheliometer, Maxima(short_direct_normal_max)
  • Downwelling Shortwave Diffuse Hemispheric Irradiance, Pyrgeometer, Minima(down_short_diffuse_hemisp_min)
  • Instantaneous Upwelling Longwave Hemispheric Irradiance, Pyrgeometer(up_long_netir)
  • Instantaneous Downwelling Pyrgeometer Dome Thermistor Temperature, Shaded
    Pyrgeometer(inst_down_long_shaded_dome_temp)
  • Instantaneous upwelling pyrgeometer case thermistor temperature, pyrgeometer(inst_up_long_case_temp)
  • Downwelling Shortwave Diffuse Hemispheric Irradiance, Ventilated Pyranometer(down_short_diffuse_hemisp)
  • Downwelling longwave hemispheric irradiance, shaded pyrgeometer(down_long_hemisp_shaded)
  • Instantaneous Dome Temperature(inst_up_long_dome_temp)
more
sgpsirsE13.a2:
  • Upwelling shortwave hemispheric irradiance, pyranometer, minima(up_short_hemisp_min)
  • Upwelling (10 meter) Shortwave Hemispheric Irradiance, Pyranometer, Maxima(up_short_hemisp_max)
  • Downwelling Shortwave Diffuse Hemispheric Irradiance, Pyranometer, Standard
    Deviation(down_short_diffuse_hemisp_std)
  • Shortwave direct normal irradiance, pyrheliometer(short_direct_normal)
  • Downwelling longwave hemispheric irradiance, shaded pyrgeometer, standard
    deviation(down_long_hemisp_shaded_std)
  • Downwelling Shortwave Hemispheric Irradiance, Ventilated Pyrgeometer, Standard
    Deviation(down_short_hemisp_std)
  • Down-welling unshaded pyranometer voltage(down_short_hemisp)
  • Downwelling Longwave Hemispheric Irradiance, Shaded Pyrgeometer, Minima(down_long_hemisp_shaded_min)
  • Battery voltage(vBatt)
  • Shortwave Direct Normal Irradiance, Pyrgeometer, Standard Deviation(short_direct_normal_std)
  • Downwelling Longwave Hemispheric Irradiance, Shaded Pyrgeometer, Maxima(down_long_hemisp_shaded_max)
  • 10 meter Upwelling Longwave Hemispheric Irradiance, Pyrgeometer(up_long_hemisp)
  • Upwelling (10 meter) Shortwave Hemispheric Irradiance, Ventilated Pyranometer,
    Standard Deviation(up_short_hemisp_std)
  • Downwelling longwave hemispheric net infrared(down_long_netir)
  • 25 meter Upwelling Shortwave Hemispheric Irradiance, Pyranometer(up_short_hemisp)
  • Instantaneous Dome Temperature(inst_up_long_dome_temp)
  • Upwelling (10 meter) Longwave Hemispheric Irradiance, Ventilated Pyrgeometer,
    Standard Deviation(up_long_hemisp_std)
  • Instantaneous upwelling pyrgeometer case thermistor temperature, pyrgeometer(inst_up_long_case_temp)
  • Shortwave Direct Normal Irradiance, Pyrheliometer, Maxima(short_direct_normal_max)
  • Downwelling Shortwave Diffuse Hemispheric Irradiance, Ventilated Pyranometer(down_short_diffuse_hemisp)
  • Shortwave direct normal irradiance, pyrheliometer, minima(short_direct_normal_min)
  • Downwelling longwave hemispheric irradiance, shaded pyrgeometer(down_long_hemisp_shaded)
  • Downwelling Shortwave Diffuse Hemispheric Irradiance, Pyrgeometer, Minima(down_short_diffuse_hemisp_min)
  • Downwelling shortwave diffuse hemispheric irradiance, pyranometer, maxima(down_short_diffuse_hemisp_max)
  • Instantaneous Upwelling Longwave Hemispheric Irradiance, Pyrgeometer(up_long_netir)
  • Upwelling Longwave Hemispheric Irradiance, Pyrgeometer, Minima(up_long_hemisp_min)
  • Downwelling shortwave hemispheric irradiance, pyranometer, maxima(down_short_hemisp_max)
  • Downwelling Shortwave Hemispheric Irradiance, Pyranometer, Minima(down_short_hemisp_min)
  • Instantaneous downwelling pyrgeometer case thermistor temperature, shaded
    pyrgeometer(inst_down_long_shaded_case_temp)
  • Instantaneous Downwelling Pyrgeometer Dome Thermistor Temperature, Shaded
    Pyrgeometer(inst_down_long_shaded_dome_temp)
  • Upwelling longwave hemispheric irradiance, pyrgeometer, maxima(up_long_hemisp_max)
more
sgp5ebbrE13.b1:
  • Reference temperature in enclosure(temp_reference)
  • Bottom air temperature(temp_air_bottom)
  • Top relative humidity (fractional)(rh_top_fraction)
  • AEM position indicator(home_signal)
  • Wind direction vector mean standard deviation(wdir_vec_std)
  • Bottom vapor pressure(vapor_pressure_bottom)
  • Wind speed vector mean(wspd_vec_mean)
  • Wind direction vector mean(wdir_vec_mean)
  • Net radiation(net_radiation)
  • Bottom relative humidity (fractional)(rh_bottom_fraction)
  • Bottom T/RH sensor temperature(temp_trh_bottom)
  • Top vapor pressure(vapor_pressure_top)
  • Top T/RH sensor temperature(temp_trh_top)
  • Atmospheric pressure(atmos_pressure)
  • Wind speed arithmetic mean(wspd_arith_mean)
  • Top air temperature(temp_air_top)
more
sgpirtE36.b1:
  • Sky infrared temperature, standard deviation(sky_ir_temp_std)
  • Sky Infra-Red Temperature(sky_ir_temp)
  • Sky Infra-Red Temperature Minima(sky_ir_temp_min)
  • Sky Infra Red Temperature Maxima(sky_ir_temp_max)
  • Internal Reference Infra Red Temperature(ref_ir_temp)
  • Number of averaged samples(samples_in_average)
more
sgpsirsE13.a0:
  • 25 meter Upwelling Shortwave Hemispheric Irradiance, Pyranometer(up_short_hemisp)
  • Up-welling pyrgeometer dome thermistor resistance(up_long_dome_resist)
  • Downwelling longwave hemispheric irradiance, pyrgeometer(down_long_hemisp)
  • Down-welling pyrgeometer case thermistor resistance(down_long_case_resist)
  • 10 meter Upwelling Longwave Hemispheric Irradiance, Pyrgeometer(up_long_hemisp)
  • Down-welling pyrgeometer dome thermistor resistance(down_long_dome_resist)
  • Down-welling unshaded pyranometer voltage(down_short_hemisp)
  • Up-welling pyrgeometer case thermistor resistance(up_long_case_resist)
  • Shaded pyranometer voltage(short_diffuse)
  • Direct-beam normal solar irradiance(nip)
more
sgpmfrsrE31.a0:
  • Diffuse narrowband hemispheric irradiance, filter 3(diffuse_hemisp_narrowband_filter3_raw)
  • Narrowband Hemispheric Irradiance, Filter 6(hemisp_narrowband_filter6_raw)
  • Direct Horizontal Broadband Irradiance(direct_horizontal_broadband)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 1, offset corrected(diffuse_hemisp_narrowband_filter1)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 2, offset corrected(diffuse_hemisp_narrowband_filter2)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 3(diffuse_hemisp_narrowband_filter3)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 4(diffuse_hemisp_narrowband_filter4)
  • Narrowband diffuse hemispheric irradiance, filter 5, offset and cosine corrected(diffuse_hemisp_narrowband_filter5)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 6, offset corrected(diffuse_hemisp_narrowband_filter6)
  • Offset subtracted from hemispheric and diffuse filter6 data(offset_filter6)
  • Offset subtracted from hemispheric filter1 data(offset_filter1)
  • Offset subtracted from upwelling hemispheric filter5 data(offset_filter5)
  • Offset subtracted from direct normal filter4 data(offset_filter4)
  • Offset subtracted from direct normal filter3 data(offset_filter3)
  • Offset subtracted from upwelling hemispheric filter2 data(offset_filter2)
  • Narrowband hemispheric irradiance, filter 1(hemisp_narrowband_filter1_raw)
  • Offset subtracted from hemispheric and diffuse broadband data(offset_broadband)
  • Second detector temperature(head_temp2)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 5(diffuse_hemisp_narrowband_filter5_raw)
  • Hemispheric broadband irradiance(hemisp_broadband_raw)
  • Narrowband Direct Horizontal Irradiance, Filter 6, cosine corrected(direct_horizontal_narrowband_filter6)
  • Narrowband Direct Horizontal Irradiance, Filter 4, cosine corrected(direct_horizontal_narrowband_filter4)
  • Narrowband Direct Horizontal Irradiance, Filter 5, cosine corrected(direct_horizontal_narrowband_filter5)
  • Narrowband Direct Horizontal Irradiance, Filter 2, cosine corrected(direct_horizontal_narrowband_filter2)
  • Direct Horizontal Narrowband Irradiance, Filter 3(direct_horizontal_narrowband_filter3)
  • Direct horizontal narrowband irradiance, filter 1(direct_horizontal_narrowband_filter1)
  • Narrowband hemispheric irradiance, filter 4(hemisp_narrowband_filter4_raw)
  • Hemispheric broadband irradiance(hemisp_broadband)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 2(diffuse_hemisp_narrowband_filter2_raw)
  • Narrowband hemispheric irradiance, filter 2(hemisp_narrowband_filter2_raw)
  • Alltime hemispheric broadband irradiance(alltime_hemisp_broadband)
  • Narrowband Hemispheric Irradiance, Filter 1, offset corrected(hemisp_narrowband_filter1)
  • Narrowband Hemispheric Irradiance, Filter 2(hemisp_narrowband_filter2)
  • Narrowband hemispheric irradiance, filter 3, offset and cosine corrected(hemisp_narrowband_filter3)
  • Narrowband hemispheric irradiance, filter 4, offset and cosine corrected(hemisp_narrowband_filter4)
  • Narrowband Hemispheric Irradiance, Filter 5, offset corrected(hemisp_narrowband_filter5)
  • Narrowband hemispheric irradiance, filter 6, nominal wavelength is 935 nm(hemisp_narrowband_filter6)
  • Data logger supply voltage(logger_volt)
  • Narrowband hemispheric irradiance, filter 5(hemisp_narrowband_filter5_raw)
  • Diffuse narrowband hemispheric irradiance, filter 4(diffuse_hemisp_narrowband_filter4_raw)
  • Diffuse Hemispheric Broadband Irradiance, offset corrected(diffuse_hemisp_broadband)
  • Detector temperature(head_temp)
  • Diffuse narrowband hemispheric irradiance, filter 1(diffuse_hemisp_narrowband_filter1_raw)
  • Diffuse Hemispheric Broadband Irradiance(diffuse_hemisp_broadband_raw)
  • Alltime Narrowband Hemispheric Irradiance, Filter 4(alltime_hemisp_narrowband_filter4)
  • Alltime Narrowband Hemispheric Irradiance, Filter 3(alltime_hemisp_narrowband_filter3)
  • Alltime narrowband hemispheric irradiance, filter 2(alltime_hemisp_narrowband_filter2)
  • Alltime narrowband hemispheric irradiance, filter 1(alltime_hemisp_narrowband_filter1)
  • Alltime Narrowband Hemispheric Irradiance, Filter 6(alltime_hemisp_narrowband_filter6)
  • Alltime narrowband hemispheric irradiance, filter 5(alltime_hemisp_narrowband_filter5)
  • Diffuse narrowband hemispheric irradiance, filter 6(diffuse_hemisp_narrowband_filter6_raw)
  • Narrowband Hemispheric Irradiance, Filter 3(hemisp_narrowband_filter3_raw)
  • Data Logger Temperature(logger_temp)
more
sgpcsaprvertI7.00:
  • Unfiltered reflectivity in horizontal polarization(reflectivity_horizontal_unf)
  • Clutter filtered reflectivity in vertical polarization(reflectivity_vertical)
  • Azimuth of Radar Ray(azimuth)
  • Unfiltered Mean Doppler velocity(mean_doppler_velocity_unf)
  • Unfiltered differential reflectivity(diff_reflectivity_unf)
  • Unfiltered specific differential phase(diff_phase_unf)
  • Normalized coherent power, clutter filtered(norm_coherent_power)
  • Mean doppler velocity(mean_doppler_velocity)
  • Lag-0 co-polar correlation coefficient, clutter filtered(copol_coeff)
  • Differential reflectivity, clutter filtered(diff_reflectivity)
  • Unfiltered received power in vertical channel(power_vertical_unf)
  • altitude(altitude)
  • Specific differential phase(diff_phase)
  • Unfiltered differential propagation phase shift(dp_phase_shift_unf)
  • Differential propagation phase shift(dp_phase_shift)
  • Unfiltered Doppler spectral width(doppler_spectral_width_unf)
  • Received power in vertical channel, clutter filtered(power_vertical)
  • Received power in horizontal channel, clutter filtered(power_horizontal)
  • Unfiltered received power in horizontal channel(power_horizontal_unf)
  • Unfiltered lag-0 co-polar correlation coefficient(copol_coeff_unf)
  • Clutter filtered reflectivity in horizontal polarization(reflectivity_horizontal)
  • Unfiltered reflectivity in vertical polarization(reflectivity_vertical_unf)
  • Distance to the center of the corresponding range bin(range)
  • Doppler spectral width, clutter filtered(doppler_spectral_width)
  • Unfiltered normalized coherent power(norm_coherent_power_unf)
more
sgpmfrsrE37.b1:
  • Normalized filter function data, filter 3, measured transmittance value obtained
    during bench calibrations(normalized_transmittance_filter3)
  • Normalized filter function data, filter 2, measured transmittance value obtained
    during bench calibrations(normalized_transmittance_filter2)
  • Normalized filter function data, filter 1, measured transmittance value obtained
    during bench calibrations(normalized_transmittance_filter1)
  • Normalized filter function data, filter 6, measured transmittance value obtained
    during bench calibrations(normalized_transmittance_filter6)
  • Normalized filter function data, filter 5, measured transmittance value obtained
    during bench calibrations(normalized_transmittance_filter5)
  • Normalized filter function data, filter 4, measured transmittance value obtained
    during bench calibrations(normalized_transmittance_filter4)
  • Data Logger Temperature(logger_temp)
  • angle of incidence during cosine bench measurements(bench_angle)
  • Cosine correction, west to east, filter4(cosine_correction_we_filter4)
  • Cosine correction, west to east, filter5(cosine_correction_we_filter5)
  • cosine correction, west to east, filter2(cosine_correction_we_filter2)
  • cosine correction, west to east, filter3(cosine_correction_we_filter3)
  • cosine correction, west to east, filter6(cosine_correction_we_filter6)
  • Cosine correction, west to east, filter1(cosine_correction_we_filter1)
  • Elevation angle(elevation_angle)
  • Data logger supply voltage(logger_volt)
  • Offset subtracted from upwelling hemispheric filter5 data(offset_filter5)
  • Offset subtracted from direct normal filter4 data(offset_filter4)
  • Offset subtracted from hemispheric and diffuse filter6 data(offset_filter6)
  • Offset subtracted from hemispheric filter1 data(offset_filter1)
  • Offset subtracted from direct normal filter3 data(offset_filter3)
  • Offset subtracted from upwelling hemispheric filter2 data(offset_filter2)
  • Cosine correction applied to direct_horizontal_narrowband_filter2(computed_cosine_correction_filter2)
  • Cosine correction applied to direct_horizontal_filter1(computed_cosine_correction_filter1)
  • Cosine correction applied to direct_horizontal_narrowband_filter4(computed_cosine_correction_filter4)
  • Cosine correction applied to direct_horizontal_narrowband_filter3(computed_cosine_correction_filter3)
  • Cosine correction applied to direct_horizontal_filter6(computed_cosine_correction_filter6)
  • Cosine correction applied to direct_horizontal_filter5(computed_cosine_correction_filter5)
  • cosine correction, west to east, broadband channel(cosine_correction_we_broadband)
  • Air mass(airmass)
  • Cosine correction of broadband diffuse, assuming Rayleigh sky at 45 degree
    zenith angle(diffuse_correction_broadband)
  • Cosine solar zenith angle(cosine_solar_zenith_angle)
  • Normalized filter function data, filter 5, wavelength value obtained during
    bench calibrations(wavelength_filter5)
  • Normalized filter function data, filter 4, wavelength value obtained during
    bench calibrations(wavelength_filter4)
  • Normalized filter function data, filter 6, wavelength value obtained during
    bench calibrations(wavelength_filter6)
  • Normalized filter function data, filter 1, wavelength value obtained during
    bench calibrations(wavelength_filter1)
  • Normalized filter function data, filter 3, wavelength value obtained during
    bench calibrations(wavelength_filter3)
  • Normalized filter function data, filter 2, wavelength value obtained during
    bench calibrations(wavelength_filter2)
  • Narrowband hemispheric irradiance, filter 6, nominal wavelength is 935 nm(hemisp_narrowband_filter6)
  • Narrowband hemispheric irradiance, filter 4, offset and cosine corrected(hemisp_narrowband_filter4)
  • Narrowband Hemispheric Irradiance, Filter 5, offset corrected(hemisp_narrowband_filter5)
  • Narrowband Hemispheric Irradiance, Filter 2(hemisp_narrowband_filter2)
  • Narrowband hemispheric irradiance, filter 3, offset and cosine corrected(hemisp_narrowband_filter3)
  • Narrowband Hemispheric Irradiance, Filter 1, offset corrected(hemisp_narrowband_filter1)
  • Cosine correction of filter3 diffuse, assuming Rayleigh sky at 45 deg zenith
    angle(diffuse_correction_filter3)
  • Cosine correction of filter2 diffuse, assuming Rayleigh sky at 45 deg zenith
    angle(diffuse_correction_filter2)
  • Cosine correction of filter1 diffuse, assuming Rayleigh sky at 45 degree zenith
    angle(diffuse_correction_filter1)
  • Cosine correction of filter6 diffuse, assuming Rayleigh sky at 45 deg zenith
    angle(diffuse_correction_filter6)
  • Cosine correction of filter5 diffuse, assuming Rayleigh sky at 45 deg zenith
    angle(diffuse_correction_filter5)
  • Cosine correction of filter4 diffuse, assuming Rayleigh sky at 45 deg zenith
    angle(diffuse_correction_filter4)
  • Nominal calibration factor, applied to filter6 data(nominal_calibration_factor_filter6)
  • Nominal calibration factor, applied to filter5 data(nominal_calibration_factor_filter5)
  • Nominal calibration factor, applied to filter4 data(nominal_calibration_factor_filter4)
  • Nominal calibration factor, applied to filter3 data(nominal_calibration_factor_filter3)
  • Nominal calibration factor, applied to filter2 data(nominal_calibration_factor_filter2)
  • Nominal calibration factor, applied to filter1 data(nominal_calibration_factor_filter1)
  • Diffuse Hemispheric Broadband Irradiance, offset corrected(diffuse_hemisp_broadband)
  • cosine correction, south to north, broadband channel(cosine_correction_sn_broadband)
  • Direct normal narrowband irradiance, filter 6, offset corrected(direct_normal_narrowband_filter6)
  • Narrowband Direct Normal Irradiance, Filter 5(direct_normal_narrowband_filter5)
  • Direct normal narrowband irradiance, filter 2, offset corrected(direct_normal_narrowband_filter2)
  • Narrowband Direct Normal Irradiance, Filter 1(direct_normal_narrowband_filter1)
  • Direct normal narrowband irradiance, filter 4, offset corrected(direct_normal_narrowband_filter4)
  • Narrowband Direct Normal Irradiance, Filter 3, cosine corrected(direct_normal_narrowband_filter3)
  • Solar zenith angle(solar_zenith_angle)
  • Offset subtracted from hemispheric and diffuse broadband data(offset_broadband)
  • Direct Normal Broadband Irradiance, cosine corrected, broadband scale applied(direct_normal_broadband)
  • Detector temperature(head_temp)
  • Ratio of direct_normal_filter1 to diffuse_hemisp_filter1(direct_diffuse_ratio_filter1)
  • Ratio of direct_normal_filter2 to diffuse_hemisp_filter2(direct_diffuse_ratio_filter2)
  • Ratio of direct_normal_narrowband_filter3 to diffuse_hemisp_narrowband_filter3(direct_diffuse_ratio_filter3)
  • Ratio of direct_normal_filter4 to diffuse_hemisp_filter4(direct_diffuse_ratio_filter4)
  • Ratio of direct_normal_filter5 to diffuse_hemisp_filter5(direct_diffuse_ratio_filter5)
  • Ratio of direct_normal_narrowband_filter6 to diffuse_hemisp_narrowband_filter6(direct_diffuse_ratio_filter6)
  • Azimuth angle(azimuth_angle)
  • Alltime hemispheric broadband irradiance(alltime_hemisp_broadband)
  • Alltime narrowband hemispheric irradiance, filter 5(alltime_hemisp_narrowband_filter5)
  • Alltime Narrowband Hemispheric Irradiance, Filter 6(alltime_hemisp_narrowband_filter6)
  • Alltime Narrowband Hemispheric Irradiance, Filter 3(alltime_hemisp_narrowband_filter3)
  • Alltime Narrowband Hemispheric Irradiance, Filter 4(alltime_hemisp_narrowband_filter4)
  • Alltime narrowband hemispheric irradiance, filter 1(alltime_hemisp_narrowband_filter1)
  • Alltime narrowband hemispheric irradiance, filter 2(alltime_hemisp_narrowband_filter2)
  • Hemispheric broadband irradiance(hemisp_broadband)
  • Narrowband Direct Horizontal Irradiance, Filter 6, cosine corrected(direct_horizontal_narrowband_filter6)
  • Nominal calibration factor, applied to broadband data(nominal_calibration_factor_broadband)
  • Second detector temperature(head_temp2)
  • Direct horizontal narrowband irradiance, filter 1(direct_horizontal_narrowband_filter1)
  • Narrowband Direct Horizontal Irradiance, Filter 4, cosine corrected(direct_horizontal_narrowband_filter4)
  • Narrowband Direct Horizontal Irradiance, Filter 5, cosine corrected(direct_horizontal_narrowband_filter5)
  • Narrowband Direct Horizontal Irradiance, Filter 2, cosine corrected(direct_horizontal_narrowband_filter2)
  • Direct Horizontal Narrowband Irradiance, Filter 3(direct_horizontal_narrowband_filter3)
  • cosine correction, south to north, filter1(cosine_correction_sn_filter1)
  • Cosine correction, south to north, filter2(cosine_correction_sn_filter2)
  • Cosine correction, south to north, filter3(cosine_correction_sn_filter3)
  • Cosine correction, south to north, filter4(cosine_correction_sn_filter4)
  • cosine correction, south to north, filter5(cosine_correction_sn_filter5)
  • cosine correction, south to north, filter6(cosine_correction_sn_filter6)
  • Ratio of direct_normal_broadband to diffuse_hemisp_broadband(direct_diffuse_ratio_broadband)
  • Direct Horizontal Broadband Irradiance(direct_horizontal_broadband)
  • Cosine correction applied to direct_horizontal_broadband(computed_cosine_correction_broadband)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 1, offset corrected(diffuse_hemisp_narrowband_filter1)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 2, offset corrected(diffuse_hemisp_narrowband_filter2)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 3(diffuse_hemisp_narrowband_filter3)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 4(diffuse_hemisp_narrowband_filter4)
  • Narrowband diffuse hemispheric irradiance, filter 5, offset and cosine corrected(diffuse_hemisp_narrowband_filter5)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 6, offset corrected(diffuse_hemisp_narrowband_filter6)
more
sgpmfrsrE32.a0:
  • Diffuse Narrowband Hemispheric Irradiance, Filter 1, offset corrected(diffuse_hemisp_narrowband_filter1)
  • Narrowband diffuse hemispheric irradiance, filter 5, offset and cosine corrected(diffuse_hemisp_narrowband_filter5)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 4(diffuse_hemisp_narrowband_filter4)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 3(diffuse_hemisp_narrowband_filter3)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 2, offset corrected(diffuse_hemisp_narrowband_filter2)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 6, offset corrected(diffuse_hemisp_narrowband_filter6)
  • Hemispheric broadband irradiance(hemisp_broadband)
  • Second detector temperature(head_temp2)
  • Diffuse narrowband hemispheric irradiance, filter 3(diffuse_hemisp_narrowband_filter3_raw)
  • Narrowband hemispheric irradiance, filter 5(hemisp_narrowband_filter5_raw)
  • Narrowband Direct Horizontal Irradiance, Filter 5, cosine corrected(direct_horizontal_narrowband_filter5)
  • Narrowband Direct Horizontal Irradiance, Filter 6, cosine corrected(direct_horizontal_narrowband_filter6)
  • Direct Horizontal Narrowband Irradiance, Filter 3(direct_horizontal_narrowband_filter3)
  • Narrowband Direct Horizontal Irradiance, Filter 4, cosine corrected(direct_horizontal_narrowband_filter4)
  • Direct horizontal narrowband irradiance, filter 1(direct_horizontal_narrowband_filter1)
  • Narrowband Direct Horizontal Irradiance, Filter 2, cosine corrected(direct_horizontal_narrowband_filter2)
  • Narrowband hemispheric irradiance, filter 2(hemisp_narrowband_filter2_raw)
  • Detector temperature(head_temp)
  • Direct Horizontal Broadband Irradiance(direct_horizontal_broadband)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 5(diffuse_hemisp_narrowband_filter5_raw)
  • Offset subtracted from upwelling hemispheric filter2 data(offset_filter2)
  • Offset subtracted from hemispheric filter1 data(offset_filter1)
  • Offset subtracted from direct normal filter4 data(offset_filter4)
  • Offset subtracted from direct normal filter3 data(offset_filter3)
  • Offset subtracted from hemispheric and diffuse filter6 data(offset_filter6)
  • Offset subtracted from upwelling hemispheric filter5 data(offset_filter5)
  • Offset subtracted from hemispheric and diffuse broadband data(offset_broadband)
  • Diffuse Hemispheric Broadband Irradiance, offset corrected(diffuse_hemisp_broadband)
  • Alltime hemispheric broadband irradiance(alltime_hemisp_broadband)
  • Narrowband hemispheric irradiance, filter 4(hemisp_narrowband_filter4_raw)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 2(diffuse_hemisp_narrowband_filter2_raw)
  • Hemispheric broadband irradiance(hemisp_broadband_raw)
  • Data logger supply voltage(logger_volt)
  • Narrowband hemispheric irradiance, filter 1(hemisp_narrowband_filter1_raw)
  • Diffuse Hemispheric Broadband Irradiance(diffuse_hemisp_broadband_raw)
  • Diffuse narrowband hemispheric irradiance, filter 6(diffuse_hemisp_narrowband_filter6_raw)
  • Diffuse narrowband hemispheric irradiance, filter 4(diffuse_hemisp_narrowband_filter4_raw)
  • Data Logger Temperature(logger_temp)
  • Narrowband Hemispheric Irradiance, Filter 6(hemisp_narrowband_filter6_raw)
  • Alltime Narrowband Hemispheric Irradiance, Filter 3(alltime_hemisp_narrowband_filter3)
  • Alltime narrowband hemispheric irradiance, filter 2(alltime_hemisp_narrowband_filter2)
  • Alltime narrowband hemispheric irradiance, filter 5(alltime_hemisp_narrowband_filter5)
  • Alltime Narrowband Hemispheric Irradiance, Filter 4(alltime_hemisp_narrowband_filter4)
  • Alltime narrowband hemispheric irradiance, filter 1(alltime_hemisp_narrowband_filter1)
  • Alltime Narrowband Hemispheric Irradiance, Filter 6(alltime_hemisp_narrowband_filter6)
  • Narrowband Hemispheric Irradiance, Filter 1, offset corrected(hemisp_narrowband_filter1)
  • Narrowband Hemispheric Irradiance, Filter 2(hemisp_narrowband_filter2)
  • Narrowband hemispheric irradiance, filter 3, offset and cosine corrected(hemisp_narrowband_filter3)
  • Narrowband hemispheric irradiance, filter 4, offset and cosine corrected(hemisp_narrowband_filter4)
  • Narrowband Hemispheric Irradiance, Filter 5, offset corrected(hemisp_narrowband_filter5)
  • Narrowband hemispheric irradiance, filter 6, nominal wavelength is 935 nm(hemisp_narrowband_filter6)
  • Narrowband Hemispheric Irradiance, Filter 3(hemisp_narrowband_filter3_raw)
  • Diffuse narrowband hemispheric irradiance, filter 1(diffuse_hemisp_narrowband_filter1_raw)
more
sgpsebsE38.b1:
  • Change in energy storage 1, 0-5 cm soil layer(energy_storage_change_1)
  • Change in energy storage 3, 0-5 cm soil layer(energy_storage_change_3)
  • Change in energy storage 2, 0-5 cm soil layer(energy_storage_change_2)
  • Battery voltage(battery_voltage)
  • Wetness, rain detector(wetness)
  • cloud narrowband albedo(albedo)
  • Sky longwave irradiance(down_long)
  • Soil heat flow 1(soil_heat_flow_1)
  • Soil heat flow 3(soil_heat_flow_3)
  • Soil heat flow 2(soil_heat_flow_2)
  • Surface longwave irradiance(up_long)
  • Soil moisture 3, gravimetric(soil_moisture_3)
  • Soil moisture 1, gravimetric(soil_moisture_1)
  • Soil moisture 2, gravimetric(soil_moisture_2)
  • Soil heat flow 1, corrected for soil moisture(corr_soil_heat_flow_1)
  • Soil heat flow 2, corrected for soil moisture(corr_soil_heat_flow_2)
  • Soil heat flow 3, corrected for soil moisture(corr_soil_heat_flow_3)
  • Surface energy balance(surface_energy_balance)
  • Surface soil heat flux, average of fluxes 1-5(surface_soil_heat_flux_avg)
  • Soil temperature mean 3(soil_temp_3)
  • Soil temperature 2(soil_temp_2)
  • Soil temperature 1(soil_temp_1)
  • Net radiometer temperature(temp_net_radiometer)
  • Down-welling unshaded pyranometer voltage(down_short_hemisp)
  • 25 meter Upwelling Shortwave Hemispheric Irradiance, Pyranometer(up_short_hemisp)
  • Surface soil heat flux 2(surface_soil_heat_flux_2)
  • Surface soil heat flux 1(surface_soil_heat_flux_1)
  • Surface soil heat flux 3(surface_soil_heat_flux_3)
  • Net radiation(net radiation)
  • Soil heat capacity 2(soil_heat_capacity_2)
  • Soil heat capacity 3(soil_heat_capacity_3)
  • Soil heat capacity 1(soil_heat_capacity_1)
more
sgpxsaprppiI6.00:
  • Signal quality index(sig_qual_index)
  • Unfiltered reflectivity(reflectivity_unf)
  • Specific differential phase(diff_phase)
  • Attenuation corrected differential reflectivity(diff_reflectivity_corr)
  • Lag-0 co-polar correlation coefficient, clutter filtered(copol_coeff)
  • Differential reflectivity, clutter filtered(diff_reflectivity)
  • Doppler spectral width, clutter filtered(doppler_spectral_width)
  • Mean doppler velocity(mean_doppler_velocity)
  • reflectivity(reflectivity)
  • Attenuation corrected reflectivity(reflectivity_corr)
  • Differential propagation phase shift(dp_phase_shift)
  • Range gate(gate)
more
sgpmetE13.b1:
  • Wind direction vector mean(wdir_vec_mean)
  • PWD 15 minute present weather code(pwd_pw_code_15min)
  • Relative humidity observed by the Raman lidar(rh_mean)
  • PWD instantaneous present weather code(pwd_pw_code_inst)
  • Air temperature, standard deviation(temp_std)
  • TBRG precipitation total(tbrg_precip_total)
  • Wind speed arithmetic mean(wspd_arith_mean)
  • Data Logger Temperature(logger_temp)
  • PWD alarm(pwd_err_code)
  • PWD 1 hour present weather code(pwd_pw_code_1hr)
  • Wind direction vector mean standard deviation(wdir_vec_std)
  • Cumulative snow(pwd_cumul_snow)
  • PWD 1 minute mean precipitation rate(pwd_precip_rate_mean_1min)
  • TBRG precipitation total, corrected(tbrg_precip_total_corr)
  • Vapor pressure mean, calculated(vapor_pressure_mean)
  • Standard deviation in logger enclosure relative humidity(rh_std)
  • PWD cumulative liquid precipitation(pwd_cumul_rain)
  • Atmospheric pressure(atmos_pressure)
  • Wind speed vector mean(wspd_vec_mean)
  • Vapor pressure standard deviation(vapor_pressure_std)
  • PWD 1 minute mean visibility(pwd_mean_vis_1min)
  • Temperature mean(temp_mean)
  • PWD 10 minute mean visibility(pwd_mean_vis_10min)
  • Data logger supply voltage(logger_volt)
more
sgp15ebbrE34.b1:
  • Left air temperature(temp_air_left)
  • Right T/RH sensor temperature (resistance ratio)(temp_trh_right_rr)
  • Soil temperature 4 (resistance ratio)(soil_temp_4_rr)
  • Soil moisture 3 (resistance ratio)(soil_moisture_3_rr)
  • Soil heat flow 4 (mV)(soil_heat_flow_4_mv)
  • Soil moisture 4 (resistance ratio)(soil_moisture_4_rr)
  • Soil temperature 5 (resistance ratio)(soil_temp_5_rr)
  • Soil moisture 4 (resistance)(soil_moisture_4_r)
  • Soil heat flow 3 (mV)(soil_heat_flow_3_mv)
  • Atmospheric pressure (mV)(atmos_pressure_mv)
  • Soil moisture 3 (resistance)(soil_moisture_3_r)
  • Soil moisture 2 (resistance ratio)(soil_moisture_2_rr)
  • Soil moisture 5 (resistance)(soil_moisture_5_r)
  • Right air temperature(temp_air_right)
  • Reference temperature in enclosure (resistance ratio)(temp_reference_rr)
  • Right relative humidity (mV)(rh_right_mv)
  • Soil heat flow 2 (mV)(soil_heat_flow_2_mv)
  • Battery voltage(battery_voltage)
  • Soil temperature 1 (resistance ratio)(soil_temp_1_rr)
  • Net radiation (mV)(net_radiation_mv)
  • Soil heat flow 1 (mV)(soil_heat_flow_1_mv)
  • Left T/RH sensor temperature (resistance ratio)(temp_trh_left_rr)
  • Soil moisture 2 (resistance)(soil_moisture_2_r)
  • Soil temperature 2 (resistance ratio)(soil_temp_2_rr)
  • Soil moisture 1 (resistance ratio)(soil_moisture_1_rr)
  • Soil moisture 1 (resistance)(soil_moisture_1_r)
  • Left relative humidity (mV)(rh_left_mv)
  • Soil moisture 5 (resistance ratio)(soil_moisture_5_rr)
  • Wind direction vector mean (mV)(wdir_vec_mean_mv)
  • AEM position indicator(home_signal)
  • Soil heat flow 5 (mV)(soil_heat_flow_5_mv)
  • Wind speed arithmetic mean(wspd_arith_mean)
  • Soil temperature 3 (resistance ratio)(soil_temp_3_rr)
more
sgpmfrsrlangleyE37.c1:
  • error in final linear fit for the Direct Narrowband Filter1(barnard_error_fit_filter1)
  • error in final linear fit for the Direct Narrowband Filter2(barnard_error_fit_filter2)
  • error in final linear fit for the Direct Narrowband Filter5(barnard_error_fit_filter5)
  • error in final linear fit for the Direct Narrowband Filter6(barnard_error_fit_filter6)
  • error in final linear fit for the Direct Narrowband Filter3(barnard_error_fit_filter3)
  • error in final linear fit for the Direct Narrowband Filter4(barnard_error_fit_filter4)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter4(michalsky_good_fraction_filter4)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter5(michalsky_good_fraction_filter5)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter6(michalsky_good_fraction_filter6)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter1(michalsky_good_fraction_filter1)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter2(michalsky_good_fraction_filter2)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter3(michalsky_good_fraction_filter3)
  • Langley regression Io, adjusted to 1AU, Barnard, Direct BroadBand(barnard_solar_constant_sdist_broadband)
  • rejection flag for Direct Broadband(michalsky_badflag_broadband)
  • error in optical depth (slope) of final linear fit for the Direct Broadband(barnard_error_slope_broadband)
  • solar constant corrected for solar distance for the Direct Narrowband Filter1(barnard_solar_constant_sdist_filter1)
  • solar constant corrected for solar distance for the Direct Narrowband Filter2(barnard_solar_constant_sdist_filter2)
  • solar constant corrected for solar distance for the Direct Narrowband Filter3(barnard_solar_constant_sdist_filter3)
  • Langley regression Io, adjusted to 1AU, Barnard, Direct Narrowband Filter4(barnard_solar_constant_sdist_filter4)
  • solar constant corrected for solar distance for the Direct Narrowband Filter5(barnard_solar_constant_sdist_filter5)
  • solar constant corrected for solar distance for the Direct Narrowband Filter6(barnard_solar_constant_sdist_filter6)
  • percentage of initial points used in final linear fit for the Direct Broadband(michalsky_good_fraction_broadband)
  • Michalsky computed sun to earth distance(michalsky_sun_earth_distance)
  • number of points used in final linear fit for the Direct Narrowband Filter2(michalsky_number_points_filter2)
  • number of points used in final linear fit for the Direct Narrowband Filter1(michalsky_number_points_filter1)
  • number of points used in final linear fit for the Direct Narrowband Filter6(michalsky_number_points_filter6)
  • number of points used in final linear fit for the Direct Narrowband Filter5(michalsky_number_points_filter5)
  • number of points used in final linear fit for the Direct Narrowband Filter4(michalsky_number_points_filter4)
  • number of points used in final linear fit for the Direct Narrowband Filter3(michalsky_number_points_filter3)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter1(barnard_good_fraction_filter1)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter2(barnard_good_fraction_filter2)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter3(barnard_good_fraction_filter3)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter4(barnard_good_fraction_filter4)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter5(barnard_good_fraction_filter5)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter6(barnard_good_fraction_filter6)
  • solar constant corrected for solar distance for the Direct Narrowband Filter6(michalsky_solar_constant_sdist_filter6)
  • solar constant corrected for solar distance for the Direct Narrowband Filter2(michalsky_solar_constant_sdist_filter2)
  • solar constant corrected for solar distance for the Direct Narrowband Filter3(michalsky_solar_constant_sdist_filter3)
  • solar constant corrected for solar distance for the Direct Narrowband Filter4(michalsky_solar_constant_sdist_filter4)
  • solar constant corrected for solar distance for the Direct Narrowband Filter5(michalsky_solar_constant_sdist_filter5)
  • solar constant corrected for solar distance for the Direct Narrowband Filter1(michalsky_solar_constant_sdist_filter1)
  • optical depth for the Direct BroadBand(barnard_optical_depth_broadband)
  • standard deviation around regression line for the Direct BroadBand(michalsky_standard_deviation_broadband)
  • rejection flag for Direct Narrowband Filter5(barnard_badflag_filter5)
  • rejection flag for Direct Narrowband Filter4(barnard_badflag_filter4)
  • rejection flag for Direct Narrowband Filter6(barnard_badflag_filter6)
  • rejection flag for Direct Narrowband Filter1(barnard_badflag_filter1)
  • rejection flag for Direct Narrowband Filter3(barnard_badflag_filter3)
  • rejection flag for Direct Narrowband Filter2(barnard_badflag_filter2)
  • solar constant for the Direct Narrowband Filter1(michalsky_solar_constant_filter1)
  • solar constant for the Direct Narrowband Filter3(michalsky_solar_constant_filter3)
  • Langley regression Io, Michalsky, Direct Narrowband Filter2(michalsky_solar_constant_filter2)
  • Langley regression Io, Michalsky, Direct Narrowband Filter5(michalsky_solar_constant_filter5)
  • Langley regression Io, Michalsky, Direct Narrowband Filter4(michalsky_solar_constant_filter4)
  • solar constant for the Direct Narrowband Filter6(michalsky_solar_constant_filter6)
  • solar constant corrected for solar distance for the Direct Broadband(michalsky_solar_constant_sdist_broadband)
  • Langley regression Io, Michalsky, Direct BroadBand(michalsky_solar_constant_broadband)
  • optical depth for the Direct Narrowband Filter6(barnard_optical_depth_filter6)
  • optical depth for the Direct Narrowband Filter5(barnard_optical_depth_filter5)
  • error in final linear fit for the Direct BroadBand(barnard_error_fit_broadband)
  • optical depth for the Direct Narrowband Filter2(barnard_optical_depth_filter2)
  • optical depth for the Direct Narrowband Filter1(barnard_optical_depth_filter1)
  • optical depth for the Direct Narrowband Filter4(barnard_optical_depth_filter4)
  • optical depth for the Direct Narrowband Filter3(barnard_optical_depth_filter3)
  • Barnard computed sun to earth distance(barnard_sun_earth_distance)
  • rejection flag for Direct Narrowband Filter2(michalsky_badflag_filter2)
  • rejection flag for Direct Narrowband Filter1(michalsky_badflag_filter1)
  • rejection flag for Direct Narrowband Filter4(michalsky_badflag_filter4)
  • rejection flag for Direct Narrowband Filter3(michalsky_badflag_filter3)
  • rejection flag for Direct Narrowband Filter6(michalsky_badflag_filter6)
  • rejection flag for Direct Narrowband Filter5(michalsky_badflag_filter5)
  • error in optical depth (slope) of final linear fit for the Direct Narrowband
    Filter5(barnard_error_slope_filter5)
  • error in optical depth (slope) of final linear fit for the Direct Narrowband
    Filter6(barnard_error_slope_filter6)
  • error in optical depth (slope) of final linear fit for the Direct Narrowband
    Filter3(barnard_error_slope_filter3)
  • error in optical depth (slope) of final linear fit for the Direct Narrowband
    Filter4(barnard_error_slope_filter4)
  • error in optical depth (slope) of final linear fit for the Direct Narrowband
    Filter1(barnard_error_slope_filter1)
  • error in optical depth (slope) of final linear fit for the Direct Narrowband
    Filter2(barnard_error_slope_filter2)
  • number of points used in final linear fit for the Direct Broadband(barnard_number_points_broadband)
  • optical depth for the Direct BroadBand(michalsky_optical_depth_broadband)
  • standard deviation around regression line for the Direct Narrowband Filter1(michalsky_standard_deviation_filter1)
  • standard deviation around regression line for the Direct Narrowband Filter2(michalsky_standard_deviation_filter2)
  • standard deviation around regression line for the Direct Narrowband Filter5(michalsky_standard_deviation_filter5)
  • standard deviation around regression line for the Direct Narrowband Filter6(michalsky_standard_deviation_filter6)
  • standard deviation around regression line for the Direct Narrowband Filter3(michalsky_standard_deviation_filter3)
  • standard deviation around regression line for the Direct Narrowband Filter4(michalsky_standard_deviation_filter4)
  • number of points used in final linear fit for the Direct Narrowband Filter4(barnard_number_points_filter4)
  • number of points used in final linear fit for the Direct Narrowband Filter5(barnard_number_points_filter5)
  • number of points used in final linear fit for the Direct Narrowband Filter6(barnard_number_points_filter6)
  • number of points used in final linear fit for the Direct Narrowband Filter1(barnard_number_points_filter1)
  • number of points used in final linear fit for the Direct Narrowband Filter2(barnard_number_points_filter2)
  • number of points used in final linear fit for the Direct Narrowband Filter3(barnard_number_points_filter3)
  • percentage of initial points used in final linear fit for the Direct Broadband(barnard_good_fraction_broadband)
  • rejection flag for Direct Broadband(barnard_badflag_broadband)
  • number of points used in final linear fit for the Direct Broadband(michalsky_number_points_broadband)
  • optical depth for the Direct Narrowband Filter1(michalsky_optical_depth_filter1)
  • optical depth for the Direct Narrowband Filter2(michalsky_optical_depth_filter2)
  • optical depth for the Direct Narrowband Filter3(michalsky_optical_depth_filter3)
  • optical depth for the Direct Narrowband Filter4(michalsky_optical_depth_filter4)
  • optical depth for the Direct Narrowband Filter5(michalsky_optical_depth_filter5)
  • optical depth for the Direct Narrowband Filter6(michalsky_optical_depth_filter6)
more
sgp915rwpprecipmomI9.a0:
  • Pulse repetition frequency(prf)
  • Height of Center of First Range Gate(rgf)
  • Height of center of last range gate(rgl)
  • Range gate spacing(rgs)
  • Pulse length(plen)
  • Signal-to-noise-ratio(snr)
  • 1000 * log10(noise signal level)(noise)
  • Mean atmospheric vertical velocity(mdf)
  • Rx Bandwidth Switch Code(bswitch)
  • Height Index(range_gate)
  • Number of Valid Heights(nheight)
  • Interpulse period(ipp)
  • Vertical FFT Bandwidth(vband)
  • Array of heights for each sample time(height_t)
  • Sample Rate(sampr)
  • Number of Coherent Samples/Spectral Point(ncoh)
  • Time Domain Integration Time(tditime)
  • Delay Time to 1st Gate(dly)
  • Number of Individual Spectra/Average Spectrum(nspc)
  • Number of pulse code bits(pcbits)
  • Radial Velocity Spectral Resolution(vsr)
  • Ave Time per Average Spectra. Also known as dwell.(spcavetime)
  • Individual Spectrum Integration Time(sitime)
  • Spectral Width: vert velocity(specw)
more
sgpmwrlosE14.b1:
  • Total water vapor along LOS path(vap)
  • Noise injection temp at 31.4 GHz adjusted to tkbb(tnd31)
  • Noise injection temp at 23.8 GHz adjusted to tkbb(tnd23)
  • Mean 31.4 GHz sky brightness temperature(tbsky31)
  • Temperature correction coefficient at 31.4 GHz(tc31)
  • Temperature correction coefficient at 23.8 GHz(tc23)
  • Mean 23.8 GHz sky brightness temperature(tbsky23)
  • 31.4 GHz blackbody(bb31)
  • 23.8 GHz Blackbody signal(bb23)
  • Water on Teflon window (1=WET, 0=DRY)(wet_window)
  • 31.4 GHz blac2body+noise injection signal(bbn31)
  • 23.8 GHz blackbody+noise injection signal(bbn23)
  • Sky Infra-Red Temperature(sky_ir_temp)
  • Ambient temperature(tkair)
  • Noise injection temp at nominal temperature at 31.4 GHz(tnd_nom31)
  • Averaged total liquid water along LOS path(liq)
  • 23.8 GHz sky signal(sky23)
  • 31.4 GHz sky signal(sky31)
  • Noise injection temp at nominal temperature at 23.8 GHz(tnd_nom23)
  • (tknd)
  • Blackbody kinetic temperature(tkbb)
  • Mixer kinetic (physical) temperature(tkxc)
more
sgp5ebbrE12.b1:
  • Wind speed arithmetic mean(wspd_arith_mean)
  • Wind direction vector mean standard deviation(wdir_vec_std)
  • AEM position indicator(home_signal)
  • Top air temperature(temp_air_top)
  • Top relative humidity (fractional)(rh_top_fraction)
  • Top T/RH sensor temperature(temp_trh_top)
  • Bottom T/RH sensor temperature(temp_trh_bottom)
  • Bottom vapor pressure(vapor_pressure_bottom)
  • Wind direction vector mean(wdir_vec_mean)
  • Atmospheric pressure(atmos_pressure)
  • Reference temperature in enclosure(temp_reference)
  • Bottom air temperature(temp_air_bottom)
  • Net radiation(net_radiation)
  • Top vapor pressure(vapor_pressure_top)
  • Bottom relative humidity (fractional)(rh_bottom_fraction)
  • Wind speed vector mean(wspd_vec_mean)
more
sgpsirs20sE21.a0:
  • Instantaneous direct normal shortwave irradiance, pyrheliometer thermopile
    voltage(inst_direct_normal)
  • Instantaneous downwelling pyrgeometer dome thermistor resistance, shaded
    pyrgeometer(inst_down_long_shaded_dome_resist)
  • Instantaneous Downwelling Hemispheric Shortwave, Pyranometer Thermopile Voltage(inst_global)
  • Instantaneous uncorrected downwelling shortwave diffuse, shaded pyranometer
    thermopile voltage(inst_diffuse)
  • Instantaneous Downwelling Pyrgeometer Case Thermistor Resistance, Shaded
    Pyrgeometer(inst_down_long_shaded_case_resist)
  • Instantaneous Upwelling Pyrgeometer Dome Thermistor Resistance Pyrgeometer(inst_up_long_dome_resist)
  • Instantaneous Upwelling Pyrgeometer Case Thermistor Resistance, Pyrgeometer(inst_up_long_case_resist)
  • Instantaneous downwelling pyrgeometer thermopile voltage, shaded pyrgeometer(inst_down_long_hemisp_shaded_tp)
  • Instantaneous Upwelling Pyrgeometer Thermopile Pyrgeometer(inst_up_long_hemisp_tp)
  • Instantaneous Upwelling Shortwave Hemispheric Irradiance, Pyranometer(inst_up_short_hemisp)
more
sgpsirs20sE15.a0:
  • Instantaneous Upwelling Pyrgeometer Case Thermistor Resistance, Pyrgeometer(inst_up_long_case_resist)
  • Instantaneous downwelling pyrgeometer dome thermistor resistance, shaded
    pyrgeometer(inst_down_long_shaded_dome_resist)
  • Instantaneous Upwelling Pyrgeometer Thermopile Pyrgeometer(inst_up_long_hemisp_tp)
  • Instantaneous Upwelling Pyrgeometer Dome Thermistor Resistance Pyrgeometer(inst_up_long_dome_resist)
  • Instantaneous downwelling pyrgeometer thermopile voltage, shaded pyrgeometer(inst_down_long_hemisp_shaded_tp)
  • Instantaneous Downwelling Pyrgeometer Case Thermistor Resistance, Shaded
    Pyrgeometer(inst_down_long_shaded_case_resist)
  • Instantaneous direct normal shortwave irradiance, pyrheliometer thermopile
    voltage(inst_direct_normal)
  • Instantaneous Upwelling Shortwave Hemispheric Irradiance, Pyranometer(inst_up_short_hemisp)
  • Instantaneous Downwelling Hemispheric Shortwave, Pyranometer Thermopile Voltage(inst_global)
  • Instantaneous uncorrected downwelling shortwave diffuse, shaded pyranometer
    thermopile voltage(inst_diffuse)
more
sgpirtE35.b1:
  • Sky Infra Red Temperature Maxima(sky_ir_temp_max)
  • Sky Infra-Red Temperature Minima(sky_ir_temp_min)
  • Sky infrared temperature, standard deviation(sky_ir_temp_std)
  • Sky Infra-Red Temperature(sky_ir_temp)
  • Number of averaged samples(samples_in_average)
  • Internal Reference Infra Red Temperature(ref_ir_temp)
more
sgp15ebbrE15.b1:
  • Soil moisture 1 (resistance ratio)(soil_moisture_1_rr)
  • Soil moisture 2 (resistance)(soil_moisture_2_r)
  • Soil heat flow 5 (mV)(soil_heat_flow_5_mv)
  • Soil moisture 1 (resistance)(soil_moisture_1_r)
  • Reference temperature in enclosure (resistance ratio)(temp_reference_rr)
  • Soil temperature 3 (resistance ratio)(soil_temp_3_rr)
  • Soil heat flow 4 (mV)(soil_heat_flow_4_mv)
  • Soil moisture 4 (resistance)(soil_moisture_4_r)
  • Soil moisture 2 (resistance ratio)(soil_moisture_2_rr)
  • Battery voltage(battery_voltage)
  • Right air temperature(temp_air_right)
  • Soil moisture 3 (resistance)(soil_moisture_3_r)
  • Left air temperature(temp_air_left)
  • Soil temperature 4 (resistance ratio)(soil_temp_4_rr)
  • Soil moisture 5 (resistance)(soil_moisture_5_r)
  • Soil moisture 3 (resistance ratio)(soil_moisture_3_rr)
  • Right T/RH sensor temperature (resistance ratio)(temp_trh_right_rr)
  • AEM position indicator(home_signal)
  • Atmospheric pressure (mV)(atmos_pressure_mv)
  • Soil temperature 5 (resistance ratio)(soil_temp_5_rr)
  • Wind speed arithmetic mean(wspd_arith_mean)
  • Soil moisture 4 (resistance ratio)(soil_moisture_4_rr)
  • Net radiation (mV)(net_radiation_mv)
  • Soil heat flow 2 (mV)(soil_heat_flow_2_mv)
  • Soil heat flow 1 (mV)(soil_heat_flow_1_mv)
  • Left T/RH sensor temperature (resistance ratio)(temp_trh_left_rr)
  • Soil temperature 1 (resistance ratio)(soil_temp_1_rr)
  • Soil moisture 5 (resistance ratio)(soil_moisture_5_rr)
  • Right relative humidity (mV)(rh_right_mv)
  • Soil heat flow 3 (mV)(soil_heat_flow_3_mv)
  • Left relative humidity (mV)(rh_left_mv)
  • Soil temperature 2 (resistance ratio)(soil_temp_2_rr)
  • Wind direction vector mean (mV)(wdir_vec_mean_mv)
more
sgp5ebbrE35.b1:
  • Bottom relative humidity (fractional)(rh_bottom_fraction)
  • Reference temperature in enclosure(temp_reference)
  • Bottom vapor pressure(vapor_pressure_bottom)
  • Atmospheric pressure(atmos_pressure)
  • Top relative humidity (fractional)(rh_top_fraction)
  • Bottom T/RH sensor temperature(temp_trh_bottom)
  • Wind speed arithmetic mean(wspd_arith_mean)
  • Top air temperature(temp_air_top)
  • Top vapor pressure(vapor_pressure_top)
  • Wind direction vector mean(wdir_vec_mean)
  • Wind speed vector mean(wspd_vec_mean)
  • Net radiation(net_radiation)
  • Bottom air temperature(temp_air_bottom)
  • Top T/RH sensor temperature(temp_trh_top)
  • AEM position indicator(home_signal)
  • Wind direction vector mean standard deviation(wdir_vec_std)
more
sgp30ebbrE15.b1:
  • Wind speed vector mean(wspd_vec_mean)
  • Atmospheric pressure(atmos_pressure)
  • Surface sensible heat flux(sensible_heat_flux)
  • Change in energy storage 1, 0-5 cm soil layer(energy_storage_change_1)
  • Change in energy storage 3, 0-5 cm soil layer(energy_storage_change_3)
  • Change in energy storage 2, 0-5 cm soil layer(energy_storage_change_2)
  • Change in energy storage 5, 0-5 cm soil layer(energy_storage_change_5)
  • Change in energy storage 4, 0-5 cm soil layer(energy_storage_change_4)
  • AEM position indicator 0 to 15 mins(home_signal_15)
  • AEM position indicator 15 to 30 mins(home_signal_30)
  • Top air temperature(temp_air_top)
  • Wind direction vector mean standard deviation(wdir_vec_std)
  • Top T/RH sensor temperature(temp_trh_top)
  • Bowen ratio(bowen_ratio)
  • Half hour averaged soil temperature 4(soil_temp_4)
  • Soil temperature mean 3(soil_temp_3)
  • Soil temperature 2(soil_temp_2)
  • Soil temperature 1(soil_temp_1)
  • Half hour averaged soil temperature 5(soil_temp_5)
  • Surface soil heat flux, average of fluxes 1-5(surface_soil_heat_flux_avg)
  • Soil heat flow 4, corrected for soil moisture(corr_soil_heat_flow_4)
  • Soil heat flow 3, corrected for soil moisture(corr_soil_heat_flow_3)
  • Soil heat flow 2, corrected for soil moisture(corr_soil_heat_flow_2)
  • Soil heat flow 1, corrected for soil moisture(corr_soil_heat_flow_1)
  • Soil heat flow 5, corrected for soil moisture(corr_soil_heat_flow_5)
  • Soil heat capacity 5(soil_heat_capacity_5)
  • Soil heat capacity 4(soil_heat_capacity_4)
  • Soil heat capacity 3(soil_heat_capacity_3)
  • Soil heat capacity 2(soil_heat_capacity_2)
  • Soil heat capacity 1(soil_heat_capacity_1)
  • Soil moisture 1, gravimetric(soil_moisture_1)
  • Soil moisture 2, gravimetric(soil_moisture_2)
  • Soil moisture 3, gravimetric(soil_moisture_3)
  • Soil moisture 4, gravimetric(soil_moisture_4)
  • Soil moisture 5, gravimetric(soil_moisture_5)
  • Soil heat flow 4(soil_heat_flow_4)
  • Soil heat flow 5(soil_heat_flow_5)
  • Soil heat flow 2(soil_heat_flow_2)
  • Soil heat flow 3(soil_heat_flow_3)
  • Soil heat flow 1(soil_heat_flow_1)
  • Wind speed arithmetic mean(wspd_arith_mean)
  • Bottom air temperature(temp_air_bottom)
  • Surface latent heat flux(latent_heat_flux)
  • Bottom vapor pressure(vapor_pressure_bottom)
  • Reference temperature in enclosure(temp_reference)
  • Bottom relative humidity (fractional)(rh_bottom_fraction)
  • Bottom T/RH sensor temperature(temp_trh_bottom)
  • Top relative humidity (fractional)(rh_top_fraction)
  • Top vapor pressure(vapor_pressure_top)
  • Net radiation(net_radiation)
  • Surface soil heat flux 5(surface_soil_heat_flux_5)
  • Surface soil heat flux 3(surface_soil_heat_flux_3)
  • Surface soil heat flux 4(surface_soil_heat_flux_4)
  • Surface soil heat flux 1(surface_soil_heat_flux_1)
  • Surface soil heat flux 2(surface_soil_heat_flux_2)
  • Wind direction vector mean(wdir_vec_mean)
more
sgpirtE9.b1:
  • Sky Infra-Red Temperature Minima(sky_ir_temp_min)
  • Sky Infra Red Temperature Maxima(sky_ir_temp_max)
  • Number of averaged samples(samples_in_average)
  • Internal Reference Infra Red Temperature(ref_ir_temp)
  • Sky infrared temperature, standard deviation(sky_ir_temp_std)
  • Sky Infra-Red Temperature(sky_ir_temp)
more
sgpdlcal1S01.a0:
  • Beam Elevation Angle(elevation)
  • Intensity (signal to noise ratio + 1)(intensity)
  • Radial velocity(radial_velocity)
  • Beam azimuth relative to Lidar home point(relative_azimuth)
  • Distance to the center of the corresponding range bin(range)
  • Attenuated backscatter(attenuated_backscatter)
more
sgpmetE35.b1:
  • TBRG precipitation total, corrected(tbrg_precip_total_corr)
  • Wind speed vector mean(wspd_vec_mean)
  • Atmospheric pressure(atmos_pressure)
  • TBRG precipitation total(tbrg_precip_total)
  • Temperature mean(temp_mean)
  • Vapor pressure mean, calculated(vapor_pressure_mean)
  • Wind direction vector mean(wdir_vec_mean)
  • Relative humidity observed by the Raman lidar(rh_mean)
  • Wind speed arithmetic mean(wspd_arith_mean)
  • Wind direction vector mean standard deviation(wdir_vec_std)
more
sgpsirs20sE34.a0:
  • Instantaneous direct normal shortwave irradiance, pyrheliometer thermopile
    voltage(inst_direct_normal)
  • Instantaneous Downwelling Hemispheric Shortwave, Pyranometer Thermopile Voltage(inst_global)
  • Instantaneous downwelling pyrgeometer dome thermistor resistance, shaded
    pyrgeometer(inst_down_long_shaded_dome_resist)
  • Instantaneous Downwelling Pyrgeometer Case Thermistor Resistance, Shaded
    Pyrgeometer(inst_down_long_shaded_case_resist)
  • Instantaneous Upwelling Pyrgeometer Thermopile Pyrgeometer(inst_up_long_hemisp_tp)
  • Instantaneous downwelling pyrgeometer thermopile voltage, shaded pyrgeometer(inst_down_long_hemisp_shaded_tp)
  • Instantaneous Upwelling Pyrgeometer Case Thermistor Resistance, Pyrgeometer(inst_up_long_case_resist)
  • Instantaneous Upwelling Pyrgeometer Dome Thermistor Resistance Pyrgeometer(inst_up_long_dome_resist)
  • Instantaneous uncorrected downwelling shortwave diffuse, shaded pyranometer
    thermopile voltage(inst_diffuse)
  • Instantaneous Upwelling Shortwave Hemispheric Irradiance, Pyranometer(inst_up_short_hemisp)
more
sgpmfrsrE32.b1:
  • Cosine correction of broadband diffuse, assuming Rayleigh sky at 45 degree
    zenith angle(diffuse_correction_broadband)
  • Alltime Narrowband Hemispheric Irradiance, Filter 6(alltime_hemisp_narrowband_filter6)
  • Normalized filter function data, filter 1, measured transmittance value obtained
    during bench calibrations(normalized_transmittance_filter1)
  • Normalized filter function data, filter 2, measured transmittance value obtained
    during bench calibrations(normalized_transmittance_filter2)
  • Normalized filter function data, filter 3, measured transmittance value obtained
    during bench calibrations(normalized_transmittance_filter3)
  • Normalized filter function data, filter 4, measured transmittance value obtained
    during bench calibrations(normalized_transmittance_filter4)
  • Alltime Narrowband Hemispheric Irradiance, Filter 3(alltime_hemisp_narrowband_filter3)
  • Alltime narrowband hemispheric irradiance, filter 2(alltime_hemisp_narrowband_filter2)
  • Alltime narrowband hemispheric irradiance, filter 5(alltime_hemisp_narrowband_filter5)
  • Alltime Narrowband Hemispheric Irradiance, Filter 4(alltime_hemisp_narrowband_filter4)
  • Alltime narrowband hemispheric irradiance, filter 1(alltime_hemisp_narrowband_filter1)
  • Normalized filter function data, filter 5, measured transmittance value obtained
    during bench calibrations(normalized_transmittance_filter5)
  • Normalized filter function data, filter 6, measured transmittance value obtained
    during bench calibrations(normalized_transmittance_filter6)
  • Air mass(airmass)
  • cosine correction, south to north, filter6(cosine_correction_sn_filter6)
  • Cosine correction, south to north, filter3(cosine_correction_sn_filter3)
  • Cosine correction, south to north, filter2(cosine_correction_sn_filter2)
  • cosine correction, south to north, filter5(cosine_correction_sn_filter5)
  • Cosine correction, south to north, filter4(cosine_correction_sn_filter4)
  • cosine correction, south to north, filter1(cosine_correction_sn_filter1)
  • Cosine correction of filter4 diffuse, assuming Rayleigh sky at 45 deg zenith
    angle(diffuse_correction_filter4)
  • Cosine correction of filter3 diffuse, assuming Rayleigh sky at 45 deg zenith
    angle(diffuse_correction_filter3)
  • Cosine correction of filter2 diffuse, assuming Rayleigh sky at 45 deg zenith
    angle(diffuse_correction_filter2)
  • Cosine correction of filter1 diffuse, assuming Rayleigh sky at 45 degree zenith
    angle(diffuse_correction_filter1)
  • Cosine correction of filter6 diffuse, assuming Rayleigh sky at 45 deg zenith
    angle(diffuse_correction_filter6)
  • Cosine correction of filter5 diffuse, assuming Rayleigh sky at 45 deg zenith
    angle(diffuse_correction_filter5)
  • cosine correction, west to east, filter2(cosine_correction_we_filter2)
  • Cosine correction, west to east, filter1(cosine_correction_we_filter1)
  • cosine correction, west to east, filter6(cosine_correction_we_filter6)
  • Cosine correction, west to east, filter5(cosine_correction_we_filter5)
  • Cosine correction, west to east, filter4(cosine_correction_we_filter4)
  • cosine correction, west to east, filter3(cosine_correction_we_filter3)
  • Second detector temperature(head_temp2)
  • Nominal calibration factor, applied to broadband data(nominal_calibration_factor_broadband)
  • Detector temperature(head_temp)
  • Direct Normal Broadband Irradiance, cosine corrected, broadband scale applied(direct_normal_broadband)
  • cosine correction, west to east, broadband channel(cosine_correction_we_broadband)
  • Cosine correction applied to direct_horizontal_broadband(computed_cosine_correction_broadband)
  • Elevation angle(elevation_angle)
  • Diffuse Hemispheric Broadband Irradiance, offset corrected(diffuse_hemisp_broadband)
  • Cosine correction applied to direct_horizontal_narrowband_filter2(computed_cosine_correction_filter2)
  • Cosine correction applied to direct_horizontal_narrowband_filter3(computed_cosine_correction_filter3)
  • Cosine correction applied to direct_horizontal_narrowband_filter4(computed_cosine_correction_filter4)
  • Cosine correction applied to direct_horizontal_filter5(computed_cosine_correction_filter5)
  • Cosine correction applied to direct_horizontal_filter1(computed_cosine_correction_filter1)
  • Cosine correction applied to direct_horizontal_filter6(computed_cosine_correction_filter6)
  • Direct horizontal narrowband irradiance, filter 1(direct_horizontal_narrowband_filter1)
  • Narrowband Direct Horizontal Irradiance, Filter 2, cosine corrected(direct_horizontal_narrowband_filter2)
  • Narrowband Direct Horizontal Irradiance, Filter 5, cosine corrected(direct_horizontal_narrowband_filter5)
  • Narrowband Direct Horizontal Irradiance, Filter 6, cosine corrected(direct_horizontal_narrowband_filter6)
  • Direct Horizontal Narrowband Irradiance, Filter 3(direct_horizontal_narrowband_filter3)
  • Narrowband Direct Horizontal Irradiance, Filter 4, cosine corrected(direct_horizontal_narrowband_filter4)
  • Data Logger Temperature(logger_temp)
  • Normalized filter function data, filter 2, wavelength value obtained during
    bench calibrations(wavelength_filter2)
  • Normalized filter function data, filter 1, wavelength value obtained during
    bench calibrations(wavelength_filter1)
  • Normalized filter function data, filter 4, wavelength value obtained during
    bench calibrations(wavelength_filter4)
  • Normalized filter function data, filter 3, wavelength value obtained during
    bench calibrations(wavelength_filter3)
  • Normalized filter function data, filter 6, wavelength value obtained during
    bench calibrations(wavelength_filter6)
  • Normalized filter function data, filter 5, wavelength value obtained during
    bench calibrations(wavelength_filter5)
  • Direct Horizontal Broadband Irradiance(direct_horizontal_broadband)
  • Nominal calibration factor, applied to filter3 data(nominal_calibration_factor_filter3)
  • Nominal calibration factor, applied to filter4 data(nominal_calibration_factor_filter4)
  • Nominal calibration factor, applied to filter1 data(nominal_calibration_factor_filter1)
  • Nominal calibration factor, applied to filter2 data(nominal_calibration_factor_filter2)
  • Nominal calibration factor, applied to filter5 data(nominal_calibration_factor_filter5)
  • Nominal calibration factor, applied to filter6 data(nominal_calibration_factor_filter6)
  • cosine correction, south to north, broadband channel(cosine_correction_sn_broadband)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 1, offset corrected(diffuse_hemisp_narrowband_filter1)
  • Narrowband diffuse hemispheric irradiance, filter 5, offset and cosine corrected(diffuse_hemisp_narrowband_filter5)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 4(diffuse_hemisp_narrowband_filter4)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 3(diffuse_hemisp_narrowband_filter3)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 2, offset corrected(diffuse_hemisp_narrowband_filter2)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 6, offset corrected(diffuse_hemisp_narrowband_filter6)
  • Solar zenith angle(solar_zenith_angle)
  • Offset subtracted from upwelling hemispheric filter2 data(offset_filter2)
  • Offset subtracted from hemispheric filter1 data(offset_filter1)
  • Offset subtracted from direct normal filter4 data(offset_filter4)
  • Offset subtracted from direct normal filter3 data(offset_filter3)
  • Offset subtracted from hemispheric and diffuse filter6 data(offset_filter6)
  • Offset subtracted from upwelling hemispheric filter5 data(offset_filter5)
  • Ratio of direct_normal_filter2 to diffuse_hemisp_filter2(direct_diffuse_ratio_filter2)
  • Ratio of direct_normal_narrowband_filter3 to diffuse_hemisp_narrowband_filter3(direct_diffuse_ratio_filter3)
  • Ratio of direct_normal_filter1 to diffuse_hemisp_filter1(direct_diffuse_ratio_filter1)
  • Ratio of direct_normal_narrowband_filter6 to diffuse_hemisp_narrowband_filter6(direct_diffuse_ratio_filter6)
  • Ratio of direct_normal_filter4 to diffuse_hemisp_filter4(direct_diffuse_ratio_filter4)
  • Ratio of direct_normal_filter5 to diffuse_hemisp_filter5(direct_diffuse_ratio_filter5)
  • Data logger supply voltage(logger_volt)
  • Azimuth angle(azimuth_angle)
  • Direct normal narrowband irradiance, filter 4, offset corrected(direct_normal_narrowband_filter4)
  • Narrowband Direct Normal Irradiance, Filter 5(direct_normal_narrowband_filter5)
  • Direct normal narrowband irradiance, filter 2, offset corrected(direct_normal_narrowband_filter2)
  • Narrowband Direct Normal Irradiance, Filter 3, cosine corrected(direct_normal_narrowband_filter3)
  • Narrowband Direct Normal Irradiance, Filter 1(direct_normal_narrowband_filter1)
  • Direct normal narrowband irradiance, filter 6, offset corrected(direct_normal_narrowband_filter6)
  • Offset subtracted from hemispheric and diffuse broadband data(offset_broadband)
  • Cosine solar zenith angle(cosine_solar_zenith_angle)
  • angle of incidence during cosine bench measurements(bench_angle)
  • Ratio of direct_normal_broadband to diffuse_hemisp_broadband(direct_diffuse_ratio_broadband)
  • Hemispheric broadband irradiance(hemisp_broadband)
  • Alltime hemispheric broadband irradiance(alltime_hemisp_broadband)
  • Narrowband hemispheric irradiance, filter 3, offset and cosine corrected(hemisp_narrowband_filter3)
  • Narrowband hemispheric irradiance, filter 4, offset and cosine corrected(hemisp_narrowband_filter4)
  • Narrowband Hemispheric Irradiance, Filter 1, offset corrected(hemisp_narrowband_filter1)
  • Narrowband Hemispheric Irradiance, Filter 2(hemisp_narrowband_filter2)
  • Narrowband Hemispheric Irradiance, Filter 5, offset corrected(hemisp_narrowband_filter5)
  • Narrowband hemispheric irradiance, filter 6, nominal wavelength is 935 nm(hemisp_narrowband_filter6)
more
sgpmfrsrE13.b1:
  • Nominal calibration factor, applied to broadband data(nominal_calibration_factor_broadband)
  • Solar zenith angle(solar_zenith_angle)
  • Normalized filter function data, filter 1, measured transmittance value obtained
    during bench calibrations(normalized_transmittance_filter1)
  • Normalized filter function data, filter 6, measured transmittance value obtained
    during bench calibrations(normalized_transmittance_filter6)
  • Normalized filter function data, filter 4, measured transmittance value obtained
    during bench calibrations(normalized_transmittance_filter4)
  • Normalized filter function data, filter 5, measured transmittance value obtained
    during bench calibrations(normalized_transmittance_filter5)
  • Normalized filter function data, filter 2, measured transmittance value obtained
    during bench calibrations(normalized_transmittance_filter2)
  • Normalized filter function data, filter 3, measured transmittance value obtained
    during bench calibrations(normalized_transmittance_filter3)
  • Narrowband Hemispheric Irradiance, Filter 1, offset corrected(hemisp_narrowband_filter1)
  • Narrowband hemispheric irradiance, filter 3, offset and cosine corrected(hemisp_narrowband_filter3)
  • Narrowband Hemispheric Irradiance, Filter 2(hemisp_narrowband_filter2)
  • Narrowband Hemispheric Irradiance, Filter 5, offset corrected(hemisp_narrowband_filter5)
  • Narrowband hemispheric irradiance, filter 4, offset and cosine corrected(hemisp_narrowband_filter4)
  • Narrowband hemispheric irradiance, filter 6, nominal wavelength is 935 nm(hemisp_narrowband_filter6)
  • Data logger supply voltage(logger_volt)
  • angle of incidence during cosine bench measurements(bench_angle)
  • Cosine correction applied to direct_horizontal_broadband(computed_cosine_correction_broadband)
  • Elevation angle(elevation_angle)
  • Cosine correction of filter1 diffuse, assuming Rayleigh sky at 45 degree zenith
    angle(diffuse_correction_filter1)
  • Cosine correction of filter2 diffuse, assuming Rayleigh sky at 45 deg zenith
    angle(diffuse_correction_filter2)
  • Cosine correction of filter3 diffuse, assuming Rayleigh sky at 45 deg zenith
    angle(diffuse_correction_filter3)
  • Cosine correction of filter4 diffuse, assuming Rayleigh sky at 45 deg zenith
    angle(diffuse_correction_filter4)
  • Cosine correction of filter5 diffuse, assuming Rayleigh sky at 45 deg zenith
    angle(diffuse_correction_filter5)
  • Cosine correction of filter6 diffuse, assuming Rayleigh sky at 45 deg zenith
    angle(diffuse_correction_filter6)
  • Narrowband Direct Horizontal Irradiance, Filter 6, cosine corrected(direct_horizontal_narrowband_filter6)
  • Narrowband Direct Horizontal Irradiance, Filter 5, cosine corrected(direct_horizontal_narrowband_filter5)
  • Narrowband Direct Horizontal Irradiance, Filter 4, cosine corrected(direct_horizontal_narrowband_filter4)
  • Direct Horizontal Narrowband Irradiance, Filter 3(direct_horizontal_narrowband_filter3)
  • Narrowband Direct Horizontal Irradiance, Filter 2, cosine corrected(direct_horizontal_narrowband_filter2)
  • Direct horizontal narrowband irradiance, filter 1(direct_horizontal_narrowband_filter1)
  • Cosine correction applied to direct_horizontal_narrowband_filter4(computed_cosine_correction_filter4)
  • Cosine correction applied to direct_horizontal_narrowband_filter3(computed_cosine_correction_filter3)
  • Cosine correction applied to direct_horizontal_filter6(computed_cosine_correction_filter6)
  • Cosine correction applied to direct_horizontal_filter5(computed_cosine_correction_filter5)
  • Cosine correction applied to direct_horizontal_narrowband_filter2(computed_cosine_correction_filter2)
  • Cosine correction applied to direct_horizontal_filter1(computed_cosine_correction_filter1)
  • cosine correction, west to east, broadband channel(cosine_correction_we_broadband)
  • Nominal calibration factor, applied to filter6 data(nominal_calibration_factor_filter6)
  • Nominal calibration factor, applied to filter5 data(nominal_calibration_factor_filter5)
  • Nominal calibration factor, applied to filter4 data(nominal_calibration_factor_filter4)
  • Nominal calibration factor, applied to filter3 data(nominal_calibration_factor_filter3)
  • Nominal calibration factor, applied to filter2 data(nominal_calibration_factor_filter2)
  • Nominal calibration factor, applied to filter1 data(nominal_calibration_factor_filter1)
  • Offset subtracted from upwelling hemispheric filter2 data(offset_filter2)
  • Offset subtracted from direct normal filter3 data(offset_filter3)
  • Offset subtracted from direct normal filter4 data(offset_filter4)
  • Offset subtracted from upwelling hemispheric filter5 data(offset_filter5)
  • Offset subtracted from hemispheric and diffuse filter6 data(offset_filter6)
  • Offset subtracted from hemispheric filter1 data(offset_filter1)
  • Alltime narrowband hemispheric irradiance, filter 5(alltime_hemisp_narrowband_filter5)
  • Alltime Narrowband Hemispheric Irradiance, Filter 6(alltime_hemisp_narrowband_filter6)
  • Alltime Narrowband Hemispheric Irradiance, Filter 3(alltime_hemisp_narrowband_filter3)
  • Alltime Narrowband Hemispheric Irradiance, Filter 4(alltime_hemisp_narrowband_filter4)
  • Alltime narrowband hemispheric irradiance, filter 1(alltime_hemisp_narrowband_filter1)
  • Alltime narrowband hemispheric irradiance, filter 2(alltime_hemisp_narrowband_filter2)
  • Ratio of direct_normal_broadband to diffuse_hemisp_broadband(direct_diffuse_ratio_broadband)
  • Cosine correction, south to north, filter4(cosine_correction_sn_filter4)
  • Cosine correction, south to north, filter3(cosine_correction_sn_filter3)
  • cosine correction, south to north, filter6(cosine_correction_sn_filter6)
  • cosine correction, south to north, filter5(cosine_correction_sn_filter5)
  • Cosine correction, south to north, filter2(cosine_correction_sn_filter2)
  • cosine correction, south to north, filter1(cosine_correction_sn_filter1)
  • Diffuse Hemispheric Broadband Irradiance, offset corrected(diffuse_hemisp_broadband)
  • Direct Horizontal Broadband Irradiance(direct_horizontal_broadband)
  • Offset subtracted from hemispheric and diffuse broadband data(offset_broadband)
  • Azimuth angle(azimuth_angle)
  • Cosine correction of broadband diffuse, assuming Rayleigh sky at 45 degree
    zenith angle(diffuse_correction_broadband)
  • Narrowband Direct Normal Irradiance, Filter 3, cosine corrected(direct_normal_narrowband_filter3)
  • Direct normal narrowband irradiance, filter 4, offset corrected(direct_normal_narrowband_filter4)
  • Narrowband Direct Normal Irradiance, Filter 5(direct_normal_narrowband_filter5)
  • Direct normal narrowband irradiance, filter 6, offset corrected(direct_normal_narrowband_filter6)
  • Narrowband Direct Normal Irradiance, Filter 1(direct_normal_narrowband_filter1)
  • Direct normal narrowband irradiance, filter 2, offset corrected(direct_normal_narrowband_filter2)
  • Alltime hemispheric broadband irradiance(alltime_hemisp_broadband)
  • cosine correction, south to north, broadband channel(cosine_correction_sn_broadband)
  • Second detector temperature(head_temp2)
  • Direct Normal Broadband Irradiance, cosine corrected, broadband scale applied(direct_normal_broadband)
  • Data Logger Temperature(logger_temp)
  • Cosine solar zenith angle(cosine_solar_zenith_angle)
  • Detector temperature(head_temp)
  • Hemispheric broadband irradiance(hemisp_broadband)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 6, offset corrected(diffuse_hemisp_narrowband_filter6)
  • Narrowband diffuse hemispheric irradiance, filter 5, offset and cosine corrected(diffuse_hemisp_narrowband_filter5)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 4(diffuse_hemisp_narrowband_filter4)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 3(diffuse_hemisp_narrowband_filter3)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 2, offset corrected(diffuse_hemisp_narrowband_filter2)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 1, offset corrected(diffuse_hemisp_narrowband_filter1)
  • cosine correction, west to east, filter6(cosine_correction_we_filter6)
  • Cosine correction, west to east, filter5(cosine_correction_we_filter5)
  • Cosine correction, west to east, filter4(cosine_correction_we_filter4)
  • cosine correction, west to east, filter3(cosine_correction_we_filter3)
  • cosine correction, west to east, filter2(cosine_correction_we_filter2)
  • Cosine correction, west to east, filter1(cosine_correction_we_filter1)
  • Air mass(airmass)
  • Ratio of direct_normal_filter5 to diffuse_hemisp_filter5(direct_diffuse_ratio_filter5)
  • Ratio of direct_normal_narrowband_filter6 to diffuse_hemisp_narrowband_filter6(direct_diffuse_ratio_filter6)
  • Ratio of direct_normal_narrowband_filter3 to diffuse_hemisp_narrowband_filter3(direct_diffuse_ratio_filter3)
  • Ratio of direct_normal_filter4 to diffuse_hemisp_filter4(direct_diffuse_ratio_filter4)
  • Ratio of direct_normal_filter1 to diffuse_hemisp_filter1(direct_diffuse_ratio_filter1)
  • Ratio of direct_normal_filter2 to diffuse_hemisp_filter2(direct_diffuse_ratio_filter2)
  • Normalized filter function data, filter 6, wavelength value obtained during
    bench calibrations(wavelength_filter6)
  • Normalized filter function data, filter 5, wavelength value obtained during
    bench calibrations(wavelength_filter5)
  • Normalized filter function data, filter 4, wavelength value obtained during
    bench calibrations(wavelength_filter4)
  • Normalized filter function data, filter 3, wavelength value obtained during
    bench calibrations(wavelength_filter3)
  • Normalized filter function data, filter 2, wavelength value obtained during
    bench calibrations(wavelength_filter2)
  • Normalized filter function data, filter 1, wavelength value obtained during
    bench calibrations(wavelength_filter1)
more
sgpdlcal2S01.b1:
  • Azimuth of Radar Ray(azimuth)
  • Beam Elevation Angle(elevation)
  • Distance to the center of the corresponding range bin(range)
  • Radial velocity(radial_velocity)
  • Intensity (signal to noise ratio + 1)(intensity)
  • Attenuated backscatter(attenuated_backscatter)
more
sgpcsaprsecI7.00:
  • Doppler spectral width, clutter filtered(doppler_spectral_width)
  • Differential reflectivity, clutter filtered(diff_reflectivity)
  • Differential propagation phase shift(dp_phase_shift)
  • Unfiltered received power in horizontal channel(power_horizontal_unf)
  • Unfiltered lag-0 co-polar correlation coefficient(copol_coeff_unf)
  • Unfiltered normalized coherent power(norm_coherent_power_unf)
  • Unfiltered Mean Doppler velocity(mean_doppler_velocity_unf)
  • Distance to the center of the corresponding range bin(range)
  • Received power in horizontal channel, clutter filtered(power_horizontal)
  • Azimuth of Radar Ray(azimuth)
  • Normalized coherent power, clutter filtered(norm_coherent_power)
  • Unfiltered differential reflectivity(diff_reflectivity_unf)
  • Clutter filtered reflectivity in vertical polarization(reflectivity_vertical)
  • Unfiltered differential propagation phase shift(dp_phase_shift_unf)
  • Unfiltered reflectivity in horizontal polarization(reflectivity_horizontal_unf)
  • Lag-0 co-polar correlation coefficient, clutter filtered(copol_coeff)
  • Received power in vertical channel, clutter filtered(power_vertical)
  • Unfiltered received power in vertical channel(power_vertical_unf)
  • Unfiltered reflectivity in vertical polarization(reflectivity_vertical_unf)
  • Specific differential phase(diff_phase)
  • Unfiltered specific differential phase(diff_phase_unf)
  • Unfiltered Doppler spectral width(doppler_spectral_width_unf)
  • altitude(altitude)
  • Mean doppler velocity(mean_doppler_velocity)
  • Clutter filtered reflectivity in horizontal polarization(reflectivity_horizontal)
more
sgpxsaprppiI5.00:
  • Doppler spectral width, clutter filtered(doppler_spectral_width)
  • Differential propagation phase shift(dp_phase_shift)
  • Unfiltered reflectivity(reflectivity_unf)
  • reflectivity(reflectivity)
  • Specific differential phase(diff_phase)
  • Mean doppler velocity(mean_doppler_velocity)
  • Attenuation corrected differential reflectivity(diff_reflectivity_corr)
  • Lag-0 co-polar correlation coefficient, clutter filtered(copol_coeff)
  • Range gate(gate)
  • Differential reflectivity, clutter filtered(diff_reflectivity)
  • Attenuation corrected reflectivity(reflectivity_corr)
  • Signal quality index(sig_qual_index)
more
sgpirtE13.b1:
  • Sky Infra Red Temperature Maxima(sky_ir_temp_max)
  • Sky Infra-Red Temperature Minima(sky_ir_temp_min)
  • Internal Reference Infra Red Temperature(ref_ir_temp)
  • Sky infrared temperature, standard deviation(sky_ir_temp_std)
  • Sky Infra-Red Temperature(sky_ir_temp)
  • Number of averaged samples(samples_in_average)
more
sgpxsaprvptI5.a1:
  • data_volume_start_time_utc(time_coverage_start)
  • Normalized coherent power(normalized_coherent_power)
  • Specific differential phase (KDP)(specific_differential_phase)
  • Differential reflectivity(differential_reflectivity)
  • Scan mode for sweep(sweep_mode)
  • Total power(total_power)
  • Beam Elevation Angle(elevation)
  • ray_target_fixed_angle(fixed_angle)
  • Unambiguous range(unambiguous_range)
  • data_volume_index_number(volume_number)
  • pulse_repetition_frequency(prt)
  • Mean doppler velocity(mean_doppler_velocity)
  • Doppler spectrum width(doppler_spectrum_width)
  • Clutter filtered reflectivity in horizontal polarization(reflectivity_horizontal)
  • Azimuth of Radar Ray(azimuth)
  • North latitude(latitude)
  • Distance to the center of the corresponding range bin(range)
  • Cross correlation ratio (RhoHV)(cross_correlation_ratio)
  • Time index of last ray in sweep, 0-based(sweep_end_ray_index)
  • Index of first ray in sweep, 0-based(sweep_start_ray_index)
  • East longitude(longitude)
  • File status(file_status)
  • altitude(altitude)
  • Unambiguous Doppler velocity(nyquist_velocity)
  • Differential propagation phase shift(differential_phase)
  • Sweep number, zero-based count(sweep_number)
  • transmit_pulse_mode(prt_mode)
  • Time corresponding to last radial in file(time_coverage_end)
more
sgp915rwpwindconI9.a1:
  • HLN(VN)
more
sgpmwrlosE14.a1:
  • Averaged total liquid water along LOS path(liq)
  • 31.4 GHz blac2body+noise injection signal(bbn31)
  • 23.8 GHz blackbody+noise injection signal(bbn23)
  • Sky Infra-Red Temperature(sky_ir_temp)
  • 31.4 GHz blackbody(bb31)
  • 23.8 GHz Blackbody signal(bb23)
  • Water on Teflon window (1=WET, 0=DRY)(wet_window)
  • 31.4 GHz sky signal(sky31)
  • 23.8 GHz sky signal(sky23)
  • Temperature correction coefficient at 23.8 GHz(tc23)
  • Temperature correction coefficient at 31.4 GHz(tc31)
  • Ambient temperature(tkair)
  • Total water vapor along LOS path(vap)
  • Mean 31.4 GHz sky brightness temperature(tbsky31)
  • Mean 23.8 GHz sky brightness temperature(tbsky23)
  • Mixer kinetic (physical) temperature(tkxc)
  • (tknd)
  • Blackbody kinetic temperature(tkbb)
  • Noise injection temp at nominal temperature at 31.4 GHz(tnd_nom31)
  • Noise injection temp at nominal temperature at 23.8 GHz(tnd_nom23)
  • Noise injection temp at 31.4 GHz adjusted to tkbb(tnd31)
  • Noise injection temp at 23.8 GHz adjusted to tkbb(tnd23)
more
sgp30baebbrE34.c1:
  • Bottom vapor pressure(vapor_pressure_bottom)
  • Reference temperature in enclosure(temp_reference)
  • Half hour averaged soil temperature 5(soil_temp_5)
  • Half hour averaged soil temperature 4(soil_temp_4)
  • Soil temperature 1(soil_temp_1)
  • Soil temperature mean 3(soil_temp_3)
  • Soil temperature 2(soil_temp_2)
  • Top relative humidity (fractional)(rh_top_fraction)
  • Aerodynamic latent heat flux(aerodynamic_latent_heat_flux)
  • Surface latent heat flux(latent_heat_flux)
  • Friction velocity(friction_velocity)
  • Aerodynamic sensible heat flux(aerodynamic_sensible_heat_flux)
  • Top vapor pressure(vapor_pressure_top)
  • Change in energy storage 5, 0-5 cm soil layer(energy_storage_change_5)
  • Change in energy storage 1, 0-5 cm soil layer(energy_storage_change_1)
  • Change in energy storage 2, 0-5 cm soil layer(energy_storage_change_2)
  • Change in energy storage 3, 0-5 cm soil layer(energy_storage_change_3)
  • Change in energy storage 4, 0-5 cm soil layer(energy_storage_change_4)
  • Bottom air temperature(temp_air_bottom)
  • Soil heat flow 5(soil_heat_flow_5)
  • Soil heat flow 2(soil_heat_flow_2)
  • Soil heat flow 1(soil_heat_flow_1)
  • Soil heat flow 4(soil_heat_flow_4)
  • Soil heat flow 3(soil_heat_flow_3)
  • Best estimate sensible heat flux(be_sensible_heat_flux)
  • AEM position indicator 0 to 15 mins(home_signal_15)
  • AEM position indicator 15 to 30 mins(home_signal_30)
  • Soil heat capacity 4(soil_heat_capacity_4)
  • Soil heat capacity 3(soil_heat_capacity_3)
  • Soil heat capacity 2(soil_heat_capacity_2)
  • Soil heat capacity 1(soil_heat_capacity_1)
  • Soil heat capacity 5(soil_heat_capacity_5)
  • Soil moisture 3, gravimetric(soil_moisture_3)
  • Soil moisture 2, gravimetric(soil_moisture_2)
  • Soil moisture 1, gravimetric(soil_moisture_1)
  • Soil moisture 5, gravimetric(soil_moisture_5)
  • Soil moisture 4, gravimetric(soil_moisture_4)
  • Atmospheric pressure(atmos_pressure)
  • Solar radiation calculated from time of day, lat, and lon(solar_radiation)
  • Bottom T/RH sensor temperature(temp_trh_bottom)
  • Bowen ratio(bowen_ratio)
  • Bottom relative humidity (fractional)(rh_bottom_fraction)
  • Net radiation(net_radiation)
  • Wind direction vector mean(wdir_vec_mean)
  • Soil heat flow 2, corrected for soil moisture(corr_soil_heat_flow_2)
  • Soil heat flow 3, corrected for soil moisture(corr_soil_heat_flow_3)
  • Soil heat flow 1, corrected for soil moisture(corr_soil_heat_flow_1)
  • Soil heat flow 4, corrected for soil moisture(corr_soil_heat_flow_4)
  • Soil heat flow 5, corrected for soil moisture(corr_soil_heat_flow_5)
  • Wind speed arithmetic mean(wspd_arith_mean)
  • Wind direction vector mean standard deviation(wdir_vec_std)
  • Surface soil heat flux 5(surface_soil_heat_flux_5)
  • Surface soil heat flux 4(surface_soil_heat_flux_4)
  • Surface soil heat flux 3(surface_soil_heat_flux_3)
  • Surface soil heat flux 2(surface_soil_heat_flux_2)
  • Surface soil heat flux 1(surface_soil_heat_flux_1)
  • Top air temperature(temp_air_top)
  • Best estimate latent heat flux(be_latent_heat_flux)
  • Top T/RH sensor temperature(temp_trh_top)
  • Wind speed vector mean(wspd_vec_mean)
  • Vegetation height outside fence(vegetation_height)
  • Surface sensible heat flux(sensible_heat_flux)
  • Surface soil heat flux, average of fluxes 1-5(surface_soil_heat_flux_avg)
more
sgpmfrsrlangleyE32.c1:
  • optical depth for the Direct BroadBand(michalsky_optical_depth_broadband)
  • percentage of initial points used in final linear fit for the Direct Broadband(barnard_good_fraction_broadband)
  • Michalsky computed sun to earth distance(michalsky_sun_earth_distance)
  • Langley regression Io, adjusted to 1AU, Barnard, Direct BroadBand(barnard_solar_constant_sdist_broadband)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter6(barnard_good_fraction_filter6)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter4(barnard_good_fraction_filter4)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter5(barnard_good_fraction_filter5)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter2(barnard_good_fraction_filter2)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter3(barnard_good_fraction_filter3)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter1(barnard_good_fraction_filter1)
  • solar constant corrected for solar distance for the Direct Narrowband Filter6(barnard_solar_constant_sdist_filter6)
  • solar constant corrected for solar distance for the Direct Narrowband Filter1(barnard_solar_constant_sdist_filter1)
  • solar constant corrected for solar distance for the Direct Narrowband Filter2(barnard_solar_constant_sdist_filter2)
  • solar constant corrected for solar distance for the Direct Narrowband Filter3(barnard_solar_constant_sdist_filter3)
  • Langley regression Io, adjusted to 1AU, Barnard, Direct Narrowband Filter4(barnard_solar_constant_sdist_filter4)
  • solar constant corrected for solar distance for the Direct Narrowband Filter5(barnard_solar_constant_sdist_filter5)
  • optical depth for the Direct Narrowband Filter2(barnard_optical_depth_filter2)
  • optical depth for the Direct Narrowband Filter3(barnard_optical_depth_filter3)
  • optical depth for the Direct Narrowband Filter1(barnard_optical_depth_filter1)
  • optical depth for the Direct Narrowband Filter6(barnard_optical_depth_filter6)
  • optical depth for the Direct Narrowband Filter4(barnard_optical_depth_filter4)
  • optical depth for the Direct Narrowband Filter5(barnard_optical_depth_filter5)
  • number of points used in final linear fit for the Direct Broadband(barnard_number_points_broadband)
  • rejection flag for Direct Narrowband Filter1(michalsky_badflag_filter1)
  • rejection flag for Direct Narrowband Filter4(michalsky_badflag_filter4)
  • rejection flag for Direct Narrowband Filter5(michalsky_badflag_filter5)
  • rejection flag for Direct Narrowband Filter2(michalsky_badflag_filter2)
  • rejection flag for Direct Narrowband Filter3(michalsky_badflag_filter3)
  • rejection flag for Direct Narrowband Filter6(michalsky_badflag_filter6)
  • solar constant for the Direct Narrowband Filter3(michalsky_solar_constant_filter3)
  • Langley regression Io, Michalsky, Direct Narrowband Filter4(michalsky_solar_constant_filter4)
  • solar constant for the Direct Narrowband Filter1(michalsky_solar_constant_filter1)
  • Langley regression Io, Michalsky, Direct Narrowband Filter2(michalsky_solar_constant_filter2)
  • Langley regression Io, Michalsky, Direct Narrowband Filter5(michalsky_solar_constant_filter5)
  • solar constant for the Direct Narrowband Filter6(michalsky_solar_constant_filter6)
  • standard deviation around regression line for the Direct Narrowband Filter1(michalsky_standard_deviation_filter1)
  • standard deviation around regression line for the Direct Narrowband Filter3(michalsky_standard_deviation_filter3)
  • standard deviation around regression line for the Direct Narrowband Filter2(michalsky_standard_deviation_filter2)
  • standard deviation around regression line for the Direct Narrowband Filter5(michalsky_standard_deviation_filter5)
  • standard deviation around regression line for the Direct Narrowband Filter4(michalsky_standard_deviation_filter4)
  • standard deviation around regression line for the Direct Narrowband Filter6(michalsky_standard_deviation_filter6)
  • rejection flag for Direct Broadband(barnard_badflag_broadband)
  • Langley regression Io, Michalsky, Direct BroadBand(michalsky_solar_constant_broadband)
  • error in optical depth (slope) of final linear fit for the Direct Narrowband
    Filter4(barnard_error_slope_filter4)
  • error in optical depth (slope) of final linear fit for the Direct Narrowband
    Filter5(barnard_error_slope_filter5)
  • error in optical depth (slope) of final linear fit for the Direct Narrowband
    Filter6(barnard_error_slope_filter6)
  • error in optical depth (slope) of final linear fit for the Direct Narrowband
    Filter1(barnard_error_slope_filter1)
  • error in optical depth (slope) of final linear fit for the Direct Narrowband
    Filter2(barnard_error_slope_filter2)
  • error in optical depth (slope) of final linear fit for the Direct Narrowband
    Filter3(barnard_error_slope_filter3)
  • optical depth for the Direct Narrowband Filter3(michalsky_optical_depth_filter3)
  • optical depth for the Direct Narrowband Filter4(michalsky_optical_depth_filter4)
  • optical depth for the Direct Narrowband Filter5(michalsky_optical_depth_filter5)
  • optical depth for the Direct Narrowband Filter6(michalsky_optical_depth_filter6)
  • optical depth for the Direct Narrowband Filter1(michalsky_optical_depth_filter1)
  • optical depth for the Direct Narrowband Filter2(michalsky_optical_depth_filter2)
  • solar constant corrected for solar distance for the Direct Broadband(michalsky_solar_constant_sdist_broadband)
  • Barnard computed sun to earth distance(barnard_sun_earth_distance)
  • rejection flag for Direct Broadband(michalsky_badflag_broadband)
  • error in final linear fit for the Direct BroadBand(barnard_error_fit_broadband)
  • optical depth for the Direct BroadBand(barnard_optical_depth_broadband)
  • number of points used in final linear fit for the Direct Narrowband Filter5(michalsky_number_points_filter5)
  • number of points used in final linear fit for the Direct Narrowband Filter4(michalsky_number_points_filter4)
  • number of points used in final linear fit for the Direct Narrowband Filter3(michalsky_number_points_filter3)
  • number of points used in final linear fit for the Direct Narrowband Filter2(michalsky_number_points_filter2)
  • number of points used in final linear fit for the Direct Narrowband Filter1(michalsky_number_points_filter1)
  • number of points used in final linear fit for the Direct Narrowband Filter6(michalsky_number_points_filter6)
  • percentage of initial points used in final linear fit for the Direct Broadband(michalsky_good_fraction_broadband)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter1(michalsky_good_fraction_filter1)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter2(michalsky_good_fraction_filter2)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter3(michalsky_good_fraction_filter3)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter4(michalsky_good_fraction_filter4)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter5(michalsky_good_fraction_filter5)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter6(michalsky_good_fraction_filter6)
  • solar constant corrected for solar distance for the Direct Narrowband Filter3(michalsky_solar_constant_sdist_filter3)
  • solar constant corrected for solar distance for the Direct Narrowband Filter4(michalsky_solar_constant_sdist_filter4)
  • solar constant corrected for solar distance for the Direct Narrowband Filter5(michalsky_solar_constant_sdist_filter5)
  • solar constant corrected for solar distance for the Direct Narrowband Filter6(michalsky_solar_constant_sdist_filter6)
  • solar constant corrected for solar distance for the Direct Narrowband Filter1(michalsky_solar_constant_sdist_filter1)
  • solar constant corrected for solar distance for the Direct Narrowband Filter2(michalsky_solar_constant_sdist_filter2)
  • number of points used in final linear fit for the Direct Narrowband Filter2(barnard_number_points_filter2)
  • number of points used in final linear fit for the Direct Narrowband Filter1(barnard_number_points_filter1)
  • number of points used in final linear fit for the Direct Narrowband Filter4(barnard_number_points_filter4)
  • number of points used in final linear fit for the Direct Narrowband Filter3(barnard_number_points_filter3)
  • number of points used in final linear fit for the Direct Narrowband Filter6(barnard_number_points_filter6)
  • number of points used in final linear fit for the Direct Narrowband Filter5(barnard_number_points_filter5)
  • number of points used in final linear fit for the Direct Broadband(michalsky_number_points_broadband)
  • error in optical depth (slope) of final linear fit for the Direct Broadband(barnard_error_slope_broadband)
  • error in final linear fit for the Direct Narrowband Filter5(barnard_error_fit_filter5)
  • error in final linear fit for the Direct Narrowband Filter4(barnard_error_fit_filter4)
  • error in final linear fit for the Direct Narrowband Filter3(barnard_error_fit_filter3)
  • error in final linear fit for the Direct Narrowband Filter2(barnard_error_fit_filter2)
  • error in final linear fit for the Direct Narrowband Filter6(barnard_error_fit_filter6)
  • standard deviation around regression line for the Direct BroadBand(michalsky_standard_deviation_broadband)
  • rejection flag for Direct Narrowband Filter3(barnard_badflag_filter3)
  • rejection flag for Direct Narrowband Filter4(barnard_badflag_filter4)
  • rejection flag for Direct Narrowband Filter5(barnard_badflag_filter5)
  • rejection flag for Direct Narrowband Filter6(barnard_badflag_filter6)
  • rejection flag for Direct Narrowband Filter1(barnard_badflag_filter1)
  • rejection flag for Direct Narrowband Filter2(barnard_badflag_filter2)
  • error in final linear fit for the Direct Narrowband Filter1(barnard_error_fit_filter1)
more
sgpswatsE13.a1:
  • Reference Thermistor Temperature(tref)
  • Soil Water Potential, East Profile(soilwatpot_E)
  • Soil Water Potential, West Profile(soilwatpot_W)
  • Soil Temperature, East Profile(tsoil_E)
  • Soil Temperature, West Profile(tsoil_W)
  • Sensor Temperature Rise, West Profile(trise_W)
  • Sensor Temperature Rise, East Profile(trise_E)
  • East profile sensor serial numbers(serial_numbers_E)
  • West profile sensor serial numbers(serial_numbers_W)
  • depth(depth)
  • Volumetric Water Content, West Profile(watcont_W)
  • Volumetric Water Content, East Profile(watcont_E)
more
sgpswatsE35.b1:
  • Volumetric water content, east profile(watcont_e)
  • Volumetric water content, west profile(watcont_w)
  • Reference sensor temperature rise, east profile(trise_ref_e)
  • Reference sensor temperature rise, west profile(trise_ref_w)
  • Reference Thermistor Temperature(tref)
  • Soil water potential, west profile(soilwatpot_w)
  • Soil water potential, east profile(soilwatpot_e)
  • Fractional water index, west profile(fwi_w)
  • Fractional water index, east profile(fwi_e)
  • depth(depth)
  • Sensor temperature rise, west profile(trise_w)
  • Sensor temperature rise, east profile(trise_e)
  • Soil temperature, east profile(tsoil_e)
  • Soil temperature, west profile(tsoil_w)
  • East profile sensor serial numbers(serial_numbers_e)
  • West profile sensor serial numbers(serial_numbers_w)
more
sgpmfrsrE38.a0:
  • Diffuse Hemispheric Broadband Irradiance, offset corrected(diffuse_hemisp_broadband)
  • Alltime hemispheric broadband irradiance(alltime_hemisp_broadband)
  • Data Logger Temperature(logger_temp)
  • Diffuse narrowband hemispheric irradiance, filter 3(diffuse_hemisp_narrowband_filter3_raw)
  • Narrowband hemispheric irradiance, filter 3, offset and cosine corrected(hemisp_narrowband_filter3)
  • Narrowband hemispheric irradiance, filter 4, offset and cosine corrected(hemisp_narrowband_filter4)
  • Narrowband Hemispheric Irradiance, Filter 5, offset corrected(hemisp_narrowband_filter5)
  • Narrowband hemispheric irradiance, filter 6, nominal wavelength is 935 nm(hemisp_narrowband_filter6)
  • Narrowband Hemispheric Irradiance, Filter 1, offset corrected(hemisp_narrowband_filter1)
  • Narrowband Hemispheric Irradiance, Filter 2(hemisp_narrowband_filter2)
  • Narrowband hemispheric irradiance, filter 1(hemisp_narrowband_filter1_raw)
  • Detector temperature(head_temp)
  • Direct Horizontal Broadband Irradiance(direct_horizontal_broadband)
  • Narrowband Hemispheric Irradiance, Filter 6(hemisp_narrowband_filter6_raw)
  • Diffuse narrowband hemispheric irradiance, filter 1(diffuse_hemisp_narrowband_filter1_raw)
  • Offset subtracted from direct normal filter3 data(offset_filter3)
  • Offset subtracted from direct normal filter4 data(offset_filter4)
  • Offset subtracted from upwelling hemispheric filter5 data(offset_filter5)
  • Offset subtracted from hemispheric and diffuse filter6 data(offset_filter6)
  • Offset subtracted from hemispheric filter1 data(offset_filter1)
  • Offset subtracted from upwelling hemispheric filter2 data(offset_filter2)
  • Diffuse narrowband hemispheric irradiance, filter 6(diffuse_hemisp_narrowband_filter6_raw)
  • Hemispheric broadband irradiance(hemisp_broadband_raw)
  • Narrowband hemispheric irradiance, filter 4(hemisp_narrowband_filter4_raw)
  • Diffuse Hemispheric Broadband Irradiance(diffuse_hemisp_broadband_raw)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 2, offset corrected(diffuse_hemisp_narrowband_filter2)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 3(diffuse_hemisp_narrowband_filter3)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 1, offset corrected(diffuse_hemisp_narrowband_filter1)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 6, offset corrected(diffuse_hemisp_narrowband_filter6)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 4(diffuse_hemisp_narrowband_filter4)
  • Narrowband diffuse hemispheric irradiance, filter 5, offset and cosine corrected(diffuse_hemisp_narrowband_filter5)
  • Narrowband hemispheric irradiance, filter 5(hemisp_narrowband_filter5_raw)
  • Second detector temperature(head_temp2)
  • Diffuse narrowband hemispheric irradiance, filter 4(diffuse_hemisp_narrowband_filter4_raw)
  • Narrowband Direct Horizontal Irradiance, Filter 4, cosine corrected(direct_horizontal_narrowband_filter4)
  • Direct Horizontal Narrowband Irradiance, Filter 3(direct_horizontal_narrowband_filter3)
  • Narrowband Direct Horizontal Irradiance, Filter 2, cosine corrected(direct_horizontal_narrowband_filter2)
  • Direct horizontal narrowband irradiance, filter 1(direct_horizontal_narrowband_filter1)
  • Narrowband hemispheric irradiance, filter 2(hemisp_narrowband_filter2_raw)
  • Narrowband Direct Horizontal Irradiance, Filter 6, cosine corrected(direct_horizontal_narrowband_filter6)
  • Narrowband Direct Horizontal Irradiance, Filter 5, cosine corrected(direct_horizontal_narrowband_filter5)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 5(diffuse_hemisp_narrowband_filter5_raw)
  • Narrowband Hemispheric Irradiance, Filter 3(hemisp_narrowband_filter3_raw)
  • Data logger supply voltage(logger_volt)
  • Hemispheric broadband irradiance(hemisp_broadband)
  • Alltime narrowband hemispheric irradiance, filter 1(alltime_hemisp_narrowband_filter1)
  • Alltime Narrowband Hemispheric Irradiance, Filter 3(alltime_hemisp_narrowband_filter3)
  • Alltime narrowband hemispheric irradiance, filter 2(alltime_hemisp_narrowband_filter2)
  • Alltime narrowband hemispheric irradiance, filter 5(alltime_hemisp_narrowband_filter5)
  • Alltime Narrowband Hemispheric Irradiance, Filter 4(alltime_hemisp_narrowband_filter4)
  • Alltime Narrowband Hemispheric Irradiance, Filter 6(alltime_hemisp_narrowband_filter6)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 2(diffuse_hemisp_narrowband_filter2_raw)
  • Offset subtracted from hemispheric and diffuse broadband data(offset_broadband)
more
sgpxsaprvptI5.00:
  • Lag-0 co-polar correlation coefficient, clutter filtered(copol_coeff)
  • Unfiltered reflectivity(reflectivity_unf)
  • Doppler spectral width, clutter filtered(doppler_spectral_width)
  • Range gate(gate)
  • Mean doppler velocity(mean_doppler_velocity)
  • Signal quality index(sig_qual_index)
  • Attenuation corrected differential reflectivity(diff_reflectivity_corr)
  • Differential reflectivity, clutter filtered(diff_reflectivity)
  • reflectivity(reflectivity)
  • Differential propagation phase shift(dp_phase_shift)
  • Attenuation corrected reflectivity(reflectivity_corr)
  • Specific differential phase(diff_phase)
more
sgpdlcal1S01.b1:
  • Beam Elevation Angle(elevation)
  • Radial velocity(radial_velocity)
  • Intensity (signal to noise ratio + 1)(intensity)
  • Distance to the center of the corresponding range bin(range)
  • Attenuated backscatter(attenuated_backscatter)
  • Azimuth of Radar Ray(azimuth)
more
sgpmfrsrE13.a0:
  • Alltime hemispheric broadband irradiance(alltime_hemisp_broadband)
  • Narrowband hemispheric irradiance, filter 2(hemisp_narrowband_filter2_raw)
  • Narrowband hemispheric irradiance, filter 6, nominal wavelength is 935 nm(hemisp_narrowband_filter6)
  • Narrowband Hemispheric Irradiance, Filter 5, offset corrected(hemisp_narrowband_filter5)
  • Narrowband hemispheric irradiance, filter 4, offset and cosine corrected(hemisp_narrowband_filter4)
  • Narrowband hemispheric irradiance, filter 3, offset and cosine corrected(hemisp_narrowband_filter3)
  • Narrowband Hemispheric Irradiance, Filter 2(hemisp_narrowband_filter2)
  • Narrowband Hemispheric Irradiance, Filter 1, offset corrected(hemisp_narrowband_filter1)
  • Direct Horizontal Broadband Irradiance(direct_horizontal_broadband)
  • Hemispheric broadband irradiance(hemisp_broadband)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 5(diffuse_hemisp_narrowband_filter5_raw)
  • Diffuse Hemispheric Broadband Irradiance, offset corrected(diffuse_hemisp_broadband)
  • Data logger supply voltage(logger_volt)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 2(diffuse_hemisp_narrowband_filter2_raw)
  • Data Logger Temperature(logger_temp)
  • Narrowband hemispheric irradiance, filter 5(hemisp_narrowband_filter5_raw)
  • Hemispheric broadband irradiance(hemisp_broadband_raw)
  • Narrowband Direct Horizontal Irradiance, Filter 4, cosine corrected(direct_horizontal_narrowband_filter4)
  • Narrowband Direct Horizontal Irradiance, Filter 5, cosine corrected(direct_horizontal_narrowband_filter5)
  • Narrowband Direct Horizontal Irradiance, Filter 6, cosine corrected(direct_horizontal_narrowband_filter6)
  • Direct horizontal narrowband irradiance, filter 1(direct_horizontal_narrowband_filter1)
  • Narrowband Direct Horizontal Irradiance, Filter 2, cosine corrected(direct_horizontal_narrowband_filter2)
  • Direct Horizontal Narrowband Irradiance, Filter 3(direct_horizontal_narrowband_filter3)
  • Diffuse narrowband hemispheric irradiance, filter 4(diffuse_hemisp_narrowband_filter4_raw)
  • Offset subtracted from hemispheric and diffuse broadband data(offset_broadband)
  • Diffuse Hemispheric Broadband Irradiance(diffuse_hemisp_broadband_raw)
  • Second detector temperature(head_temp2)
  • Diffuse narrowband hemispheric irradiance, filter 1(diffuse_hemisp_narrowband_filter1_raw)
  • Narrowband Hemispheric Irradiance, Filter 6(hemisp_narrowband_filter6_raw)
  • Detector temperature(head_temp)
  • Narrowband Hemispheric Irradiance, Filter 3(hemisp_narrowband_filter3_raw)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 6, offset corrected(diffuse_hemisp_narrowband_filter6)
  • Narrowband diffuse hemispheric irradiance, filter 5, offset and cosine corrected(diffuse_hemisp_narrowband_filter5)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 4(diffuse_hemisp_narrowband_filter4)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 3(diffuse_hemisp_narrowband_filter3)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 2, offset corrected(diffuse_hemisp_narrowband_filter2)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 1, offset corrected(diffuse_hemisp_narrowband_filter1)
  • Offset subtracted from hemispheric and diffuse filter6 data(offset_filter6)
  • Offset subtracted from upwelling hemispheric filter2 data(offset_filter2)
  • Offset subtracted from direct normal filter3 data(offset_filter3)
  • Offset subtracted from direct normal filter4 data(offset_filter4)
  • Offset subtracted from upwelling hemispheric filter5 data(offset_filter5)
  • Offset subtracted from hemispheric filter1 data(offset_filter1)
  • Diffuse narrowband hemispheric irradiance, filter 6(diffuse_hemisp_narrowband_filter6_raw)
  • Narrowband hemispheric irradiance, filter 4(hemisp_narrowband_filter4_raw)
  • Narrowband hemispheric irradiance, filter 1(hemisp_narrowband_filter1_raw)
  • Alltime narrowband hemispheric irradiance, filter 5(alltime_hemisp_narrowband_filter5)
  • Alltime Narrowband Hemispheric Irradiance, Filter 6(alltime_hemisp_narrowband_filter6)
  • Alltime Narrowband Hemispheric Irradiance, Filter 3(alltime_hemisp_narrowband_filter3)
  • Alltime Narrowband Hemispheric Irradiance, Filter 4(alltime_hemisp_narrowband_filter4)
  • Alltime narrowband hemispheric irradiance, filter 1(alltime_hemisp_narrowband_filter1)
  • Alltime narrowband hemispheric irradiance, filter 2(alltime_hemisp_narrowband_filter2)
  • Diffuse narrowband hemispheric irradiance, filter 3(diffuse_hemisp_narrowband_filter3_raw)
more
sgp30baebbrE34.s1:
  • Surface latent heat flux(latent_heat_flux)
  • Soil heat capacity 5(soil_heat_capacity_5)
  • Soil heat capacity 2(soil_heat_capacity_2)
  • Soil heat capacity 1(soil_heat_capacity_1)
  • Soil heat capacity 4(soil_heat_capacity_4)
  • Soil heat capacity 3(soil_heat_capacity_3)
  • AEM position indicator 0 to 15 mins(home_signal_15)
  • AEM position indicator 15 to 30 mins(home_signal_30)
  • Aerodynamic latent heat flux(aerodynamic_latent_heat_flux)
  • Net radiation(net_radiation)
  • Bottom vapor pressure(vapor_pressure_bottom)
  • Change in energy storage 3, 0-5 cm soil layer(energy_storage_change_3)
  • Change in energy storage 4, 0-5 cm soil layer(energy_storage_change_4)
  • Change in energy storage 1, 0-5 cm soil layer(energy_storage_change_1)
  • Change in energy storage 2, 0-5 cm soil layer(energy_storage_change_2)
  • Change in energy storage 5, 0-5 cm soil layer(energy_storage_change_5)
  • Best estimate latent heat flux(be_latent_heat_flux)
  • Friction velocity(friction_velocity)
  • Soil heat flow 4(soil_heat_flow_4)
  • Soil heat flow 3(soil_heat_flow_3)
  • Soil heat flow 2(soil_heat_flow_2)
  • Soil heat flow 1(soil_heat_flow_1)
  • Soil heat flow 5(soil_heat_flow_5)
  • Best estimate sensible heat flux(be_sensible_heat_flux)
  • Surface soil heat flux 4(surface_soil_heat_flux_4)
  • Surface soil heat flux 5(surface_soil_heat_flux_5)
  • Surface soil heat flux 1(surface_soil_heat_flux_1)
  • Surface soil heat flux 2(surface_soil_heat_flux_2)
  • Surface soil heat flux 3(surface_soil_heat_flux_3)
  • Surface soil heat flux, average of fluxes 1-5(surface_soil_heat_flux_avg)
  • Surface sensible heat flux(sensible_heat_flux)
  • Aerodynamic sensible heat flux(aerodynamic_sensible_heat_flux)
  • Vegetation height outside fence(vegetation_height)
  • Wind speed vector mean(wspd_vec_mean)
  • Solar radiation calculated from time of day, lat, and lon(solar_radiation)
  • Bowen ratio(bowen_ratio)
  • Wind direction vector mean(wdir_vec_mean)
  • Wind direction vector mean standard deviation(wdir_vec_std)
  • Bottom T/RH sensor temperature(temp_trh_bottom)
  • Bottom relative humidity (fractional)(rh_bottom_fraction)
  • Top T/RH sensor temperature(temp_trh_top)
  • Top air temperature(temp_air_top)
  • Top vapor pressure(vapor_pressure_top)
  • Bottom air temperature(temp_air_bottom)
  • Wind speed arithmetic mean(wspd_arith_mean)
  • Top relative humidity (fractional)(rh_top_fraction)
  • Half hour averaged soil temperature 5(soil_temp_5)
  • Half hour averaged soil temperature 4(soil_temp_4)
  • Soil temperature 1(soil_temp_1)
  • Soil temperature mean 3(soil_temp_3)
  • Soil temperature 2(soil_temp_2)
  • Reference temperature in enclosure(temp_reference)
  • Soil moisture 1, gravimetric(soil_moisture_1)
  • Soil moisture 3, gravimetric(soil_moisture_3)
  • Soil moisture 2, gravimetric(soil_moisture_2)
  • Soil moisture 5, gravimetric(soil_moisture_5)
  • Soil moisture 4, gravimetric(soil_moisture_4)
  • Atmospheric pressure(atmos_pressure)
  • Soil heat flow 3, corrected for soil moisture(corr_soil_heat_flow_3)
  • Soil heat flow 2, corrected for soil moisture(corr_soil_heat_flow_2)
  • Soil heat flow 1, corrected for soil moisture(corr_soil_heat_flow_1)
  • Soil heat flow 5, corrected for soil moisture(corr_soil_heat_flow_5)
  • Soil heat flow 4, corrected for soil moisture(corr_soil_heat_flow_4)
more
sgpdlcal2S01.a0:
  • Beam Elevation Angle(elevation)
  • Attenuated backscatter(attenuated_backscatter)
  • Distance to the center of the corresponding range bin(range)
  • Intensity (signal to noise ratio + 1)(intensity)
  • Beam azimuth relative to Lidar home point(relative_azimuth)
  • Radial velocity(radial_velocity)
more
sgpmfrsrlangplotE37.c1:
  • rejected points for the final fit for the Direct Narrowband Filter1(barnard_rejected_filter1)
  • rejected points for the final fit for the Direct Narrowband Filter2(barnard_rejected_filter2)
  • rejected points for the final fit for the Direct Narrowband Filter3, Barnard(barnard_rejected_filter3)
  • rejected points for the final fit for the Direct Narrowband Filter4, Barnard(barnard_rejected_filter4)
  • rejected points for the final fit for the Direct Narrowband Filter5, Barnard(barnard_rejected_filter5)
  • rejected points for the final fit for the Direct Narrowband Filter6(barnard_rejected_filter6)
  • rejected points for the final fit for the Direct Broadband, Barnard(barnard_rejected_broadband)
  • log(irradiance) for the Direct Broadband(barnard_lnI_broadband)
  • rejected points for the final fit for the Direct Broadband(michalsky_rejected_broadband)
  • log(irradiance) for the Direct Narrowband Filter6(barnard_lnI_filter6)
  • log(irradiance) for the Direct Narrowband Filter5(barnard_lnI_filter5)
  • log(irradiance) for the Direct Narrowband Filter2, Barnard(barnard_lnI_filter2)
  • log(irradiance) for the Direct Narrowband Filter1, Barnard(barnard_lnI_filter1)
  • log(irradiance) for the Direct Narrowband Filter4(barnard_lnI_filter4)
  • log(irradiance) for the Direct Narrowband Filter3, Barnard(barnard_lnI_filter3)
  • Airmasses(barnard_airmass)
  • log(irradiance) for the Direct Narrowband Filter6, Michalsky(michalsky_lnI_filter6)
  • log(irradiance) for the Direct Narrowband Filter4, Michalsky(michalsky_lnI_filter4)
  • log(irradiance) for the Direct Narrowband Filter5, Michalsky(michalsky_lnI_filter5)
  • log(irradiance) for the Direct Narrowband Filter2, Michalsky(michalsky_lnI_filter2)
  • log(irradiance) for the Direct Narrowband Filter3, Michalsky(michalsky_lnI_filter3)
  • log(irradiance) for the Direct Narrowband Filter1(michalsky_lnI_filter1)
  • airmass(michalsky_airmass)
  • log(irradiance) for the Direct Broadband(michalsky_lnI_broadband)
  • rejected points for the final fit for the Direct Narrowband Filter6, Michalsky(michalsky_rejected_filter6)
  • rejected points for the final fit for the Direct Narrowband Filter5, Michalsky(michalsky_rejected_filter5)
  • rejected points for the final fit for the Direct Narrowband Filter2(michalsky_rejected_filter2)
  • rejected points for the final fit for the Direct Narrowband Filter1, Michalsky(michalsky_rejected_filter1)
  • rejected points for the final fit for the Direct Narrowband Filter4, Michalsky(michalsky_rejected_filter4)
  • rejected points for the final fit for the Direct Narrowband Filter3, Michalsky(michalsky_rejected_filter3)
more
sgp5ebbrE9.b1:
  • Reference temperature in enclosure(temp_reference)
  • Bottom vapor pressure(vapor_pressure_bottom)
  • Top T/RH sensor temperature(temp_trh_top)
  • Net radiation(net_radiation)
  • Top relative humidity (fractional)(rh_top_fraction)
  • AEM position indicator(home_signal)
  • Bottom T/RH sensor temperature(temp_trh_bottom)
  • Bottom relative humidity (fractional)(rh_bottom_fraction)
  • Wind speed vector mean(wspd_vec_mean)
  • Top air temperature(temp_air_top)
  • Top vapor pressure(vapor_pressure_top)
  • Wind direction vector mean standard deviation(wdir_vec_std)
  • Wind direction vector mean(wdir_vec_mean)
  • Atmospheric pressure(atmos_pressure)
  • Wind speed arithmetic mean(wspd_arith_mean)
  • Bottom air temperature(temp_air_bottom)
more
sgpirtE37.b1:
  • Number of averaged samples(samples_in_average)
  • Sky infrared temperature, standard deviation(sky_ir_temp_std)
  • Sky Infra-Red Temperature(sky_ir_temp)
  • Internal Reference Infra Red Temperature(ref_ir_temp)
  • Sky Infra Red Temperature Maxima(sky_ir_temp_max)
  • Sky Infra-Red Temperature Minima(sky_ir_temp_min)
more
sgpsirsE12.a2:
  • Downwelling Shortwave Hemispheric Irradiance, Ventilated Pyrgeometer, Standard
    Deviation(down_short_hemisp_std)
  • Shortwave Direct Normal Irradiance, Pyrheliometer, Maxima(short_direct_normal_max)
  • Shortwave direct normal irradiance, pyrheliometer, minima(short_direct_normal_min)
  • Upwelling (10 meter) Shortwave Hemispheric Irradiance, Ventilated Pyranometer,
    Standard Deviation(up_short_hemisp_std)
  • Downwelling Shortwave Diffuse Hemispheric Irradiance, Pyranometer, Standard
    Deviation(down_short_diffuse_hemisp_std)
  • Instantaneous Dome Temperature(inst_up_long_dome_temp)
  • Downwelling Longwave Hemispheric Irradiance, Shaded Pyrgeometer, Minima(down_long_hemisp_shaded_min)
  • Instantaneous Upwelling Longwave Hemispheric Irradiance, Pyrgeometer(up_long_netir)
  • Downwelling Longwave Hemispheric Irradiance, Shaded Pyrgeometer, Maxima(down_long_hemisp_shaded_max)
  • 25 meter Upwelling Shortwave Hemispheric Irradiance, Pyranometer(up_short_hemisp)
  • Downwelling longwave hemispheric irradiance, shaded pyrgeometer(down_long_hemisp_shaded)
  • Downwelling longwave hemispheric irradiance, shaded pyrgeometer, standard
    deviation(down_long_hemisp_shaded_std)
  • Downwelling longwave hemispheric net infrared(down_long_netir)
  • Downwelling Shortwave Hemispheric Irradiance, Pyranometer, Minima(down_short_hemisp_min)
  • Downwelling shortwave hemispheric irradiance, pyranometer, maxima(down_short_hemisp_max)
  • Upwelling Longwave Hemispheric Irradiance, Pyrgeometer, Minima(up_long_hemisp_min)
  • Upwelling longwave hemispheric irradiance, pyrgeometer, maxima(up_long_hemisp_max)
  • 10 meter Upwelling Longwave Hemispheric Irradiance, Pyrgeometer(up_long_hemisp)
  • Down-welling unshaded pyranometer voltage(down_short_hemisp)
  • Instantaneous downwelling pyrgeometer case thermistor temperature, shaded
    pyrgeometer(inst_down_long_shaded_case_temp)
  • Shortwave Direct Normal Irradiance, Pyrgeometer, Standard Deviation(short_direct_normal_std)
  • Shortwave direct normal irradiance, pyrheliometer(short_direct_normal)
  • Instantaneous Downwelling Pyrgeometer Dome Thermistor Temperature, Shaded
    Pyrgeometer(inst_down_long_shaded_dome_temp)
  • Downwelling shortwave diffuse hemispheric irradiance, pyranometer, maxima(down_short_diffuse_hemisp_max)
  • Downwelling Shortwave Diffuse Hemispheric Irradiance, Pyrgeometer, Minima(down_short_diffuse_hemisp_min)
  • Instantaneous upwelling pyrgeometer case thermistor temperature, pyrgeometer(inst_up_long_case_temp)
  • Upwelling shortwave hemispheric irradiance, pyranometer, minima(up_short_hemisp_min)
  • Upwelling (10 meter) Longwave Hemispheric Irradiance, Ventilated Pyrgeometer,
    Standard Deviation(up_long_hemisp_std)
  • Downwelling Shortwave Diffuse Hemispheric Irradiance, Ventilated Pyranometer(down_short_diffuse_hemisp)
  • Battery voltage(vBatt)
  • Upwelling (10 meter) Shortwave Hemispheric Irradiance, Pyranometer, Maxima(up_short_hemisp_max)
more
sgpswatsE12.a1:
  • East profile sensor serial numbers(serial_numbers_E)
  • West profile sensor serial numbers(serial_numbers_W)
  • Soil Temperature, East Profile(tsoil_E)
  • Soil Temperature, West Profile(tsoil_W)
  • Sensor Temperature Rise, East Profile(trise_E)
  • Sensor Temperature Rise, West Profile(trise_W)
  • Soil Water Potential, West Profile(soilwatpot_W)
  • Soil Water Potential, East Profile(soilwatpot_E)
  • depth(depth)
  • Reference Thermistor Temperature(tref)
  • Volumetric Water Content, East Profile(watcont_E)
  • Volumetric Water Content, West Profile(watcont_W)
more
sgpmfrsrlangleyE12.c1:
  • optical depth for the Direct Narrowband Filter3(barnard_optical_depth_filter3)
  • optical depth for the Direct Narrowband Filter2(barnard_optical_depth_filter2)
  • optical depth for the Direct Narrowband Filter5(barnard_optical_depth_filter5)
  • optical depth for the Direct Narrowband Filter4(barnard_optical_depth_filter4)
  • optical depth for the Direct Narrowband Filter6(barnard_optical_depth_filter6)
  • optical depth for the Direct Narrowband Filter1(barnard_optical_depth_filter1)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter1(barnard_good_fraction_filter1)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter6(barnard_good_fraction_filter6)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter2(barnard_good_fraction_filter2)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter3(barnard_good_fraction_filter3)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter4(barnard_good_fraction_filter4)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter5(barnard_good_fraction_filter5)
  • error in final linear fit for the Direct Narrowband Filter1(barnard_error_fit_filter1)
  • error in final linear fit for the Direct Narrowband Filter3(barnard_error_fit_filter3)
  • error in final linear fit for the Direct Narrowband Filter2(barnard_error_fit_filter2)
  • error in final linear fit for the Direct Narrowband Filter5(barnard_error_fit_filter5)
  • error in final linear fit for the Direct Narrowband Filter4(barnard_error_fit_filter4)
  • error in final linear fit for the Direct Narrowband Filter6(barnard_error_fit_filter6)
  • percentage of initial points used in final linear fit for the Direct Broadband(barnard_good_fraction_broadband)
  • Langley regression Io, adjusted to 1AU, Barnard, Direct BroadBand(barnard_solar_constant_sdist_broadband)
  • rejection flag for Direct Narrowband Filter5(barnard_badflag_filter5)
  • rejection flag for Direct Narrowband Filter6(barnard_badflag_filter6)
  • rejection flag for Direct Narrowband Filter1(barnard_badflag_filter1)
  • rejection flag for Direct Narrowband Filter2(barnard_badflag_filter2)
  • rejection flag for Direct Narrowband Filter3(barnard_badflag_filter3)
  • rejection flag for Direct Narrowband Filter4(barnard_badflag_filter4)
  • solar constant for the Direct Narrowband Filter3(michalsky_solar_constant_filter3)
  • Langley regression Io, Michalsky, Direct Narrowband Filter4(michalsky_solar_constant_filter4)
  • Langley regression Io, Michalsky, Direct Narrowband Filter5(michalsky_solar_constant_filter5)
  • solar constant for the Direct Narrowband Filter6(michalsky_solar_constant_filter6)
  • solar constant for the Direct Narrowband Filter1(michalsky_solar_constant_filter1)
  • Langley regression Io, Michalsky, Direct Narrowband Filter2(michalsky_solar_constant_filter2)
  • number of points used in final linear fit for the Direct Broadband(barnard_number_points_broadband)
  • solar constant corrected for solar distance for the Direct Narrowband Filter1(barnard_solar_constant_sdist_filter1)
  • solar constant corrected for solar distance for the Direct Narrowband Filter3(barnard_solar_constant_sdist_filter3)
  • solar constant corrected for solar distance for the Direct Narrowband Filter2(barnard_solar_constant_sdist_filter2)
  • solar constant corrected for solar distance for the Direct Narrowband Filter5(barnard_solar_constant_sdist_filter5)
  • Langley regression Io, adjusted to 1AU, Barnard, Direct Narrowband Filter4(barnard_solar_constant_sdist_filter4)
  • solar constant corrected for solar distance for the Direct Narrowband Filter6(barnard_solar_constant_sdist_filter6)
  • error in optical depth (slope) of final linear fit for the Direct Narrowband
    Filter6(barnard_error_slope_filter6)
  • error in optical depth (slope) of final linear fit for the Direct Narrowband
    Filter3(barnard_error_slope_filter3)
  • error in optical depth (slope) of final linear fit for the Direct Narrowband
    Filter2(barnard_error_slope_filter2)
  • error in optical depth (slope) of final linear fit for the Direct Narrowband
    Filter5(barnard_error_slope_filter5)
  • error in optical depth (slope) of final linear fit for the Direct Narrowband
    Filter4(barnard_error_slope_filter4)
  • error in optical depth (slope) of final linear fit for the Direct Narrowband
    Filter1(barnard_error_slope_filter1)
  • solar constant corrected for solar distance for the Direct Narrowband Filter5(michalsky_solar_constant_sdist_filter5)
  • solar constant corrected for solar distance for the Direct Narrowband Filter6(michalsky_solar_constant_sdist_filter6)
  • solar constant corrected for solar distance for the Direct Narrowband Filter1(michalsky_solar_constant_sdist_filter1)
  • solar constant corrected for solar distance for the Direct Narrowband Filter2(michalsky_solar_constant_sdist_filter2)
  • solar constant corrected for solar distance for the Direct Narrowband Filter3(michalsky_solar_constant_sdist_filter3)
  • solar constant corrected for solar distance for the Direct Narrowband Filter4(michalsky_solar_constant_sdist_filter4)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter1(michalsky_good_fraction_filter1)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter2(michalsky_good_fraction_filter2)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter3(michalsky_good_fraction_filter3)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter4(michalsky_good_fraction_filter4)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter5(michalsky_good_fraction_filter5)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter6(michalsky_good_fraction_filter6)
  • standard deviation around regression line for the Direct Narrowband Filter5(michalsky_standard_deviation_filter5)
  • standard deviation around regression line for the Direct Narrowband Filter4(michalsky_standard_deviation_filter4)
  • standard deviation around regression line for the Direct Narrowband Filter3(michalsky_standard_deviation_filter3)
  • standard deviation around regression line for the Direct Narrowband Filter2(michalsky_standard_deviation_filter2)
  • standard deviation around regression line for the Direct Narrowband Filter1(michalsky_standard_deviation_filter1)
  • standard deviation around regression line for the Direct Narrowband Filter6(michalsky_standard_deviation_filter6)
  • standard deviation around regression line for the Direct BroadBand(michalsky_standard_deviation_broadband)
  • rejection flag for Direct Broadband(barnard_badflag_broadband)
  • rejection flag for Direct Narrowband Filter1(michalsky_badflag_filter1)
  • rejection flag for Direct Narrowband Filter2(michalsky_badflag_filter2)
  • rejection flag for Direct Narrowband Filter3(michalsky_badflag_filter3)
  • rejection flag for Direct Narrowband Filter4(michalsky_badflag_filter4)
  • rejection flag for Direct Narrowband Filter5(michalsky_badflag_filter5)
  • rejection flag for Direct Narrowband Filter6(michalsky_badflag_filter6)
  • number of points used in final linear fit for the Direct Narrowband Filter1(michalsky_number_points_filter1)
  • number of points used in final linear fit for the Direct Narrowband Filter2(michalsky_number_points_filter2)
  • number of points used in final linear fit for the Direct Narrowband Filter3(michalsky_number_points_filter3)
  • number of points used in final linear fit for the Direct Narrowband Filter4(michalsky_number_points_filter4)
  • number of points used in final linear fit for the Direct Narrowband Filter5(michalsky_number_points_filter5)
  • number of points used in final linear fit for the Direct Narrowband Filter6(michalsky_number_points_filter6)
  • optical depth for the Direct BroadBand(barnard_optical_depth_broadband)
  • error in optical depth (slope) of final linear fit for the Direct Broadband(barnard_error_slope_broadband)
  • optical depth for the Direct BroadBand(michalsky_optical_depth_broadband)
  • Angstrom exponent(michalsky_angstrom_exponent)
  • optical depth for the Direct Narrowband Filter2(michalsky_optical_depth_filter2)
  • optical depth for the Direct Narrowband Filter1(michalsky_optical_depth_filter1)
  • optical depth for the Direct Narrowband Filter4(michalsky_optical_depth_filter4)
  • optical depth for the Direct Narrowband Filter3(michalsky_optical_depth_filter3)
  • optical depth for the Direct Narrowband Filter6(michalsky_optical_depth_filter6)
  • optical depth for the Direct Narrowband Filter5(michalsky_optical_depth_filter5)
  • rejection flag for Direct Broadband(michalsky_badflag_broadband)
  • Langley regression Io, Michalsky, Direct BroadBand(michalsky_solar_constant_broadband)
  • Angstrom exponent(barnard_angstrom_exponent)
  • number of points used in final linear fit for the Direct Broadband(michalsky_number_points_broadband)
  • percentage of initial points used in final linear fit for the Direct Broadband(michalsky_good_fraction_broadband)
  • solar constant corrected for solar distance for the Direct Broadband(michalsky_solar_constant_sdist_broadband)
  • number of points used in final linear fit for the Direct Narrowband Filter5(barnard_number_points_filter5)
  • number of points used in final linear fit for the Direct Narrowband Filter6(barnard_number_points_filter6)
  • number of points used in final linear fit for the Direct Narrowband Filter1(barnard_number_points_filter1)
  • number of points used in final linear fit for the Direct Narrowband Filter2(barnard_number_points_filter2)
  • number of points used in final linear fit for the Direct Narrowband Filter3(barnard_number_points_filter3)
  • number of points used in final linear fit for the Direct Narrowband Filter4(barnard_number_points_filter4)
  • error in final linear fit for the Direct BroadBand(barnard_error_fit_broadband)
more
sgpsirsE12.a1:
  • Shortwave direct normal irradiance, pyrheliometer(short_direct_normal)
  • Shortwave direct normal irradiance, pyrheliometer, minima(short_direct_normal_min)
  • Downwelling Shortwave Diffuse Hemispheric Irradiance, Pyranometer, Standard
    Deviation(down_short_diffuse_hemisp_std)
  • Downwelling Longwave Hemispheric Irradiance, Ventilated Pyrgeometer, Standard
    Deviation(down_long_hemisp_std)
  • Battery voltage(vBatt)
  • Upwelling Longwave Hemispheric Irradiance, Pyrgeometer, Minima(up_long_hemisp_min)
  • Downwelling Shortwave Hemispheric Irradiance, Ventilated Pyrgeometer, Standard
    Deviation(down_short_hemisp_std)
  • Shortwave Direct Normal Irradiance, Pyrgeometer, Standard Deviation(short_direct_normal_std)
  • Upwelling longwave hemispheric irradiance, pyrgeometer, maxima(up_long_hemisp_max)
  • 25 meter Upwelling Shortwave Hemispheric Irradiance, Pyranometer(up_short_hemisp)
  • Upwelling (10 meter) Shortwave Hemispheric Irradiance, Ventilated Pyranometer,
    Standard Deviation(up_short_hemisp_std)
  • 10 meter Upwelling Longwave Hemispheric Irradiance, Pyrgeometer(up_long_hemisp)
  • Downwelling Shortwave Diffuse Hemispheric Irradiance, Ventilated Pyranometer(down_short_diffuse_hemisp)
  • Downwelling Shortwave Diffuse Hemispheric Irradiance, Pyrgeometer, Minima(down_short_diffuse_hemisp_min)
  • Downwelling shortwave diffuse hemispheric irradiance, pyranometer, maxima(down_short_diffuse_hemisp_max)
  • Down-welling unshaded pyranometer voltage(down_short_hemisp)
  • Downwelling Longwave Hemispheric Irradiance, Pyrgeometer, Maxima(down_long_hemisp_max)
  • Downwelling Longwave Hemispheric Irradiance, Pyrgeometer, Minima(down_long_hemisp_min)
  • Upwelling (10 meter) Longwave Hemispheric Irradiance, Ventilated Pyrgeometer,
    Standard Deviation(up_long_hemisp_std)
  • Upwelling shortwave hemispheric irradiance, pyranometer, minima(up_short_hemisp_min)
  • Shortwave Direct Normal Irradiance, Pyrheliometer, Maxima(short_direct_normal_max)
  • Downwelling Shortwave Hemispheric Irradiance, Pyranometer, Minima(down_short_hemisp_min)
  • Downwelling longwave hemispheric irradiance, pyrgeometer(down_long_hemisp)
  • Downwelling shortwave hemispheric irradiance, pyranometer, maxima(down_short_hemisp_max)
  • Upwelling (10 meter) Shortwave Hemispheric Irradiance, Pyranometer, Maxima(up_short_hemisp_max)
more
sgpsirsE12.a0:
  • Direct-beam normal solar irradiance(nip)
  • Down-welling pyrgeometer case thermistor resistance(down_long_case_resist)
  • Downwelling longwave hemispheric irradiance, pyrgeometer(down_long_hemisp)
  • Up-welling pyrgeometer dome thermistor resistance(up_long_dome_resist)
  • Up-welling pyrgeometer case thermistor resistance(up_long_case_resist)
  • Shaded pyranometer voltage(short_diffuse)
  • 25 meter Upwelling Shortwave Hemispheric Irradiance, Pyranometer(up_short_hemisp)
  • 10 meter Upwelling Longwave Hemispheric Irradiance, Pyrgeometer(up_long_hemisp)
  • Down-welling pyrgeometer dome thermistor resistance(down_long_dome_resist)
  • Down-welling unshaded pyranometer voltage(down_short_hemisp)
more
sgpmfrsrlangleyE9.c1:
  • solar constant corrected for solar distance for the Direct Narrowband Filter2(michalsky_solar_constant_sdist_filter2)
  • solar constant corrected for solar distance for the Direct Narrowband Filter1(michalsky_solar_constant_sdist_filter1)
  • solar constant corrected for solar distance for the Direct Narrowband Filter6(michalsky_solar_constant_sdist_filter6)
  • solar constant corrected for solar distance for the Direct Narrowband Filter5(michalsky_solar_constant_sdist_filter5)
  • solar constant corrected for solar distance for the Direct Narrowband Filter4(michalsky_solar_constant_sdist_filter4)
  • solar constant corrected for solar distance for the Direct Narrowband Filter3(michalsky_solar_constant_sdist_filter3)
  • percentage of initial points used in final linear fit for the Direct Broadband(michalsky_good_fraction_broadband)
  • Angstrom exponent(barnard_angstrom_exponent)
  • Langley regression Io, Michalsky, Direct BroadBand(michalsky_solar_constant_broadband)
  • error in final linear fit for the Direct Narrowband Filter6(barnard_error_fit_filter6)
  • error in final linear fit for the Direct Narrowband Filter1(barnard_error_fit_filter1)
  • error in final linear fit for the Direct Narrowband Filter3(barnard_error_fit_filter3)
  • error in final linear fit for the Direct Narrowband Filter2(barnard_error_fit_filter2)
  • error in final linear fit for the Direct Narrowband Filter5(barnard_error_fit_filter5)
  • error in final linear fit for the Direct Narrowband Filter4(barnard_error_fit_filter4)
  • number of points used in final linear fit for the Direct Broadband(barnard_number_points_broadband)
  • rejection flag for Direct Broadband(barnard_badflag_broadband)
  • rejection flag for Direct Narrowband Filter2(barnard_badflag_filter2)
  • rejection flag for Direct Narrowband Filter1(barnard_badflag_filter1)
  • rejection flag for Direct Narrowband Filter6(barnard_badflag_filter6)
  • rejection flag for Direct Narrowband Filter5(barnard_badflag_filter5)
  • rejection flag for Direct Narrowband Filter4(barnard_badflag_filter4)
  • rejection flag for Direct Narrowband Filter3(barnard_badflag_filter3)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter6(barnard_good_fraction_filter6)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter4(barnard_good_fraction_filter4)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter5(barnard_good_fraction_filter5)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter2(barnard_good_fraction_filter2)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter3(barnard_good_fraction_filter3)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter1(barnard_good_fraction_filter1)
  • percentage of initial points used in final linear fit for the Direct Broadband(barnard_good_fraction_broadband)
  • Angstrom exponent(michalsky_angstrom_exponent)
  • error in final linear fit for the Direct BroadBand(barnard_error_fit_broadband)
  • optical depth for the Direct Narrowband Filter2(michalsky_optical_depth_filter2)
  • optical depth for the Direct Narrowband Filter1(michalsky_optical_depth_filter1)
  • optical depth for the Direct Narrowband Filter6(michalsky_optical_depth_filter6)
  • optical depth for the Direct Narrowband Filter5(michalsky_optical_depth_filter5)
  • optical depth for the Direct Narrowband Filter4(michalsky_optical_depth_filter4)
  • optical depth for the Direct Narrowband Filter3(michalsky_optical_depth_filter3)
  • optical depth for the Direct BroadBand(michalsky_optical_depth_broadband)
  • number of points used in final linear fit for the Direct Narrowband Filter6(michalsky_number_points_filter6)
  • number of points used in final linear fit for the Direct Narrowband Filter4(michalsky_number_points_filter4)
  • number of points used in final linear fit for the Direct Narrowband Filter5(michalsky_number_points_filter5)
  • number of points used in final linear fit for the Direct Narrowband Filter2(michalsky_number_points_filter2)
  • number of points used in final linear fit for the Direct Narrowband Filter3(michalsky_number_points_filter3)
  • number of points used in final linear fit for the Direct Narrowband Filter1(michalsky_number_points_filter1)
  • optical depth for the Direct Narrowband Filter3(barnard_optical_depth_filter3)
  • optical depth for the Direct Narrowband Filter2(barnard_optical_depth_filter2)
  • optical depth for the Direct Narrowband Filter1(barnard_optical_depth_filter1)
  • optical depth for the Direct Narrowband Filter6(barnard_optical_depth_filter6)
  • optical depth for the Direct Narrowband Filter5(barnard_optical_depth_filter5)
  • optical depth for the Direct Narrowband Filter4(barnard_optical_depth_filter4)
  • solar constant for the Direct Narrowband Filter3(michalsky_solar_constant_filter3)
  • Langley regression Io, Michalsky, Direct Narrowband Filter4(michalsky_solar_constant_filter4)
  • solar constant for the Direct Narrowband Filter1(michalsky_solar_constant_filter1)
  • Langley regression Io, Michalsky, Direct Narrowband Filter2(michalsky_solar_constant_filter2)
  • Langley regression Io, Michalsky, Direct Narrowband Filter5(michalsky_solar_constant_filter5)
  • solar constant for the Direct Narrowband Filter6(michalsky_solar_constant_filter6)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter6(michalsky_good_fraction_filter6)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter5(michalsky_good_fraction_filter5)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter4(michalsky_good_fraction_filter4)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter3(michalsky_good_fraction_filter3)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter2(michalsky_good_fraction_filter2)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter1(michalsky_good_fraction_filter1)
  • number of points used in final linear fit for the Direct Broadband(michalsky_number_points_broadband)
  • standard deviation around regression line for the Direct BroadBand(michalsky_standard_deviation_broadband)
  • Langley regression Io, adjusted to 1AU, Barnard, Direct BroadBand(barnard_solar_constant_sdist_broadband)
  • error in optical depth (slope) of final linear fit for the Direct Narrowband
    Filter5(barnard_error_slope_filter5)
  • error in optical depth (slope) of final linear fit for the Direct Narrowband
    Filter4(barnard_error_slope_filter4)
  • error in optical depth (slope) of final linear fit for the Direct Narrowband
    Filter6(barnard_error_slope_filter6)
  • error in optical depth (slope) of final linear fit for the Direct Narrowband
    Filter1(barnard_error_slope_filter1)
  • error in optical depth (slope) of final linear fit for the Direct Narrowband
    Filter3(barnard_error_slope_filter3)
  • error in optical depth (slope) of final linear fit for the Direct Narrowband
    Filter2(barnard_error_slope_filter2)
  • rejection flag for Direct Narrowband Filter2(michalsky_badflag_filter2)
  • rejection flag for Direct Narrowband Filter3(michalsky_badflag_filter3)
  • rejection flag for Direct Narrowband Filter4(michalsky_badflag_filter4)
  • rejection flag for Direct Narrowband Filter5(michalsky_badflag_filter5)
  • rejection flag for Direct Narrowband Filter6(michalsky_badflag_filter6)
  • rejection flag for Direct Narrowband Filter1(michalsky_badflag_filter1)
  • solar constant corrected for solar distance for the Direct Broadband(michalsky_solar_constant_sdist_broadband)
  • optical depth for the Direct BroadBand(barnard_optical_depth_broadband)
  • rejection flag for Direct Broadband(michalsky_badflag_broadband)
  • solar constant corrected for solar distance for the Direct Narrowband Filter1(barnard_solar_constant_sdist_filter1)
  • solar constant corrected for solar distance for the Direct Narrowband Filter6(barnard_solar_constant_sdist_filter6)
  • Langley regression Io, adjusted to 1AU, Barnard, Direct Narrowband Filter4(barnard_solar_constant_sdist_filter4)
  • solar constant corrected for solar distance for the Direct Narrowband Filter5(barnard_solar_constant_sdist_filter5)
  • solar constant corrected for solar distance for the Direct Narrowband Filter2(barnard_solar_constant_sdist_filter2)
  • solar constant corrected for solar distance for the Direct Narrowband Filter3(barnard_solar_constant_sdist_filter3)
  • standard deviation around regression line for the Direct Narrowband Filter4(michalsky_standard_deviation_filter4)
  • standard deviation around regression line for the Direct Narrowband Filter5(michalsky_standard_deviation_filter5)
  • standard deviation around regression line for the Direct Narrowband Filter6(michalsky_standard_deviation_filter6)
  • standard deviation around regression line for the Direct Narrowband Filter1(michalsky_standard_deviation_filter1)
  • standard deviation around regression line for the Direct Narrowband Filter2(michalsky_standard_deviation_filter2)
  • standard deviation around regression line for the Direct Narrowband Filter3(michalsky_standard_deviation_filter3)
  • number of points used in final linear fit for the Direct Narrowband Filter1(barnard_number_points_filter1)
  • number of points used in final linear fit for the Direct Narrowband Filter2(barnard_number_points_filter2)
  • number of points used in final linear fit for the Direct Narrowband Filter5(barnard_number_points_filter5)
  • number of points used in final linear fit for the Direct Narrowband Filter6(barnard_number_points_filter6)
  • number of points used in final linear fit for the Direct Narrowband Filter3(barnard_number_points_filter3)
  • number of points used in final linear fit for the Direct Narrowband Filter4(barnard_number_points_filter4)
  • error in optical depth (slope) of final linear fit for the Direct Broadband(barnard_error_slope_broadband)
more
sgpswatspcpE12.a1:
  • Total precipitation over one minute sampling period(precip)
more
sgp15ebbrE9.b1:
  • Soil moisture 4 (resistance ratio)(soil_moisture_4_rr)
  • Soil temperature 1 (resistance ratio)(soil_temp_1_rr)
  • Soil heat flow 1 (mV)(soil_heat_flow_1_mv)
  • Soil moisture 3 (resistance ratio)(soil_moisture_3_rr)
  • Soil moisture 5 (resistance ratio)(soil_moisture_5_rr)
  • Left T/RH sensor temperature (resistance ratio)(temp_trh_left_rr)
  • Reference temperature in enclosure (resistance ratio)(temp_reference_rr)
  • Left air temperature(temp_air_left)
  • Soil heat flow 2 (mV)(soil_heat_flow_2_mv)
  • Soil temperature 5 (resistance ratio)(soil_temp_5_rr)
  • Soil temperature 4 (resistance ratio)(soil_temp_4_rr)
  • Battery voltage(battery_voltage)
  • Left relative humidity (mV)(rh_left_mv)
  • Atmospheric pressure (mV)(atmos_pressure_mv)
  • Right T/RH sensor temperature (resistance ratio)(temp_trh_right_rr)
  • Soil heat flow 3 (mV)(soil_heat_flow_3_mv)
  • AEM position indicator(home_signal)
  • Soil moisture 5 (resistance)(soil_moisture_5_r)
  • Wind direction vector mean (mV)(wdir_vec_mean_mv)
  • Soil moisture 1 (resistance ratio)(soil_moisture_1_rr)
  • Right air temperature(temp_air_right)
  • Soil moisture 4 (resistance)(soil_moisture_4_r)
  • Soil moisture 3 (resistance)(soil_moisture_3_r)
  • Soil heat flow 4 (mV)(soil_heat_flow_4_mv)
  • Soil temperature 3 (resistance ratio)(soil_temp_3_rr)
  • Soil moisture 2 (resistance)(soil_moisture_2_r)
  • Soil temperature 2 (resistance ratio)(soil_temp_2_rr)
  • Soil moisture 1 (resistance)(soil_moisture_1_r)
  • Wind speed arithmetic mean(wspd_arith_mean)
  • Soil moisture 2 (resistance ratio)(soil_moisture_2_rr)
  • Right relative humidity (mV)(rh_right_mv)
  • Soil heat flow 5 (mV)(soil_heat_flow_5_mv)
  • Net radiation (mV)(net_radiation_mv)
more
sgp30ebbrE32.b1:
  • Top T/RH sensor temperature(temp_trh_top)
  • Surface soil heat flux 5(surface_soil_heat_flux_5)
  • Surface soil heat flux 4(surface_soil_heat_flux_4)
  • Surface soil heat flux 3(surface_soil_heat_flux_3)
  • Surface soil heat flux 2(surface_soil_heat_flux_2)
  • Surface soil heat flux 1(surface_soil_heat_flux_1)
  • Surface sensible heat flux(sensible_heat_flux)
  • Bowen ratio(bowen_ratio)
  • Change in energy storage 5, 0-5 cm soil layer(energy_storage_change_5)
  • Change in energy storage 2, 0-5 cm soil layer(energy_storage_change_2)
  • Change in energy storage 1, 0-5 cm soil layer(energy_storage_change_1)
  • Change in energy storage 4, 0-5 cm soil layer(energy_storage_change_4)
  • Change in energy storage 3, 0-5 cm soil layer(energy_storage_change_3)
  • Soil heat flow 3(soil_heat_flow_3)
  • Soil heat flow 4(soil_heat_flow_4)
  • Soil heat flow 1(soil_heat_flow_1)
  • Soil heat flow 2(soil_heat_flow_2)
  • Soil heat flow 5(soil_heat_flow_5)
  • Wind direction vector mean(wdir_vec_mean)
  • Bottom relative humidity (fractional)(rh_bottom_fraction)
  • Surface soil heat flux, average of fluxes 1-5(surface_soil_heat_flux_avg)
  • Wind speed arithmetic mean(wspd_arith_mean)
  • AEM position indicator 15 to 30 mins(home_signal_30)
  • Soil moisture 4, gravimetric(soil_moisture_4)
  • Soil moisture 5, gravimetric(soil_moisture_5)
  • Soil moisture 1, gravimetric(soil_moisture_1)
  • Soil moisture 2, gravimetric(soil_moisture_2)
  • Soil moisture 3, gravimetric(soil_moisture_3)
  • AEM position indicator 0 to 15 mins(home_signal_15)
  • Wind direction vector mean standard deviation(wdir_vec_std)
  • Soil heat capacity 1(soil_heat_capacity_1)
  • Soil heat capacity 2(soil_heat_capacity_2)
  • Soil heat capacity 3(soil_heat_capacity_3)
  • Soil heat capacity 4(soil_heat_capacity_4)
  • Soil heat capacity 5(soil_heat_capacity_5)
  • Soil temperature 1(soil_temp_1)
  • Soil temperature mean 3(soil_temp_3)
  • Soil temperature 2(soil_temp_2)
  • Half hour averaged soil temperature 5(soil_temp_5)
  • Half hour averaged soil temperature 4(soil_temp_4)
  • Top vapor pressure(vapor_pressure_top)
  • Bottom T/RH sensor temperature(temp_trh_bottom)
  • Top air temperature(temp_air_top)
  • Atmospheric pressure(atmos_pressure)
  • Net radiation(net_radiation)
  • Soil heat flow 1, corrected for soil moisture(corr_soil_heat_flow_1)
  • Soil heat flow 3, corrected for soil moisture(corr_soil_heat_flow_3)
  • Soil heat flow 2, corrected for soil moisture(corr_soil_heat_flow_2)
  • Soil heat flow 5, corrected for soil moisture(corr_soil_heat_flow_5)
  • Soil heat flow 4, corrected for soil moisture(corr_soil_heat_flow_4)
  • Top relative humidity (fractional)(rh_top_fraction)
  • Surface latent heat flux(latent_heat_flux)
  • Reference temperature in enclosure(temp_reference)
  • Bottom vapor pressure(vapor_pressure_bottom)
  • Wind speed vector mean(wspd_vec_mean)
  • Bottom air temperature(temp_air_bottom)
more
sgp30ecorE33.b1:
  • number of samples with \IRGA hardware problem\ flag(n_bad_irga)
  • covariance wq(cvar_wq)
  • covariance wt(cvar_wt)
  • Covariance wc(cvar_wc)
  • Covariance vw(cvar_vw)
  • Covariance vt(cvar_vt)
  • Covariance vq(cvar_vq)
  • covariance vc(cvar_vc)
  • covariance uw(cvar_uw)
  • Covariance uv(cvar_uv)
  • covariance ut(cvar_ut)
  • covariance uq(cvar_uq)
  • Covariance uc(cvar_uc)
  • covariance of tq(cvar_tq)
  • Covariance tc(cvar_tc)
  • Covariance qc(cvar_qc)
  • friction velocity(ustar)
  • Standard deviation of wind direction(std_wind_dir)
  • Standard deviation of wind elevation angle(std_elev)
  • rotated mean w(mean_rot_w)
  • rotated mean v(mean_rot_v)
  • Rotated mean u(mean_rot_u)
  • average voltage of IRGA cooler(mean_cooler)
  • mean co2 concentration (c)(mean_c)
  • mean water vapor concentration (q)(mean_q)
  • mean sonic temperature (t), i.e. virtual temperature(mean_t)
  • Down-boom wind velocity (u)(mean_u)
  • Cross-boom wind velocity (v)(mean_v)
  • Vertical wind velocity (w)(mean_w)
  • Status of source for mixing ratio(real_mr)
  • Status of source for latent heat of vaporization(real_lv)
  • vertical (elevation) wind angle(elev)
  • number of samples with bad sonic status flag(n_bad_son_ic)
  • 0=real or 1=dummy value of cp(real_cp)
  • Rotated covariance vc(cvar_rot_vc)
  • variance of t(var_t)
  • variance of variable u(var_u)
  • Variance of variable mean_v(var_v)
  • variance of variable w(var_w)
  • rotated covariance vq(cvar_rot_vq)
  • Rotated covariance vt(cvar_rot_vt)
  • variance of q(var_q)
  • variance of c(var_c)
  • rotated covariance vw(cvar_rot_vw)
  • Rotated covariance wc(cvar_rot_wc)
  • rotated covariance wt(cvar_rot_wt)
  • rotated covariance wq(cvar_rot_wq)
  • number of bad or out of range w samples(n_bad_w)
  • number of bad or out of range v samples(n_bad_v)
  • number of bad or out of range u samples(n_bad_u)
  • Number of bad or out of range c samples(n_bad_c)
  • Number of bad or out of range t samples(n_bad_t)
  • Number of bad or out of range q samples(n_bad_q)
  • latent heat flux(lv_e)
  • rotated covariance uc(cvar_rot_uc)
  • Rotated covariance uq(cvar_rot_uq)
  • Rotated covariance ut(cvar_rot_ut)
  • rotated covariance uw(cvar_rot_uw)
  • rotated covariance uv(cvar_rot_uv)
  • number of samples with IRGA optical path blocked flag(n_bad_irga_light)
  • Number of c samples removed due to spikes(n_spk_c)
  • Number of u samples removed due to spikes(n_spk_u)
  • number of t samples removed due to spikes(n_spk_t)
  • number of w samples removed due to spikes(n_spk_w)
  • number of v samples removed due to spikes(n_spk_v)
  • Number of q samples removed due to spikes(n_spk_q)
  • Mean value of "spike" t samples(mean_spk_t)
  • mean value of out of range values and spikes of q -9999 if no spikes(mean_spk_q)
  • mean value of \spike\ w samples(mean_spk_w)
  • Mean value of "spike" u samples(mean_spk_u)
  • Mean value of "spike" v samples(mean_spk_v)
  • mean value of out of range values and spikes of c -9999 if no spikes(mean_spk_c)
  • rotation to zero v(phi)
  • vector averaged wind direction(wind_dir)
  • Average temperature (IGRA internal sensor)(temp_irga)
  • momentum flux (dynamic)(k)
  • corrected sensible heat flux(h)
  • kurtosis of variable c(kurt_c)
  • kurtosis of variable w(kurt_w)
  • kurtosis of variable v(kurt_v)
  • kurtosis of variable u(kurt_u)
  • Kurtosis of variable mean_t(kurt_t)
  • kurtosis of variable q(kurt_q)
  • Rotated variance u(var_rot_u)
  • rotated variance w(var_rot_w)
  • variance of v(var_rot_v)
  • Vector averaged wind speed(wind_spd)
  • Water vapor mixing ratio observed by the Raman lidar(mr)
  • Latent heat of vaporization(lv)
  • specific heat of moist air(cp)
  • number of valid c samples(n_good_c)
  • Number of valid w samples(n_good_w)
  • number of valid v samples(n_good_v)
  • Number of valid u samples(n_good_u)
  • number of valid t samples(n_good_t)
  • number of valid q samples(n_good_q)
  • CO2 flux(fc)
  • Atmospheric pressure(atm_pres)
  • skewness of variable q(skew_q)
  • Skewness of variable mean_v(skew_v)
  • skewness of variable u(skew_u)
  • skewness of variable t(skew_t)
  • skewness of variable w(skew_w)
  • skewness of variable c(skew_c)
  • 0=real or 1=dummy value of rho(real_rho)
  • moist air density(rho)
more
sgpdlfptS01.a0:
  • Attenuated backscatter(attenuated_backscatter)
  • Distance to the center of the corresponding range bin(range)
  • Beam azimuth relative to Lidar home point(relative_azimuth)
  • Radial velocity(radial_velocity)
  • Beam Elevation Angle(elevation)
  • Intensity (signal to noise ratio + 1)(intensity)
more
sgpsebsE37.b1:
  • Surface energy balance(surface_energy_balance)
  • Net radiometer temperature(temp_net_radiometer)
  • Soil heat capacity 3(soil_heat_capacity_3)
  • Soil heat capacity 1(soil_heat_capacity_1)
  • Soil heat capacity 2(soil_heat_capacity_2)
  • Surface soil heat flux, average of fluxes 1-5(surface_soil_heat_flux_avg)
  • cloud narrowband albedo(albedo)
  • Net radiation(net radiation)
  • Wetness, rain detector(wetness)
  • Soil moisture 1, gravimetric(soil_moisture_1)
  • Soil moisture 3, gravimetric(soil_moisture_3)
  • Soil moisture 2, gravimetric(soil_moisture_2)
  • Soil heat flow 1(soil_heat_flow_1)
  • Soil heat flow 2(soil_heat_flow_2)
  • Soil heat flow 3(soil_heat_flow_3)
  • Soil temperature 1(soil_temp_1)
  • Soil temperature mean 3(soil_temp_3)
  • Soil temperature 2(soil_temp_2)
  • Down-welling unshaded pyranometer voltage(down_short_hemisp)
  • Surface longwave irradiance(up_long)
  • 25 meter Upwelling Shortwave Hemispheric Irradiance, Pyranometer(up_short_hemisp)
  • Soil heat flow 2, corrected for soil moisture(corr_soil_heat_flow_2)
  • Soil heat flow 3, corrected for soil moisture(corr_soil_heat_flow_3)
  • Soil heat flow 1, corrected for soil moisture(corr_soil_heat_flow_1)
  • Battery voltage(battery_voltage)
  • Surface soil heat flux 3(surface_soil_heat_flux_3)
  • Surface soil heat flux 2(surface_soil_heat_flux_2)
  • Surface soil heat flux 1(surface_soil_heat_flux_1)
  • Change in energy storage 3, 0-5 cm soil layer(energy_storage_change_3)
  • Change in energy storage 1, 0-5 cm soil layer(energy_storage_change_1)
  • Change in energy storage 2, 0-5 cm soil layer(energy_storage_change_2)
  • Sky longwave irradiance(down_long)
more
sgpmfrsrE15.b1:
  • Data logger supply voltage(logger_volt)
  • Cosine correction applied to direct_horizontal_narrowband_filter4(computed_cosine_correction_filter4)
  • Cosine correction applied to direct_horizontal_narrowband_filter3(computed_cosine_correction_filter3)
  • Cosine correction applied to direct_horizontal_narrowband_filter2(computed_cosine_correction_filter2)
  • Cosine correction applied to direct_horizontal_filter1(computed_cosine_correction_filter1)
  • Cosine correction applied to direct_horizontal_filter6(computed_cosine_correction_filter6)
  • Cosine correction applied to direct_horizontal_filter5(computed_cosine_correction_filter5)
  • Direct Normal Broadband Irradiance, cosine corrected, broadband scale applied(direct_normal_broadband)
  • Elevation angle(elevation_angle)
  • Nominal calibration factor, applied to filter1 data(nominal_calibration_factor_filter1)
  • Nominal calibration factor, applied to filter3 data(nominal_calibration_factor_filter3)
  • Nominal calibration factor, applied to filter2 data(nominal_calibration_factor_filter2)
  • Nominal calibration factor, applied to filter5 data(nominal_calibration_factor_filter5)
  • Nominal calibration factor, applied to filter4 data(nominal_calibration_factor_filter4)
  • Nominal calibration factor, applied to filter6 data(nominal_calibration_factor_filter6)
  • Ratio of direct_normal_broadband to diffuse_hemisp_broadband(direct_diffuse_ratio_broadband)
  • Cosine correction applied to direct_horizontal_broadband(computed_cosine_correction_broadband)
  • Cosine correction of filter1 diffuse, assuming Rayleigh sky at 45 degree zenith
    angle(diffuse_correction_filter1)
  • Cosine correction of filter3 diffuse, assuming Rayleigh sky at 45 deg zenith
    angle(diffuse_correction_filter3)
  • Cosine correction of filter2 diffuse, assuming Rayleigh sky at 45 deg zenith
    angle(diffuse_correction_filter2)
  • Cosine correction of filter5 diffuse, assuming Rayleigh sky at 45 deg zenith
    angle(diffuse_correction_filter5)
  • Cosine correction of filter4 diffuse, assuming Rayleigh sky at 45 deg zenith
    angle(diffuse_correction_filter4)
  • Cosine correction of filter6 diffuse, assuming Rayleigh sky at 45 deg zenith
    angle(diffuse_correction_filter6)
  • Cosine solar zenith angle(cosine_solar_zenith_angle)
  • angle of incidence during cosine bench measurements(bench_angle)
  • Normalized filter function data, filter 6, measured transmittance value obtained
    during bench calibrations(normalized_transmittance_filter6)
  • Normalized filter function data, filter 4, measured transmittance value obtained
    during bench calibrations(normalized_transmittance_filter4)
  • Normalized filter function data, filter 5, measured transmittance value obtained
    during bench calibrations(normalized_transmittance_filter5)
  • Normalized filter function data, filter 2, measured transmittance value obtained
    during bench calibrations(normalized_transmittance_filter2)
  • Normalized filter function data, filter 3, measured transmittance value obtained
    during bench calibrations(normalized_transmittance_filter3)
  • Normalized filter function data, filter 1, measured transmittance value obtained
    during bench calibrations(normalized_transmittance_filter1)
  • Nominal calibration factor, applied to broadband data(nominal_calibration_factor_broadband)
  • Alltime hemispheric broadband irradiance(alltime_hemisp_broadband)
  • Diffuse Hemispheric Broadband Irradiance, offset corrected(diffuse_hemisp_broadband)
  • Air mass(airmass)
  • Cosine correction, west to east, filter1(cosine_correction_we_filter1)
  • Cosine correction, west to east, filter5(cosine_correction_we_filter5)
  • Cosine correction, west to east, filter4(cosine_correction_we_filter4)
  • cosine correction, west to east, filter3(cosine_correction_we_filter3)
  • cosine correction, west to east, filter2(cosine_correction_we_filter2)
  • cosine correction, west to east, filter6(cosine_correction_we_filter6)
  • Normalized filter function data, filter 3, wavelength value obtained during
    bench calibrations(wavelength_filter3)
  • Normalized filter function data, filter 2, wavelength value obtained during
    bench calibrations(wavelength_filter2)
  • Normalized filter function data, filter 1, wavelength value obtained during
    bench calibrations(wavelength_filter1)
  • Normalized filter function data, filter 6, wavelength value obtained during
    bench calibrations(wavelength_filter6)
  • Normalized filter function data, filter 5, wavelength value obtained during
    bench calibrations(wavelength_filter5)
  • Normalized filter function data, filter 4, wavelength value obtained during
    bench calibrations(wavelength_filter4)
  • Detector temperature(head_temp)
  • Narrowband Direct Horizontal Irradiance, Filter 6, cosine corrected(direct_horizontal_narrowband_filter6)
  • Direct horizontal narrowband irradiance, filter 1(direct_horizontal_narrowband_filter1)
  • Narrowband Direct Horizontal Irradiance, Filter 2, cosine corrected(direct_horizontal_narrowband_filter2)
  • Direct Horizontal Narrowband Irradiance, Filter 3(direct_horizontal_narrowband_filter3)
  • Narrowband Direct Horizontal Irradiance, Filter 4, cosine corrected(direct_horizontal_narrowband_filter4)
  • Narrowband Direct Horizontal Irradiance, Filter 5, cosine corrected(direct_horizontal_narrowband_filter5)
  • Offset subtracted from hemispheric and diffuse broadband data(offset_broadband)
  • Cosine correction of broadband diffuse, assuming Rayleigh sky at 45 degree
    zenith angle(diffuse_correction_broadband)
  • Alltime narrowband hemispheric irradiance, filter 2(alltime_hemisp_narrowband_filter2)
  • Alltime narrowband hemispheric irradiance, filter 1(alltime_hemisp_narrowband_filter1)
  • Alltime Narrowband Hemispheric Irradiance, Filter 6(alltime_hemisp_narrowband_filter6)
  • Alltime narrowband hemispheric irradiance, filter 5(alltime_hemisp_narrowband_filter5)
  • Alltime Narrowband Hemispheric Irradiance, Filter 4(alltime_hemisp_narrowband_filter4)
  • Alltime Narrowband Hemispheric Irradiance, Filter 3(alltime_hemisp_narrowband_filter3)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 2, offset corrected(diffuse_hemisp_narrowband_filter2)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 1, offset corrected(diffuse_hemisp_narrowband_filter1)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 4(diffuse_hemisp_narrowband_filter4)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 3(diffuse_hemisp_narrowband_filter3)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 6, offset corrected(diffuse_hemisp_narrowband_filter6)
  • Narrowband diffuse hemispheric irradiance, filter 5, offset and cosine corrected(diffuse_hemisp_narrowband_filter5)
  • cosine correction, west to east, broadband channel(cosine_correction_we_broadband)
  • Narrowband Direct Normal Irradiance, Filter 1(direct_normal_narrowband_filter1)
  • Direct normal narrowband irradiance, filter 2, offset corrected(direct_normal_narrowband_filter2)
  • Narrowband Direct Normal Irradiance, Filter 3, cosine corrected(direct_normal_narrowband_filter3)
  • Direct normal narrowband irradiance, filter 4, offset corrected(direct_normal_narrowband_filter4)
  • Narrowband Direct Normal Irradiance, Filter 5(direct_normal_narrowband_filter5)
  • Direct normal narrowband irradiance, filter 6, offset corrected(direct_normal_narrowband_filter6)
  • Narrowband Hemispheric Irradiance, Filter 1, offset corrected(hemisp_narrowband_filter1)
  • Narrowband Hemispheric Irradiance, Filter 5, offset corrected(hemisp_narrowband_filter5)
  • Narrowband hemispheric irradiance, filter 4, offset and cosine corrected(hemisp_narrowband_filter4)
  • Narrowband hemispheric irradiance, filter 3, offset and cosine corrected(hemisp_narrowband_filter3)
  • Narrowband Hemispheric Irradiance, Filter 2(hemisp_narrowband_filter2)
  • Narrowband hemispheric irradiance, filter 6, nominal wavelength is 935 nm(hemisp_narrowband_filter6)
  • Azimuth angle(azimuth_angle)
  • Ratio of direct_normal_filter4 to diffuse_hemisp_filter4(direct_diffuse_ratio_filter4)
  • Ratio of direct_normal_narrowband_filter3 to diffuse_hemisp_narrowband_filter3(direct_diffuse_ratio_filter3)
  • Ratio of direct_normal_narrowband_filter6 to diffuse_hemisp_narrowband_filter6(direct_diffuse_ratio_filter6)
  • Ratio of direct_normal_filter5 to diffuse_hemisp_filter5(direct_diffuse_ratio_filter5)
  • Ratio of direct_normal_filter2 to diffuse_hemisp_filter2(direct_diffuse_ratio_filter2)
  • Ratio of direct_normal_filter1 to diffuse_hemisp_filter1(direct_diffuse_ratio_filter1)
  • Hemispheric broadband irradiance(hemisp_broadband)
  • Offset subtracted from upwelling hemispheric filter5 data(offset_filter5)
  • Offset subtracted from direct normal filter4 data(offset_filter4)
  • Offset subtracted from hemispheric and diffuse filter6 data(offset_filter6)
  • Offset subtracted from hemispheric filter1 data(offset_filter1)
  • Offset subtracted from direct normal filter3 data(offset_filter3)
  • Offset subtracted from upwelling hemispheric filter2 data(offset_filter2)
  • cosine correction, south to north, broadband channel(cosine_correction_sn_broadband)
  • cosine correction, south to north, filter6(cosine_correction_sn_filter6)
  • cosine correction, south to north, filter5(cosine_correction_sn_filter5)
  • Cosine correction, south to north, filter2(cosine_correction_sn_filter2)
  • cosine correction, south to north, filter1(cosine_correction_sn_filter1)
  • Cosine correction, south to north, filter4(cosine_correction_sn_filter4)
  • Cosine correction, south to north, filter3(cosine_correction_sn_filter3)
  • Second detector temperature(head_temp2)
  • Direct Horizontal Broadband Irradiance(direct_horizontal_broadband)
  • Data Logger Temperature(logger_temp)
  • Solar zenith angle(solar_zenith_angle)
more
sgpmfrsrlangplotE15.c1:
  • log(irradiance) for the Direct Narrowband Filter1(michalsky_lnI_filter1)
  • log(irradiance) for the Direct Narrowband Filter3, Michalsky(michalsky_lnI_filter3)
  • log(irradiance) for the Direct Narrowband Filter2, Michalsky(michalsky_lnI_filter2)
  • log(irradiance) for the Direct Narrowband Filter5, Michalsky(michalsky_lnI_filter5)
  • log(irradiance) for the Direct Narrowband Filter4, Michalsky(michalsky_lnI_filter4)
  • log(irradiance) for the Direct Narrowband Filter6, Michalsky(michalsky_lnI_filter6)
  • rejected points for the final fit for the Direct Broadband, Barnard(barnard_rejected_broadband)
  • log(irradiance) for the Direct Broadband(michalsky_lnI_broadband)
  • rejected points for the final fit for the Direct Narrowband Filter3, Barnard(barnard_rejected_filter3)
  • rejected points for the final fit for the Direct Narrowband Filter2(barnard_rejected_filter2)
  • rejected points for the final fit for the Direct Narrowband Filter1(barnard_rejected_filter1)
  • rejected points for the final fit for the Direct Narrowband Filter6(barnard_rejected_filter6)
  • rejected points for the final fit for the Direct Narrowband Filter5, Barnard(barnard_rejected_filter5)
  • rejected points for the final fit for the Direct Narrowband Filter4, Barnard(barnard_rejected_filter4)
  • Airmasses(barnard_airmass)
  • log(irradiance) for the Direct Broadband(barnard_lnI_broadband)
  • log(irradiance) for the Direct Narrowband Filter2, Barnard(barnard_lnI_filter2)
  • log(irradiance) for the Direct Narrowband Filter1, Barnard(barnard_lnI_filter1)
  • log(irradiance) for the Direct Narrowband Filter4(barnard_lnI_filter4)
  • log(irradiance) for the Direct Narrowband Filter3, Barnard(barnard_lnI_filter3)
  • log(irradiance) for the Direct Narrowband Filter6(barnard_lnI_filter6)
  • log(irradiance) for the Direct Narrowband Filter5(barnard_lnI_filter5)
  • rejected points for the final fit for the Direct Broadband(michalsky_rejected_broadband)
  • rejected points for the final fit for the Direct Narrowband Filter4, Michalsky(michalsky_rejected_filter4)
  • rejected points for the final fit for the Direct Narrowband Filter3, Michalsky(michalsky_rejected_filter3)
  • rejected points for the final fit for the Direct Narrowband Filter2(michalsky_rejected_filter2)
  • rejected points for the final fit for the Direct Narrowband Filter1, Michalsky(michalsky_rejected_filter1)
  • rejected points for the final fit for the Direct Narrowband Filter6, Michalsky(michalsky_rejected_filter6)
  • rejected points for the final fit for the Direct Narrowband Filter5, Michalsky(michalsky_rejected_filter5)
  • airmass(michalsky_airmass)
more
sgpmfrsrlangplotE38.c1:
  • log(irradiance) for the Direct Broadband(michalsky_lnI_broadband)
  • airmass(michalsky_airmass)
  • rejected points for the final fit for the Direct Narrowband Filter1(barnard_rejected_filter1)
  • rejected points for the final fit for the Direct Narrowband Filter2(barnard_rejected_filter2)
  • Airmasses(barnard_airmass)
  • rejected points for the final fit for the Direct Narrowband Filter3, Barnard(barnard_rejected_filter3)
  • rejected points for the final fit for the Direct Narrowband Filter4, Barnard(barnard_rejected_filter4)
  • rejected points for the final fit for the Direct Narrowband Filter5, Barnard(barnard_rejected_filter5)
  • rejected points for the final fit for the Direct Narrowband Filter6(barnard_rejected_filter6)
  • rejected points for the final fit for the Direct Broadband, Barnard(barnard_rejected_broadband)
  • log(irradiance) for the Direct Broadband(barnard_lnI_broadband)
  • log(irradiance) for the Direct Narrowband Filter6(barnard_lnI_filter6)
  • log(irradiance) for the Direct Narrowband Filter1, Barnard(barnard_lnI_filter1)
  • log(irradiance) for the Direct Narrowband Filter5(barnard_lnI_filter5)
  • log(irradiance) for the Direct Narrowband Filter4(barnard_lnI_filter4)
  • log(irradiance) for the Direct Narrowband Filter3, Barnard(barnard_lnI_filter3)
  • log(irradiance) for the Direct Narrowband Filter2, Barnard(barnard_lnI_filter2)
  • rejected points for the final fit for the Direct Narrowband Filter6, Michalsky(michalsky_rejected_filter6)
  • rejected points for the final fit for the Direct Narrowband Filter4, Michalsky(michalsky_rejected_filter4)
  • rejected points for the final fit for the Direct Narrowband Filter5, Michalsky(michalsky_rejected_filter5)
  • rejected points for the final fit for the Direct Narrowband Filter2(michalsky_rejected_filter2)
  • rejected points for the final fit for the Direct Narrowband Filter3, Michalsky(michalsky_rejected_filter3)
  • rejected points for the final fit for the Direct Narrowband Filter1, Michalsky(michalsky_rejected_filter1)
  • log(irradiance) for the Direct Narrowband Filter6, Michalsky(michalsky_lnI_filter6)
  • log(irradiance) for the Direct Narrowband Filter5, Michalsky(michalsky_lnI_filter5)
  • log(irradiance) for the Direct Narrowband Filter4, Michalsky(michalsky_lnI_filter4)
  • log(irradiance) for the Direct Narrowband Filter3, Michalsky(michalsky_lnI_filter3)
  • log(irradiance) for the Direct Narrowband Filter2, Michalsky(michalsky_lnI_filter2)
  • log(irradiance) for the Direct Narrowband Filter1(michalsky_lnI_filter1)
  • rejected points for the final fit for the Direct Broadband(michalsky_rejected_broadband)
more
sgpsebsE14.b1:
  • Soil heat flow 2(soil_heat_flow_2)
  • Soil heat flow 3(soil_heat_flow_3)
  • Soil heat flow 1(soil_heat_flow_1)
  • Net radiometer temperature(temp_net_radiometer)
  • 25 meter Upwelling Shortwave Hemispheric Irradiance, Pyranometer(up_short_hemisp)
  • cloud narrowband albedo(albedo)
  • Soil heat capacity 2(soil_heat_capacity_2)
  • Soil heat capacity 3(soil_heat_capacity_3)
  • Soil heat capacity 1(soil_heat_capacity_1)
  • Soil moisture 2, gravimetric(soil_moisture_2)
  • Soil moisture 1, gravimetric(soil_moisture_1)
  • Soil moisture 3, gravimetric(soil_moisture_3)
  • Soil temperature mean 3(soil_temp_3)
  • Soil temperature 1(soil_temp_1)
  • Soil temperature 2(soil_temp_2)
  • Wetness, rain detector(wetness)
  • Change in energy storage 3, 0-5 cm soil layer(energy_storage_change_3)
  • Change in energy storage 2, 0-5 cm soil layer(energy_storage_change_2)
  • Change in energy storage 1, 0-5 cm soil layer(energy_storage_change_1)
  • Sky longwave irradiance(down_long)
  • Soil heat flow 1, corrected for soil moisture(corr_soil_heat_flow_1)
  • Soil heat flow 2, corrected for soil moisture(corr_soil_heat_flow_2)
  • Soil heat flow 3, corrected for soil moisture(corr_soil_heat_flow_3)
  • Surface energy balance(surface_energy_balance)
  • Battery voltage(battery_voltage)
  • Net radiation(net radiation)
  • Surface soil heat flux, average of fluxes 1-5(surface_soil_heat_flux_avg)
  • Surface soil heat flux 3(surface_soil_heat_flux_3)
  • Surface soil heat flux 1(surface_soil_heat_flux_1)
  • Surface soil heat flux 2(surface_soil_heat_flux_2)
  • Down-welling unshaded pyranometer voltage(down_short_hemisp)
  • Surface longwave irradiance(up_long)
more
sgpirt200msE9.a1:
  • Sky Infra-Red Temperature(sky_ir_temp)
  • Internal Reference Infra Red Temperature(ref_ir_temp)
more
sgpmfrsrlangleyE38.c1:
  • error in optical depth (slope) of final linear fit for the Direct Broadband(barnard_error_slope_broadband)
  • optical depth for the Direct Narrowband Filter1(michalsky_optical_depth_filter1)
  • optical depth for the Direct Narrowband Filter2(michalsky_optical_depth_filter2)
  • optical depth for the Direct Narrowband Filter3(michalsky_optical_depth_filter3)
  • optical depth for the Direct Narrowband Filter4(michalsky_optical_depth_filter4)
  • optical depth for the Direct Narrowband Filter5(michalsky_optical_depth_filter5)
  • optical depth for the Direct Narrowband Filter6(michalsky_optical_depth_filter6)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter4(michalsky_good_fraction_filter4)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter3(michalsky_good_fraction_filter3)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter2(michalsky_good_fraction_filter2)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter1(michalsky_good_fraction_filter1)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter6(michalsky_good_fraction_filter6)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter5(michalsky_good_fraction_filter5)
  • Langley regression Io, adjusted to 1AU, Barnard, Direct BroadBand(barnard_solar_constant_sdist_broadband)
  • number of points used in final linear fit for the Direct Narrowband Filter3(michalsky_number_points_filter3)
  • number of points used in final linear fit for the Direct Narrowband Filter2(michalsky_number_points_filter2)
  • number of points used in final linear fit for the Direct Narrowband Filter1(michalsky_number_points_filter1)
  • number of points used in final linear fit for the Direct Narrowband Filter6(michalsky_number_points_filter6)
  • number of points used in final linear fit for the Direct Narrowband Filter5(michalsky_number_points_filter5)
  • number of points used in final linear fit for the Direct Narrowband Filter4(michalsky_number_points_filter4)
  • percentage of initial points used in final linear fit for the Direct Broadband(michalsky_good_fraction_broadband)
  • rejection flag for Direct Narrowband Filter5(barnard_badflag_filter5)
  • rejection flag for Direct Narrowband Filter6(barnard_badflag_filter6)
  • rejection flag for Direct Narrowband Filter3(barnard_badflag_filter3)
  • rejection flag for Direct Narrowband Filter4(barnard_badflag_filter4)
  • rejection flag for Direct Narrowband Filter1(barnard_badflag_filter1)
  • rejection flag for Direct Narrowband Filter2(barnard_badflag_filter2)
  • rejection flag for Direct Broadband(michalsky_badflag_broadband)
  • standard deviation around regression line for the Direct Narrowband Filter1(michalsky_standard_deviation_filter1)
  • standard deviation around regression line for the Direct Narrowband Filter4(michalsky_standard_deviation_filter4)
  • standard deviation around regression line for the Direct Narrowband Filter5(michalsky_standard_deviation_filter5)
  • standard deviation around regression line for the Direct Narrowband Filter2(michalsky_standard_deviation_filter2)
  • standard deviation around regression line for the Direct Narrowband Filter3(michalsky_standard_deviation_filter3)
  • error in final linear fit for the Direct BroadBand(barnard_error_fit_broadband)
  • standard deviation around regression line for the Direct Narrowband Filter6(michalsky_standard_deviation_filter6)
  • solar constant corrected for solar distance for the Direct Narrowband Filter6(michalsky_solar_constant_sdist_filter6)
  • solar constant corrected for solar distance for the Direct Narrowband Filter5(michalsky_solar_constant_sdist_filter5)
  • solar constant corrected for solar distance for the Direct Narrowband Filter2(michalsky_solar_constant_sdist_filter2)
  • solar constant corrected for solar distance for the Direct Narrowband Filter1(michalsky_solar_constant_sdist_filter1)
  • solar constant corrected for solar distance for the Direct Narrowband Filter4(michalsky_solar_constant_sdist_filter4)
  • solar constant corrected for solar distance for the Direct Narrowband Filter3(michalsky_solar_constant_sdist_filter3)
  • optical depth for the Direct Narrowband Filter1(barnard_optical_depth_filter1)
  • optical depth for the Direct Narrowband Filter3(barnard_optical_depth_filter3)
  • optical depth for the Direct Narrowband Filter2(barnard_optical_depth_filter2)
  • optical depth for the Direct Narrowband Filter5(barnard_optical_depth_filter5)
  • optical depth for the Direct Narrowband Filter4(barnard_optical_depth_filter4)
  • optical depth for the Direct Narrowband Filter6(barnard_optical_depth_filter6)
  • solar constant corrected for solar distance for the Direct Narrowband Filter1(barnard_solar_constant_sdist_filter1)
  • solar constant corrected for solar distance for the Direct Narrowband Filter3(barnard_solar_constant_sdist_filter3)
  • solar constant corrected for solar distance for the Direct Narrowband Filter2(barnard_solar_constant_sdist_filter2)
  • solar constant corrected for solar distance for the Direct Narrowband Filter5(barnard_solar_constant_sdist_filter5)
  • Langley regression Io, adjusted to 1AU, Barnard, Direct Narrowband Filter4(barnard_solar_constant_sdist_filter4)
  • solar constant corrected for solar distance for the Direct Narrowband Filter6(barnard_solar_constant_sdist_filter6)
  • rejection flag for Direct Narrowband Filter2(michalsky_badflag_filter2)
  • rejection flag for Direct Narrowband Filter3(michalsky_badflag_filter3)
  • rejection flag for Direct Narrowband Filter1(michalsky_badflag_filter1)
  • rejection flag for Direct Narrowband Filter6(michalsky_badflag_filter6)
  • rejection flag for Direct Narrowband Filter4(michalsky_badflag_filter4)
  • rejection flag for Direct Narrowband Filter5(michalsky_badflag_filter5)
  • Langley regression Io, Michalsky, Direct BroadBand(michalsky_solar_constant_broadband)
  • standard deviation around regression line for the Direct BroadBand(michalsky_standard_deviation_broadband)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter2(barnard_good_fraction_filter2)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter3(barnard_good_fraction_filter3)
  • rejection flag for Direct Broadband(barnard_badflag_broadband)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter4(barnard_good_fraction_filter4)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter5(barnard_good_fraction_filter5)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter1(barnard_good_fraction_filter1)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter6(barnard_good_fraction_filter6)
  • percentage of initial points used in final linear fit for the Direct Broadband(barnard_good_fraction_broadband)
  • number of points used in final linear fit for the Direct Broadband(barnard_number_points_broadband)
  • optical depth for the Direct BroadBand(michalsky_optical_depth_broadband)
  • error in final linear fit for the Direct Narrowband Filter6(barnard_error_fit_filter6)
  • error in final linear fit for the Direct Narrowband Filter5(barnard_error_fit_filter5)
  • error in final linear fit for the Direct Narrowband Filter4(barnard_error_fit_filter4)
  • error in final linear fit for the Direct Narrowband Filter3(barnard_error_fit_filter3)
  • error in final linear fit for the Direct Narrowband Filter2(barnard_error_fit_filter2)
  • error in final linear fit for the Direct Narrowband Filter1(barnard_error_fit_filter1)
  • solar constant for the Direct Narrowband Filter1(michalsky_solar_constant_filter1)
  • Langley regression Io, Michalsky, Direct Narrowband Filter2(michalsky_solar_constant_filter2)
  • solar constant for the Direct Narrowband Filter3(michalsky_solar_constant_filter3)
  • Langley regression Io, Michalsky, Direct Narrowband Filter4(michalsky_solar_constant_filter4)
  • Langley regression Io, Michalsky, Direct Narrowband Filter5(michalsky_solar_constant_filter5)
  • solar constant for the Direct Narrowband Filter6(michalsky_solar_constant_filter6)
  • error in optical depth (slope) of final linear fit for the Direct Narrowband
    Filter6(barnard_error_slope_filter6)
  • error in optical depth (slope) of final linear fit for the Direct Narrowband
    Filter4(barnard_error_slope_filter4)
  • error in optical depth (slope) of final linear fit for the Direct Narrowband
    Filter5(barnard_error_slope_filter5)
  • error in optical depth (slope) of final linear fit for the Direct Narrowband
    Filter2(barnard_error_slope_filter2)
  • error in optical depth (slope) of final linear fit for the Direct Narrowband
    Filter3(barnard_error_slope_filter3)
  • Barnard computed sun to earth distance(barnard_sun_earth_distance)
  • error in optical depth (slope) of final linear fit for the Direct Narrowband
    Filter1(barnard_error_slope_filter1)
  • number of points used in final linear fit for the Direct Narrowband Filter5(barnard_number_points_filter5)
  • number of points used in final linear fit for the Direct Narrowband Filter6(barnard_number_points_filter6)
  • number of points used in final linear fit for the Direct Narrowband Filter1(barnard_number_points_filter1)
  • number of points used in final linear fit for the Direct Narrowband Filter2(barnard_number_points_filter2)
  • number of points used in final linear fit for the Direct Narrowband Filter3(barnard_number_points_filter3)
  • number of points used in final linear fit for the Direct Narrowband Filter4(barnard_number_points_filter4)
  • Michalsky computed sun to earth distance(michalsky_sun_earth_distance)
  • solar constant corrected for solar distance for the Direct Broadband(michalsky_solar_constant_sdist_broadband)
  • optical depth for the Direct BroadBand(barnard_optical_depth_broadband)
  • number of points used in final linear fit for the Direct Broadband(michalsky_number_points_broadband)
more
sgpsirsE35.b1:
  • Shortwave direct normal irradiance, pyrheliometer(short_direct_normal)
  • Upwelling shortwave hemispheric irradiance, pyranometer, minima(up_short_hemisp_min)
  • Upwelling (10 meter) Shortwave Hemispheric Irradiance, Pyranometer, Maxima(up_short_hemisp_max)
  • Instantaneous downwelling pyrgeometer case thermistor temperature, shaded
    pyrgeometer(inst_down_long_shaded_case_temp)
  • Instantaneous Downwelling Pyrgeometer Dome Thermistor Temperature, Shaded
    Pyrgeometer(inst_down_long_shaded_dome_temp)
  • Downwelling longwave hemispheric irradiance, shaded pyrgeometer(down_long_hemisp_shaded)
  • Instantaneous Dome Temperature(inst_up_long_dome_temp)
  • Upwelling Longwave Hemispheric Irradiance, Pyrgeometer, Minima(up_long_hemisp_min)
  • Instantaneous upwelling pyrgeometer case thermistor temperature, pyrgeometer(inst_up_long_case_temp)
  • Shortwave direct normal irradiance, pyrheliometer, minima(short_direct_normal_min)
  • Downwelling longwave hemispheric net infrared(down_long_netir)
  • 10 meter Upwelling Longwave Hemispheric Irradiance, Pyrgeometer(up_long_hemisp)
  • Upwelling longwave hemispheric irradiance, pyrgeometer, maxima(up_long_hemisp_max)
  • Upwelling (10 meter) Shortwave Hemispheric Irradiance, Ventilated Pyranometer,
    Standard Deviation(up_short_hemisp_std)
  • Shortwave Direct Normal Irradiance, Pyrheliometer, Maxima(short_direct_normal_max)
  • Downwelling Shortwave Diffuse Hemispheric Irradiance, Pyranometer, Standard
    Deviation(down_short_diffuse_hemisp_std)
  • Downwelling Shortwave Hemispheric Irradiance, Pyranometer, Minima(down_short_hemisp_min)
  • Instantaneous Upwelling Longwave Hemispheric Irradiance, Pyrgeometer(up_long_netir)
  • Downwelling shortwave hemispheric irradiance, pyranometer, maxima(down_short_hemisp_max)
  • Downwelling Shortwave Diffuse Hemispheric Irradiance, Ventilated Pyranometer(down_short_diffuse_hemisp)
  • Upwelling (10 meter) Longwave Hemispheric Irradiance, Ventilated Pyrgeometer,
    Standard Deviation(up_long_hemisp_std)
  • Shortwave Direct Normal Irradiance, Pyrgeometer, Standard Deviation(short_direct_normal_std)
  • Downwelling longwave hemispheric irradiance, shaded pyrgeometer, standard
    deviation(down_long_hemisp_shaded_std)
  • Downwelling Shortwave Hemispheric Irradiance, Ventilated Pyrgeometer, Standard
    Deviation(down_short_hemisp_std)
  • 25 meter Upwelling Shortwave Hemispheric Irradiance, Pyranometer(up_short_hemisp)
  • Battery voltage(vBatt)
  • Downwelling shortwave diffuse hemispheric irradiance, pyranometer, maxima(down_short_diffuse_hemisp_max)
  • Downwelling Shortwave Diffuse Hemispheric Irradiance, Pyrgeometer, Minima(down_short_diffuse_hemisp_min)
  • Downwelling Longwave Hemispheric Irradiance, Shaded Pyrgeometer, Maxima(down_long_hemisp_shaded_max)
  • Downwelling Longwave Hemispheric Irradiance, Shaded Pyrgeometer, Minima(down_long_hemisp_shaded_min)
  • Down-welling unshaded pyranometer voltage(down_short_hemisp)
more
sgpmfrsrlangplotE32.c1:
  • log(irradiance) for the Direct Narrowband Filter1, Barnard(barnard_lnI_filter1)
  • log(irradiance) for the Direct Narrowband Filter3, Barnard(barnard_lnI_filter3)
  • log(irradiance) for the Direct Narrowband Filter2, Barnard(barnard_lnI_filter2)
  • log(irradiance) for the Direct Narrowband Filter5(barnard_lnI_filter5)
  • log(irradiance) for the Direct Narrowband Filter4(barnard_lnI_filter4)
  • log(irradiance) for the Direct Narrowband Filter6(barnard_lnI_filter6)
  • rejected points for the final fit for the Direct Narrowband Filter1, Michalsky(michalsky_rejected_filter1)
  • rejected points for the final fit for the Direct Narrowband Filter3, Michalsky(michalsky_rejected_filter3)
  • rejected points for the final fit for the Direct Narrowband Filter2(michalsky_rejected_filter2)
  • rejected points for the final fit for the Direct Narrowband Filter5, Michalsky(michalsky_rejected_filter5)
  • rejected points for the final fit for the Direct Narrowband Filter4, Michalsky(michalsky_rejected_filter4)
  • rejected points for the final fit for the Direct Narrowband Filter6, Michalsky(michalsky_rejected_filter6)
  • rejected points for the final fit for the Direct Broadband(michalsky_rejected_broadband)
  • log(irradiance) for the Direct Broadband(michalsky_lnI_broadband)
  • log(irradiance) for the Direct Narrowband Filter2, Michalsky(michalsky_lnI_filter2)
  • log(irradiance) for the Direct Narrowband Filter1(michalsky_lnI_filter1)
  • log(irradiance) for the Direct Narrowband Filter6, Michalsky(michalsky_lnI_filter6)
  • log(irradiance) for the Direct Narrowband Filter5, Michalsky(michalsky_lnI_filter5)
  • log(irradiance) for the Direct Narrowband Filter4, Michalsky(michalsky_lnI_filter4)
  • log(irradiance) for the Direct Narrowband Filter3, Michalsky(michalsky_lnI_filter3)
  • Airmasses(barnard_airmass)
  • log(irradiance) for the Direct Broadband(barnard_lnI_broadband)
  • rejected points for the final fit for the Direct Broadband, Barnard(barnard_rejected_broadband)
  • airmass(michalsky_airmass)
  • rejected points for the final fit for the Direct Narrowband Filter6(barnard_rejected_filter6)
  • rejected points for the final fit for the Direct Narrowband Filter5, Barnard(barnard_rejected_filter5)
  • rejected points for the final fit for the Direct Narrowband Filter2(barnard_rejected_filter2)
  • rejected points for the final fit for the Direct Narrowband Filter1(barnard_rejected_filter1)
  • rejected points for the final fit for the Direct Narrowband Filter4, Barnard(barnard_rejected_filter4)
  • rejected points for the final fit for the Direct Narrowband Filter3, Barnard(barnard_rejected_filter3)
more
sgpirt200msE34.a1:
  • Internal Reference Infra Red Temperature(ref_ir_temp)
  • Sky Infra-Red Temperature(sky_ir_temp)
more
sgp15ebbrE35.b1:
  • Soil temperature 5 (resistance ratio)(soil_temp_5_rr)
  • Soil heat flow 1 (mV)(soil_heat_flow_1_mv)
  • Left T/RH sensor temperature (resistance ratio)(temp_trh_left_rr)
  • Soil moisture 4 (resistance ratio)(soil_moisture_4_rr)
  • Battery voltage(battery_voltage)
  • Soil heat flow 2 (mV)(soil_heat_flow_2_mv)
  • Right T/RH sensor temperature (resistance ratio)(temp_trh_right_rr)
  • Soil temperature 4 (resistance ratio)(soil_temp_4_rr)
  • Atmospheric pressure (mV)(atmos_pressure_mv)
  • Soil moisture 5 (resistance ratio)(soil_moisture_5_rr)
  • Soil moisture 4 (resistance)(soil_moisture_4_r)
  • Soil heat flow 3 (mV)(soil_heat_flow_3_mv)
  • Right relative humidity (mV)(rh_right_mv)
  • Soil moisture 5 (resistance)(soil_moisture_5_r)
  • Reference temperature in enclosure (resistance ratio)(temp_reference_rr)
  • Left relative humidity (mV)(rh_left_mv)
  • Soil moisture 2 (resistance)(soil_moisture_2_r)
  • Soil moisture 3 (resistance)(soil_moisture_3_r)
  • Soil moisture 2 (resistance ratio)(soil_moisture_2_rr)
  • Right air temperature(temp_air_right)
  • Soil heat flow 4 (mV)(soil_heat_flow_4_mv)
  • Soil moisture 1 (resistance ratio)(soil_moisture_1_rr)
  • Soil temperature 3 (resistance ratio)(soil_temp_3_rr)
  • Soil moisture 1 (resistance)(soil_moisture_1_r)
  • Left air temperature(temp_air_left)
  • Soil moisture 3 (resistance ratio)(soil_moisture_3_rr)
  • Soil temperature 1 (resistance ratio)(soil_temp_1_rr)
  • Wind direction vector mean (mV)(wdir_vec_mean_mv)
  • Net radiation (mV)(net_radiation_mv)
  • Wind speed arithmetic mean(wspd_arith_mean)
  • Soil heat flow 5 (mV)(soil_heat_flow_5_mv)
  • AEM position indicator(home_signal)
  • Soil temperature 2 (resistance ratio)(soil_temp_2_rr)
more
sgpirt200msE13.a1:
  • Sky Infra-Red Temperature(sky_ir_temp)
  • Internal Reference Infra Red Temperature(ref_ir_temp)
more
sgp5ebbrE34.b1:
  • Top relative humidity (fractional)(rh_top_fraction)
  • Wind speed vector mean(wspd_vec_mean)
  • Bottom air temperature(temp_air_bottom)
  • Top T/RH sensor temperature(temp_trh_top)
  • Net radiation(net_radiation)
  • Reference temperature in enclosure(temp_reference)
  • Bottom relative humidity (fractional)(rh_bottom_fraction)
  • Top vapor pressure(vapor_pressure_top)
  • Wind direction vector mean(wdir_vec_mean)
  • Bottom T/RH sensor temperature(temp_trh_bottom)
  • Atmospheric pressure(atmos_pressure)
  • Wind direction vector mean standard deviation(wdir_vec_std)
  • Wind speed arithmetic mean(wspd_arith_mean)
  • Bottom vapor pressure(vapor_pressure_bottom)
  • Top air temperature(temp_air_top)
  • AEM position indicator(home_signal)
more
sgp30ecorE38.b1:
  • Standard deviation of wind elevation angle(std_elev)
  • moist air density(rho)
  • Vector averaged wind speed(wind_spd)
  • kurtosis of variable c(kurt_c)
  • kurtosis of variable q(kurt_q)
  • kurtosis of variable w(kurt_w)
  • kurtosis of variable v(kurt_v)
  • kurtosis of variable u(kurt_u)
  • Kurtosis of variable mean_t(kurt_t)
  • mean value of out of range values and spikes of c -9999 if no spikes(mean_spk_c)
  • mean value of out of range values and spikes of q -9999 if no spikes(mean_spk_q)
  • mean value of \spike\ w samples(mean_spk_w)
  • Mean value of "spike" v samples(mean_spk_v)
  • Mean value of "spike" u samples(mean_spk_u)
  • Mean value of "spike" t samples(mean_spk_t)
  • number of valid c samples(n_good_c)
  • number of valid q samples(n_good_q)
  • Number of valid w samples(n_good_w)
  • number of valid v samples(n_good_v)
  • Number of valid u samples(n_good_u)
  • number of valid t samples(n_good_t)
  • number of bad or out of range w samples(n_bad_w)
  • number of bad or out of range v samples(n_bad_v)
  • number of bad or out of range u samples(n_bad_u)
  • Number of bad or out of range t samples(n_bad_t)
  • Number of bad or out of range q samples(n_bad_q)
  • Number of bad or out of range c samples(n_bad_c)
  • rotated covariance wt(cvar_rot_wt)
  • rotated covariance wq(cvar_rot_wq)
  • Rotated covariance wc(cvar_rot_wc)
  • rotated covariance uw(cvar_rot_uw)
  • rotated covariance uv(cvar_rot_uv)
  • Rotated covariance ut(cvar_rot_ut)
  • Rotated covariance uq(cvar_rot_uq)
  • rotated covariance uc(cvar_rot_uc)
  • rotated covariance vw(cvar_rot_vw)
  • Rotated covariance vt(cvar_rot_vt)
  • rotated covariance vq(cvar_rot_vq)
  • Rotated covariance vc(cvar_rot_vc)
  • corrected sensible heat flux(h)
  • momentum flux (dynamic)(k)
  • friction velocity(ustar)
  • Covariance qc(cvar_qc)
  • covariance vc(cvar_vc)
  • Covariance uv(cvar_uv)
  • covariance uw(cvar_uw)
  • covariance uq(cvar_uq)
  • covariance ut(cvar_ut)
  • Covariance uc(cvar_uc)
  • vector averaged wind direction(wind_dir)
  • covariance of tq(cvar_tq)
  • Covariance tc(cvar_tc)
  • Water vapor mixing ratio observed by the Raman lidar(mr)
  • Latent heat of vaporization(lv)
  • covariance wq(cvar_wq)
  • covariance wt(cvar_wt)
  • Covariance wc(cvar_wc)
  • Covariance vq(cvar_vq)
  • Covariance vw(cvar_vw)
  • Covariance vt(cvar_vt)
  • CO2 flux(fc)
  • specific heat of moist air(cp)
  • Rotated variance u(var_rot_u)
  • variance of v(var_rot_v)
  • rotated variance w(var_rot_w)
  • skewness of variable c(skew_c)
  • skewness of variable w(skew_w)
  • Skewness of variable mean_v(skew_v)
  • skewness of variable q(skew_q)
  • skewness of variable u(skew_u)
  • skewness of variable t(skew_t)
  • rotation to zero v(phi)
  • 0=real or 1=dummy value of rho(real_rho)
  • average voltage of IRGA cooler(mean_cooler)
  • number of samples with IRGA optical path blocked flag(n_bad_irga_light)
  • vertical (elevation) wind angle(elev)
  • Number of c samples removed due to spikes(n_spk_c)
  • Status of source for mixing ratio(real_mr)
  • Status of source for latent heat of vaporization(real_lv)
  • number of samples with \IRGA hardware problem\ flag(n_bad_irga)
  • number of w samples removed due to spikes(n_spk_w)
  • Number of u samples removed due to spikes(n_spk_u)
  • number of v samples removed due to spikes(n_spk_v)
  • number of t samples removed due to spikes(n_spk_t)
  • Number of q samples removed due to spikes(n_spk_q)
  • variance of c(var_c)
  • variance of q(var_q)
  • variance of t(var_t)
  • Variance of variable mean_v(var_v)
  • variance of variable u(var_u)
  • variance of variable w(var_w)
  • rotated mean w(mean_rot_w)
  • Rotated mean u(mean_rot_u)
  • rotated mean v(mean_rot_v)
  • Average temperature (IGRA internal sensor)(temp_irga)
  • Standard deviation of wind direction(std_wind_dir)
  • number of samples with bad sonic status flag(n_bad_son_ic)
  • latent heat flux(lv_e)
  • Atmospheric pressure(atm_pres)
  • 0=real or 1=dummy value of cp(real_cp)
  • mean co2 concentration (c)(mean_c)
  • mean water vapor concentration (q)(mean_q)
  • Vertical wind velocity (w)(mean_w)
  • Cross-boom wind velocity (v)(mean_v)
  • Down-boom wind velocity (u)(mean_u)
  • mean sonic temperature (t), i.e. virtual temperature(mean_t)
more
sgpirtE32.b1:
  • Sky infrared temperature, standard deviation(sky_ir_temp_std)
  • Sky Infra-Red Temperature(sky_ir_temp)
  • Internal Reference Infra Red Temperature(ref_ir_temp)
  • Number of averaged samples(samples_in_average)
  • Sky Infra Red Temperature Maxima(sky_ir_temp_max)
  • Sky Infra-Red Temperature Minima(sky_ir_temp_min)
more
sgpmfrsrlangplotE9.c1:
  • rejected points for the final fit for the Direct Narrowband Filter6(barnard_rejected_filter6)
  • rejected points for the final fit for the Direct Narrowband Filter5, Barnard(barnard_rejected_filter5)
  • rejected points for the final fit for the Direct Narrowband Filter4, Barnard(barnard_rejected_filter4)
  • rejected points for the final fit for the Direct Narrowband Filter3, Barnard(barnard_rejected_filter3)
  • rejected points for the final fit for the Direct Narrowband Filter2(barnard_rejected_filter2)
  • rejected points for the final fit for the Direct Narrowband Filter1(barnard_rejected_filter1)
  • log(irradiance) for the Direct Broadband(barnard_lnI_broadband)
  • airmass(michalsky_airmass)
  • Airmasses(barnard_airmass)
  • rejected points for the final fit for the Direct Narrowband Filter3, Michalsky(michalsky_rejected_filter3)
  • rejected points for the final fit for the Direct Narrowband Filter2(michalsky_rejected_filter2)
  • rejected points for the final fit for the Direct Narrowband Filter1, Michalsky(michalsky_rejected_filter1)
  • rejected points for the final fit for the Direct Narrowband Filter6, Michalsky(michalsky_rejected_filter6)
  • rejected points for the final fit for the Direct Narrowband Filter5, Michalsky(michalsky_rejected_filter5)
  • rejected points for the final fit for the Direct Narrowband Filter4, Michalsky(michalsky_rejected_filter4)
  • log(irradiance) for the Direct Narrowband Filter1, Barnard(barnard_lnI_filter1)
  • log(irradiance) for the Direct Narrowband Filter3, Barnard(barnard_lnI_filter3)
  • log(irradiance) for the Direct Narrowband Filter2, Barnard(barnard_lnI_filter2)
  • log(irradiance) for the Direct Narrowband Filter5(barnard_lnI_filter5)
  • log(irradiance) for the Direct Narrowband Filter4(barnard_lnI_filter4)
  • log(irradiance) for the Direct Narrowband Filter6(barnard_lnI_filter6)
  • rejected points for the final fit for the Direct Broadband(michalsky_rejected_broadband)
  • log(irradiance) for the Direct Broadband(michalsky_lnI_broadband)
  • rejected points for the final fit for the Direct Broadband, Barnard(barnard_rejected_broadband)
  • log(irradiance) for the Direct Narrowband Filter6, Michalsky(michalsky_lnI_filter6)
  • log(irradiance) for the Direct Narrowband Filter5, Michalsky(michalsky_lnI_filter5)
  • log(irradiance) for the Direct Narrowband Filter4, Michalsky(michalsky_lnI_filter4)
  • log(irradiance) for the Direct Narrowband Filter3, Michalsky(michalsky_lnI_filter3)
  • log(irradiance) for the Direct Narrowband Filter2, Michalsky(michalsky_lnI_filter2)
  • log(irradiance) for the Direct Narrowband Filter1(michalsky_lnI_filter1)
more
sgpswatsE12.b1:
  • Soil temperature, east profile(tsoil_e)
  • Soil temperature, west profile(tsoil_w)
  • Reference sensor temperature rise, west profile(trise_ref_w)
  • Reference sensor temperature rise, east profile(trise_ref_e)
  • Reference Thermistor Temperature(tref)
  • depth(depth)
  • Fractional water index, west profile(fwi_w)
  • Fractional water index, east profile(fwi_e)
  • Sensor temperature rise, east profile(trise_e)
  • Sensor temperature rise, west profile(trise_w)
  • Soil water potential, east profile(soilwatpot_e)
  • Soil water potential, west profile(soilwatpot_w)
  • Volumetric water content, west profile(watcont_w)
  • Volumetric water content, east profile(watcont_e)
  • West profile sensor serial numbers(serial_numbers_w)
  • East profile sensor serial numbers(serial_numbers_e)
more
sgpxsaprppiI5.a1:
  • Mean doppler velocity(mean_doppler_velocity)
  • data_volume_index_number(volume_number)
  • Beam Elevation Angle(elevation)
  • Time corresponding to last radial in file(time_coverage_end)
  • data_volume_start_time_utc(time_coverage_start)
  • Doppler spectrum width(doppler_spectrum_width)
  • Scan mode for sweep(sweep_mode)
  • Unambiguous range(unambiguous_range)
  • Normalized coherent power(normalized_coherent_power)
  • Total power(total_power)
  • File status(file_status)
  • Differential reflectivity(differential_reflectivity)
  • North latitude(latitude)
  • Specific differential phase (KDP)(specific_differential_phase)
  • Unambiguous Doppler velocity(nyquist_velocity)
  • Clutter filtered reflectivity in horizontal polarization(reflectivity_horizontal)
  • Time index of last ray in sweep, 0-based(sweep_end_ray_index)
  • Differential propagation phase shift(differential_phase)
  • ray_target_fixed_angle(fixed_angle)
  • Sweep number, zero-based count(sweep_number)
  • Distance to the center of the corresponding range bin(range)
  • transmit_pulse_mode(prt_mode)
  • Index of first ray in sweep, 0-based(sweep_start_ray_index)
  • East longitude(longitude)
  • Cross correlation ratio (RhoHV)(cross_correlation_ratio)
  • pulse_repetition_frequency(prt)
  • Azimuth of Radar Ray(azimuth)
more
sgpmfrsrE36.a0:
  • Offset subtracted from hemispheric and diffuse broadband data(offset_broadband)
  • Diffuse narrowband hemispheric irradiance, filter 4(diffuse_hemisp_narrowband_filter4_raw)
  • Diffuse narrowband hemispheric irradiance, filter 1(diffuse_hemisp_narrowband_filter1_raw)
  • Detector temperature(head_temp)
  • Narrowband hemispheric irradiance, filter 2(hemisp_narrowband_filter2_raw)
  • Diffuse Hemispheric Broadband Irradiance, offset corrected(diffuse_hemisp_broadband)
  • Narrowband hemispheric irradiance, filter 6, nominal wavelength is 935 nm(hemisp_narrowband_filter6)
  • Narrowband Hemispheric Irradiance, Filter 5, offset corrected(hemisp_narrowband_filter5)
  • Narrowband hemispheric irradiance, filter 4, offset and cosine corrected(hemisp_narrowband_filter4)
  • Narrowband hemispheric irradiance, filter 3, offset and cosine corrected(hemisp_narrowband_filter3)
  • Narrowband Hemispheric Irradiance, Filter 2(hemisp_narrowband_filter2)
  • Narrowband Hemispheric Irradiance, Filter 1, offset corrected(hemisp_narrowband_filter1)
  • Narrowband hemispheric irradiance, filter 1(hemisp_narrowband_filter1_raw)
  • Diffuse narrowband hemispheric irradiance, filter 6(diffuse_hemisp_narrowband_filter6_raw)
  • Diffuse narrowband hemispheric irradiance, filter 3(diffuse_hemisp_narrowband_filter3_raw)
  • Second detector temperature(head_temp2)
  • Alltime hemispheric broadband irradiance(alltime_hemisp_broadband)
  • Narrowband hemispheric irradiance, filter 4(hemisp_narrowband_filter4_raw)
  • Narrowband Hemispheric Irradiance, Filter 3(hemisp_narrowband_filter3_raw)
  • Narrowband Hemispheric Irradiance, Filter 6(hemisp_narrowband_filter6_raw)
  • Data logger supply voltage(logger_volt)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 6, offset corrected(diffuse_hemisp_narrowband_filter6)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 3(diffuse_hemisp_narrowband_filter3)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 2, offset corrected(diffuse_hemisp_narrowband_filter2)
  • Narrowband diffuse hemispheric irradiance, filter 5, offset and cosine corrected(diffuse_hemisp_narrowband_filter5)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 4(diffuse_hemisp_narrowband_filter4)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 1, offset corrected(diffuse_hemisp_narrowband_filter1)
  • Hemispheric broadband irradiance(hemisp_broadband)
  • Diffuse Hemispheric Broadband Irradiance(diffuse_hemisp_broadband_raw)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 5(diffuse_hemisp_narrowband_filter5_raw)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 2(diffuse_hemisp_narrowband_filter2_raw)
  • Narrowband hemispheric irradiance, filter 5(hemisp_narrowband_filter5_raw)
  • Offset subtracted from hemispheric and diffuse filter6 data(offset_filter6)
  • Offset subtracted from upwelling hemispheric filter5 data(offset_filter5)
  • Offset subtracted from direct normal filter4 data(offset_filter4)
  • Offset subtracted from direct normal filter3 data(offset_filter3)
  • Offset subtracted from upwelling hemispheric filter2 data(offset_filter2)
  • Offset subtracted from hemispheric filter1 data(offset_filter1)
  • Hemispheric broadband irradiance(hemisp_broadband_raw)
  • Data Logger Temperature(logger_temp)
  • Alltime narrowband hemispheric irradiance, filter 1(alltime_hemisp_narrowband_filter1)
  • Alltime narrowband hemispheric irradiance, filter 2(alltime_hemisp_narrowband_filter2)
  • Alltime Narrowband Hemispheric Irradiance, Filter 3(alltime_hemisp_narrowband_filter3)
  • Alltime Narrowband Hemispheric Irradiance, Filter 4(alltime_hemisp_narrowband_filter4)
  • Alltime narrowband hemispheric irradiance, filter 5(alltime_hemisp_narrowband_filter5)
  • Alltime Narrowband Hemispheric Irradiance, Filter 6(alltime_hemisp_narrowband_filter6)
  • Narrowband Direct Horizontal Irradiance, Filter 6, cosine corrected(direct_horizontal_narrowband_filter6)
  • Narrowband Direct Horizontal Irradiance, Filter 5, cosine corrected(direct_horizontal_narrowband_filter5)
  • Narrowband Direct Horizontal Irradiance, Filter 4, cosine corrected(direct_horizontal_narrowband_filter4)
  • Direct Horizontal Narrowband Irradiance, Filter 3(direct_horizontal_narrowband_filter3)
  • Narrowband Direct Horizontal Irradiance, Filter 2, cosine corrected(direct_horizontal_narrowband_filter2)
  • Direct horizontal narrowband irradiance, filter 1(direct_horizontal_narrowband_filter1)
  • Direct Horizontal Broadband Irradiance(direct_horizontal_broadband)
more
sgpmetE34.b1:
  • Wind direction vector mean(wdir_vec_mean)
  • TBRG precipitation total(tbrg_precip_total)
  • Relative humidity observed by the Raman lidar(rh_mean)
  • Wind direction vector mean standard deviation(wdir_vec_std)
  • Wind speed arithmetic mean(wspd_arith_mean)
  • Temperature mean(temp_mean)
  • TBRG precipitation total, corrected(tbrg_precip_total_corr)
  • Atmospheric pressure(atmos_pressure)
  • Vapor pressure mean, calculated(vapor_pressure_mean)
  • Wind speed vector mean(wspd_vec_mean)
more
sgpdlfptS01.b1:
  • Radial velocity(radial_velocity)
  • Beam Elevation Angle(elevation)
  • Intensity (signal to noise ratio + 1)(intensity)
  • Azimuth of Radar Ray(azimuth)
  • Attenuated backscatter(attenuated_backscatter)
  • Distance to the center of the corresponding range bin(range)
more
sgpmfrsrE15.a0:
  • Data logger supply voltage(logger_volt)
  • Alltime Narrowband Hemispheric Irradiance, Filter 6(alltime_hemisp_narrowband_filter6)
  • Alltime narrowband hemispheric irradiance, filter 5(alltime_hemisp_narrowband_filter5)
  • Alltime Narrowband Hemispheric Irradiance, Filter 4(alltime_hemisp_narrowband_filter4)
  • Alltime Narrowband Hemispheric Irradiance, Filter 3(alltime_hemisp_narrowband_filter3)
  • Alltime narrowband hemispheric irradiance, filter 2(alltime_hemisp_narrowband_filter2)
  • Alltime narrowband hemispheric irradiance, filter 1(alltime_hemisp_narrowband_filter1)
  • Diffuse narrowband hemispheric irradiance, filter 4(diffuse_hemisp_narrowband_filter4_raw)
  • Offset subtracted from hemispheric filter1 data(offset_filter1)
  • Offset subtracted from direct normal filter3 data(offset_filter3)
  • Offset subtracted from upwelling hemispheric filter2 data(offset_filter2)
  • Offset subtracted from upwelling hemispheric filter5 data(offset_filter5)
  • Offset subtracted from direct normal filter4 data(offset_filter4)
  • Offset subtracted from hemispheric and diffuse filter6 data(offset_filter6)
  • Alltime hemispheric broadband irradiance(alltime_hemisp_broadband)
  • Hemispheric broadband irradiance(hemisp_broadband)
  • Diffuse Hemispheric Broadband Irradiance, offset corrected(diffuse_hemisp_broadband)
  • Diffuse narrowband hemispheric irradiance, filter 1(diffuse_hemisp_narrowband_filter1_raw)
  • Narrowband hemispheric irradiance, filter 4(hemisp_narrowband_filter4_raw)
  • Narrowband Direct Horizontal Irradiance, Filter 6, cosine corrected(direct_horizontal_narrowband_filter6)
  • Narrowband Direct Horizontal Irradiance, Filter 2, cosine corrected(direct_horizontal_narrowband_filter2)
  • Direct Horizontal Narrowband Irradiance, Filter 3(direct_horizontal_narrowband_filter3)
  • Narrowband Direct Horizontal Irradiance, Filter 4, cosine corrected(direct_horizontal_narrowband_filter4)
  • Narrowband Direct Horizontal Irradiance, Filter 5, cosine corrected(direct_horizontal_narrowband_filter5)
  • Direct horizontal narrowband irradiance, filter 1(direct_horizontal_narrowband_filter1)
  • Data Logger Temperature(logger_temp)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 2(diffuse_hemisp_narrowband_filter2_raw)
  • Narrowband hemispheric irradiance, filter 5(hemisp_narrowband_filter5_raw)
  • Narrowband hemispheric irradiance, filter 2(hemisp_narrowband_filter2_raw)
  • Second detector temperature(head_temp2)
  • Detector temperature(head_temp)
  • Narrowband Hemispheric Irradiance, Filter 3(hemisp_narrowband_filter3_raw)
  • Narrowband Hemispheric Irradiance, Filter 1, offset corrected(hemisp_narrowband_filter1)
  • Narrowband hemispheric irradiance, filter 3, offset and cosine corrected(hemisp_narrowband_filter3)
  • Narrowband Hemispheric Irradiance, Filter 2(hemisp_narrowband_filter2)
  • Narrowband Hemispheric Irradiance, Filter 5, offset corrected(hemisp_narrowband_filter5)
  • Narrowband hemispheric irradiance, filter 4, offset and cosine corrected(hemisp_narrowband_filter4)
  • Narrowband hemispheric irradiance, filter 6, nominal wavelength is 935 nm(hemisp_narrowband_filter6)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 5(diffuse_hemisp_narrowband_filter5_raw)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 2, offset corrected(diffuse_hemisp_narrowband_filter2)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 1, offset corrected(diffuse_hemisp_narrowband_filter1)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 4(diffuse_hemisp_narrowband_filter4)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 3(diffuse_hemisp_narrowband_filter3)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 6, offset corrected(diffuse_hemisp_narrowband_filter6)
  • Narrowband diffuse hemispheric irradiance, filter 5, offset and cosine corrected(diffuse_hemisp_narrowband_filter5)
  • Diffuse Hemispheric Broadband Irradiance(diffuse_hemisp_broadband_raw)
  • Offset subtracted from hemispheric and diffuse broadband data(offset_broadband)
  • Diffuse narrowband hemispheric irradiance, filter 6(diffuse_hemisp_narrowband_filter6_raw)
  • Narrowband hemispheric irradiance, filter 1(hemisp_narrowband_filter1_raw)
  • Direct Horizontal Broadband Irradiance(direct_horizontal_broadband)
  • Diffuse narrowband hemispheric irradiance, filter 3(diffuse_hemisp_narrowband_filter3_raw)
  • Narrowband Hemispheric Irradiance, Filter 6(hemisp_narrowband_filter6_raw)
  • Hemispheric broadband irradiance(hemisp_broadband_raw)
more
sgpsirs20sE35.a0:
  • Instantaneous Upwelling Shortwave Hemispheric Irradiance, Pyranometer(inst_up_short_hemisp)
  • Instantaneous Downwelling Hemispheric Shortwave, Pyranometer Thermopile Voltage(inst_global)
  • Instantaneous Downwelling Pyrgeometer Case Thermistor Resistance, Shaded
    Pyrgeometer(inst_down_long_shaded_case_resist)
  • Instantaneous Upwelling Pyrgeometer Thermopile Pyrgeometer(inst_up_long_hemisp_tp)
  • Instantaneous downwelling pyrgeometer dome thermistor resistance, shaded
    pyrgeometer(inst_down_long_shaded_dome_resist)
  • Instantaneous downwelling pyrgeometer thermopile voltage, shaded pyrgeometer(inst_down_long_hemisp_shaded_tp)
  • Instantaneous direct normal shortwave irradiance, pyrheliometer thermopile
    voltage(inst_direct_normal)
  • Instantaneous Upwelling Pyrgeometer Dome Thermistor Resistance Pyrgeometer(inst_up_long_dome_resist)
  • Instantaneous Upwelling Pyrgeometer Case Thermistor Resistance, Pyrgeometer(inst_up_long_case_resist)
  • Instantaneous uncorrected downwelling shortwave diffuse, shaded pyranometer
    thermopile voltage(inst_diffuse)
more
sgpsirs60sE15.a1:
  • Downwelling Shortwave Hemispheric Irradiance, Ventilated Pyrgeometer, Standard
    Deviation(down_short_hemisp_std)
  • Downwelling Longwave Hemispheric Irradiance, Shaded Pyrgeometer, Minima(down_long_hemisp_shaded_min)
  • Upwelling (10 meter) Shortwave Hemispheric Irradiance, Ventilated Pyranometer,
    Standard Deviation(up_short_hemisp_std)
  • Downwelling Longwave Hemispheric Irradiance, Shaded Pyrgeometer, Maxima(down_long_hemisp_shaded_max)
  • Upwelling (10 meter) Longwave Hemispheric Irradiance, Ventilated Pyrgeometer,
    Standard Deviation(up_long_hemisp_std)
  • Shortwave Direct Normal Irradiance, Pyrgeometer, Standard Deviation(short_direct_normal_std)
  • Downwelling Shortwave Diffuse Hemispheric Irradiance, Pyrgeometer, Minima(down_short_diffuse_hemisp_min)
  • Downwelling shortwave diffuse hemispheric irradiance, pyranometer, maxima(down_short_diffuse_hemisp_max)
  • Downwelling longwave hemispheric irradiance, shaded pyrgeometer, standard
    deviation(down_long_hemisp_shaded_std)
  • Down-welling unshaded pyranometer voltage(down_short_hemisp)
  • Battery voltage(vBatt)
  • 25 meter Upwelling Shortwave Hemispheric Irradiance, Pyranometer(up_short_hemisp)
  • 10 meter Upwelling Longwave Hemispheric Irradiance, Pyrgeometer(up_long_hemisp)
  • Upwelling Longwave Hemispheric Irradiance, Pyrgeometer, Minima(up_long_hemisp_min)
  • Downwelling Shortwave Diffuse Hemispheric Irradiance, Pyranometer, Standard
    Deviation(down_short_diffuse_hemisp_std)
  • Upwelling longwave hemispheric irradiance, pyrgeometer, maxima(up_long_hemisp_max)
  • Downwelling Shortwave Diffuse Hemispheric Irradiance, Ventilated Pyranometer(down_short_diffuse_hemisp)
  • Downwelling longwave hemispheric irradiance, shaded pyrgeometer(down_long_hemisp_shaded)
  • Shortwave direct normal irradiance, pyrheliometer(short_direct_normal)
  • Downwelling shortwave hemispheric irradiance, pyranometer, maxima(down_short_hemisp_max)
  • Upwelling shortwave hemispheric irradiance, pyranometer, minima(up_short_hemisp_min)
  • Downwelling Shortwave Hemispheric Irradiance, Pyranometer, Minima(down_short_hemisp_min)
  • Upwelling (10 meter) Shortwave Hemispheric Irradiance, Pyranometer, Maxima(up_short_hemisp_max)
  • Shortwave Direct Normal Irradiance, Pyrheliometer, Maxima(short_direct_normal_max)
  • Shortwave direct normal irradiance, pyrheliometer, minima(short_direct_normal_min)
more
sgpcsaprsurI7.00:
  • Unfiltered received power in horizontal channel(power_horizontal_unf)
  • Unfiltered normalized coherent power(norm_coherent_power_unf)
  • Unfiltered Doppler spectral width(doppler_spectral_width_unf)
  • Specific differential phase(diff_phase)
  • Unfiltered reflectivity in vertical polarization(reflectivity_vertical_unf)
  • Unfiltered differential propagation phase shift(dp_phase_shift_unf)
  • Received power in horizontal channel, clutter filtered(power_horizontal)
  • altitude(altitude)
  • Differential reflectivity, clutter filtered(diff_reflectivity)
  • Received power in vertical channel, clutter filtered(power_vertical)
  • Azimuth of Radar Ray(azimuth)
  • Unfiltered lag-0 co-polar correlation coefficient(copol_coeff_unf)
  • Unfiltered received power in vertical channel(power_vertical_unf)
  • Unfiltered Mean Doppler velocity(mean_doppler_velocity_unf)
  • Mean doppler velocity(mean_doppler_velocity)
  • Lag-0 co-polar correlation coefficient, clutter filtered(copol_coeff)
  • Clutter filtered reflectivity in horizontal polarization(reflectivity_horizontal)
  • Differential propagation phase shift(dp_phase_shift)
  • Doppler spectral width, clutter filtered(doppler_spectral_width)
  • Unfiltered specific differential phase(diff_phase_unf)
  • Unfiltered reflectivity in horizontal polarization(reflectivity_horizontal_unf)
  • Clutter filtered reflectivity in vertical polarization(reflectivity_vertical)
  • Unfiltered differential reflectivity(diff_reflectivity_unf)
  • Distance to the center of the corresponding range bin(range)
  • Normalized coherent power, clutter filtered(norm_coherent_power)
more
sgpmfrsrlangplotE33.c1:
  • rejected points for the final fit for the Direct Broadband, Barnard(barnard_rejected_broadband)
  • airmass(michalsky_airmass)
  • rejected points for the final fit for the Direct Narrowband Filter3, Michalsky(michalsky_rejected_filter3)
  • rejected points for the final fit for the Direct Narrowband Filter4, Michalsky(michalsky_rejected_filter4)
  • rejected points for the final fit for the Direct Narrowband Filter1, Michalsky(michalsky_rejected_filter1)
  • rejected points for the final fit for the Direct Narrowband Filter2(michalsky_rejected_filter2)
  • rejected points for the final fit for the Direct Narrowband Filter5, Michalsky(michalsky_rejected_filter5)
  • rejected points for the final fit for the Direct Narrowband Filter6, Michalsky(michalsky_rejected_filter6)
  • log(irradiance) for the Direct Narrowband Filter1(michalsky_lnI_filter1)
  • log(irradiance) for the Direct Narrowband Filter2, Michalsky(michalsky_lnI_filter2)
  • log(irradiance) for the Direct Narrowband Filter3, Michalsky(michalsky_lnI_filter3)
  • log(irradiance) for the Direct Narrowband Filter4, Michalsky(michalsky_lnI_filter4)
  • log(irradiance) for the Direct Narrowband Filter5, Michalsky(michalsky_lnI_filter5)
  • log(irradiance) for the Direct Narrowband Filter6, Michalsky(michalsky_lnI_filter6)
  • log(irradiance) for the Direct Narrowband Filter4(barnard_lnI_filter4)
  • log(irradiance) for the Direct Narrowband Filter3, Barnard(barnard_lnI_filter3)
  • log(irradiance) for the Direct Narrowband Filter2, Barnard(barnard_lnI_filter2)
  • log(irradiance) for the Direct Narrowband Filter1, Barnard(barnard_lnI_filter1)
  • log(irradiance) for the Direct Narrowband Filter6(barnard_lnI_filter6)
  • log(irradiance) for the Direct Narrowband Filter5(barnard_lnI_filter5)
  • log(irradiance) for the Direct Broadband(michalsky_lnI_broadband)
  • rejected points for the final fit for the Direct Broadband(michalsky_rejected_broadband)
  • Airmasses(barnard_airmass)
  • rejected points for the final fit for the Direct Narrowband Filter5, Barnard(barnard_rejected_filter5)
  • rejected points for the final fit for the Direct Narrowband Filter4, Barnard(barnard_rejected_filter4)
  • rejected points for the final fit for the Direct Narrowband Filter6(barnard_rejected_filter6)
  • rejected points for the final fit for the Direct Narrowband Filter1(barnard_rejected_filter1)
  • rejected points for the final fit for the Direct Narrowband Filter3, Barnard(barnard_rejected_filter3)
  • rejected points for the final fit for the Direct Narrowband Filter2(barnard_rejected_filter2)
  • log(irradiance) for the Direct Broadband(barnard_lnI_broadband)
more
sgpsirsE34.b1:
  • Downwelling Shortwave Diffuse Hemispheric Irradiance, Pyranometer, Standard
    Deviation(down_short_diffuse_hemisp_std)
  • Downwelling Shortwave Hemispheric Irradiance, Pyranometer, Minima(down_short_hemisp_min)
  • Downwelling shortwave hemispheric irradiance, pyranometer, maxima(down_short_hemisp_max)
  • Upwelling (10 meter) Shortwave Hemispheric Irradiance, Ventilated Pyranometer,
    Standard Deviation(up_short_hemisp_std)
  • Downwelling longwave hemispheric irradiance, shaded pyrgeometer(down_long_hemisp_shaded)
  • 10 meter Upwelling Longwave Hemispheric Irradiance, Pyrgeometer(up_long_hemisp)
  • Shortwave Direct Normal Irradiance, Pyrheliometer, Maxima(short_direct_normal_max)
  • Shortwave direct normal irradiance, pyrheliometer, minima(short_direct_normal_min)
  • Upwelling (10 meter) Longwave Hemispheric Irradiance, Ventilated Pyrgeometer,
    Standard Deviation(up_long_hemisp_std)
  • Downwelling longwave hemispheric net infrared(down_long_netir)
  • Instantaneous Dome Temperature(inst_up_long_dome_temp)
  • Downwelling Shortwave Hemispheric Irradiance, Ventilated Pyrgeometer, Standard
    Deviation(down_short_hemisp_std)
  • Instantaneous upwelling pyrgeometer case thermistor temperature, pyrgeometer(inst_up_long_case_temp)
  • Downwelling Shortwave Diffuse Hemispheric Irradiance, Pyrgeometer, Minima(down_short_diffuse_hemisp_min)
  • Downwelling shortwave diffuse hemispheric irradiance, pyranometer, maxima(down_short_diffuse_hemisp_max)
  • Downwelling longwave hemispheric irradiance, shaded pyrgeometer, standard
    deviation(down_long_hemisp_shaded_std)
  • Downwelling Longwave Hemispheric Irradiance, Shaded Pyrgeometer, Maxima(down_long_hemisp_shaded_max)
  • 25 meter Upwelling Shortwave Hemispheric Irradiance, Pyranometer(up_short_hemisp)
  • Downwelling Longwave Hemispheric Irradiance, Shaded Pyrgeometer, Minima(down_long_hemisp_shaded_min)
  • Upwelling shortwave hemispheric irradiance, pyranometer, minima(up_short_hemisp_min)
  • Shortwave direct normal irradiance, pyrheliometer(short_direct_normal)
  • Upwelling (10 meter) Shortwave Hemispheric Irradiance, Pyranometer, Maxima(up_short_hemisp_max)
  • Shortwave Direct Normal Irradiance, Pyrgeometer, Standard Deviation(short_direct_normal_std)
  • Upwelling longwave hemispheric irradiance, pyrgeometer, maxima(up_long_hemisp_max)
  • Upwelling Longwave Hemispheric Irradiance, Pyrgeometer, Minima(up_long_hemisp_min)
  • Instantaneous downwelling pyrgeometer case thermistor temperature, shaded
    pyrgeometer(inst_down_long_shaded_case_temp)
  • Downwelling Shortwave Diffuse Hemispheric Irradiance, Ventilated Pyranometer(down_short_diffuse_hemisp)
  • Instantaneous Upwelling Longwave Hemispheric Irradiance, Pyrgeometer(up_long_netir)
  • Battery voltage(vBatt)
  • Instantaneous Downwelling Pyrgeometer Dome Thermistor Temperature, Shaded
    Pyrgeometer(inst_down_long_shaded_dome_temp)
  • Down-welling unshaded pyranometer voltage(down_short_hemisp)
more
sgpswatsE11.b1:
  • Sensor temperature rise, west profile(trise_w)
  • Volumetric water content, west profile(watcont_w)
  • Volumetric water content, east profile(watcont_e)
  • Sensor temperature rise, east profile(trise_e)
  • Reference Thermistor Temperature(tref)
  • Soil temperature, west profile(tsoil_w)
  • Soil temperature, east profile(tsoil_e)
  • Reference sensor temperature rise, west profile(trise_ref_w)
  • Reference sensor temperature rise, east profile(trise_ref_e)
  • Soil water potential, east profile(soilwatpot_e)
  • Soil water potential, west profile(soilwatpot_w)
  • depth(depth)
  • Fractional water index, west profile(fwi_w)
  • Fractional water index, east profile(fwi_e)
  • West profile sensor serial numbers(serial_numbers_w)
  • East profile sensor serial numbers(serial_numbers_e)
more
sgpirtE31.b1:
  • Sky Infra Red Temperature Maxima(sky_ir_temp_max)
  • Sky Infra-Red Temperature Minima(sky_ir_temp_min)
  • Sky Infra-Red Temperature(sky_ir_temp)
  • Sky infrared temperature, standard deviation(sky_ir_temp_std)
  • Number of averaged samples(samples_in_average)
  • Internal Reference Infra Red Temperature(ref_ir_temp)
more
sgpmfrsrlangleyE33.c1:
  • optical depth for the Direct BroadBand(michalsky_optical_depth_broadband)
  • error in optical depth (slope) of final linear fit for the Direct Narrowband
    Filter6(barnard_error_slope_filter6)
  • error in optical depth (slope) of final linear fit for the Direct Narrowband
    Filter5(barnard_error_slope_filter5)
  • error in optical depth (slope) of final linear fit for the Direct Narrowband
    Filter2(barnard_error_slope_filter2)
  • error in optical depth (slope) of final linear fit for the Direct Narrowband
    Filter1(barnard_error_slope_filter1)
  • error in optical depth (slope) of final linear fit for the Direct Narrowband
    Filter4(barnard_error_slope_filter4)
  • error in optical depth (slope) of final linear fit for the Direct Narrowband
    Filter3(barnard_error_slope_filter3)
  • solar constant corrected for solar distance for the Direct Broadband(michalsky_solar_constant_sdist_broadband)
  • solar constant corrected for solar distance for the Direct Narrowband Filter5(barnard_solar_constant_sdist_filter5)
  • solar constant corrected for solar distance for the Direct Narrowband Filter6(barnard_solar_constant_sdist_filter6)
  • solar constant corrected for solar distance for the Direct Narrowband Filter1(barnard_solar_constant_sdist_filter1)
  • solar constant corrected for solar distance for the Direct Narrowband Filter2(barnard_solar_constant_sdist_filter2)
  • solar constant corrected for solar distance for the Direct Narrowband Filter3(barnard_solar_constant_sdist_filter3)
  • Langley regression Io, adjusted to 1AU, Barnard, Direct Narrowband Filter4(barnard_solar_constant_sdist_filter4)
  • Michalsky computed sun to earth distance(michalsky_sun_earth_distance)
  • standard deviation around regression line for the Direct BroadBand(michalsky_standard_deviation_broadband)
  • number of points used in final linear fit for the Direct Broadband(barnard_number_points_broadband)
  • error in final linear fit for the Direct Narrowband Filter6(barnard_error_fit_filter6)
  • error in final linear fit for the Direct Narrowband Filter5(barnard_error_fit_filter5)
  • error in final linear fit for the Direct Narrowband Filter4(barnard_error_fit_filter4)
  • error in final linear fit for the Direct Narrowband Filter3(barnard_error_fit_filter3)
  • error in final linear fit for the Direct Narrowband Filter2(barnard_error_fit_filter2)
  • error in final linear fit for the Direct Narrowband Filter1(barnard_error_fit_filter1)
  • standard deviation around regression line for the Direct Narrowband Filter2(michalsky_standard_deviation_filter2)
  • standard deviation around regression line for the Direct Narrowband Filter1(michalsky_standard_deviation_filter1)
  • standard deviation around regression line for the Direct Narrowband Filter4(michalsky_standard_deviation_filter4)
  • standard deviation around regression line for the Direct Narrowband Filter3(michalsky_standard_deviation_filter3)
  • standard deviation around regression line for the Direct Narrowband Filter6(michalsky_standard_deviation_filter6)
  • standard deviation around regression line for the Direct Narrowband Filter5(michalsky_standard_deviation_filter5)
  • Langley regression Io, adjusted to 1AU, Barnard, Direct BroadBand(barnard_solar_constant_sdist_broadband)
  • optical depth for the Direct Narrowband Filter3(barnard_optical_depth_filter3)
  • optical depth for the Direct Narrowband Filter4(barnard_optical_depth_filter4)
  • optical depth for the Direct Narrowband Filter1(barnard_optical_depth_filter1)
  • optical depth for the Direct Narrowband Filter2(barnard_optical_depth_filter2)
  • optical depth for the Direct Narrowband Filter5(barnard_optical_depth_filter5)
  • optical depth for the Direct Narrowband Filter6(barnard_optical_depth_filter6)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter6(barnard_good_fraction_filter6)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter5(barnard_good_fraction_filter5)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter2(barnard_good_fraction_filter2)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter1(barnard_good_fraction_filter1)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter4(barnard_good_fraction_filter4)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter3(barnard_good_fraction_filter3)
  • Barnard computed sun to earth distance(barnard_sun_earth_distance)
  • Langley regression Io, Michalsky, Direct BroadBand(michalsky_solar_constant_broadband)
  • error in optical depth (slope) of final linear fit for the Direct Broadband(barnard_error_slope_broadband)
  • solar constant corrected for solar distance for the Direct Narrowband Filter6(michalsky_solar_constant_sdist_filter6)
  • solar constant corrected for solar distance for the Direct Narrowband Filter4(michalsky_solar_constant_sdist_filter4)
  • solar constant corrected for solar distance for the Direct Narrowband Filter5(michalsky_solar_constant_sdist_filter5)
  • solar constant corrected for solar distance for the Direct Narrowband Filter2(michalsky_solar_constant_sdist_filter2)
  • solar constant corrected for solar distance for the Direct Narrowband Filter3(michalsky_solar_constant_sdist_filter3)
  • solar constant corrected for solar distance for the Direct Narrowband Filter1(michalsky_solar_constant_sdist_filter1)
  • percentage of initial points used in final linear fit for the Direct Broadband(michalsky_good_fraction_broadband)
  • rejection flag for Direct Narrowband Filter5(barnard_badflag_filter5)
  • rejection flag for Direct Narrowband Filter4(barnard_badflag_filter4)
  • rejection flag for Direct Narrowband Filter6(barnard_badflag_filter6)
  • rejection flag for Direct Narrowband Filter1(barnard_badflag_filter1)
  • rejection flag for Direct Narrowband Filter3(barnard_badflag_filter3)
  • rejection flag for Direct Narrowband Filter2(barnard_badflag_filter2)
  • number of points used in final linear fit for the Direct Narrowband Filter6(michalsky_number_points_filter6)
  • number of points used in final linear fit for the Direct Narrowband Filter5(michalsky_number_points_filter5)
  • number of points used in final linear fit for the Direct Narrowband Filter4(michalsky_number_points_filter4)
  • number of points used in final linear fit for the Direct Narrowband Filter3(michalsky_number_points_filter3)
  • number of points used in final linear fit for the Direct Narrowband Filter2(michalsky_number_points_filter2)
  • number of points used in final linear fit for the Direct Narrowband Filter1(michalsky_number_points_filter1)
  • optical depth for the Direct BroadBand(barnard_optical_depth_broadband)
  • Langley regression Io, Michalsky, Direct Narrowband Filter5(michalsky_solar_constant_filter5)
  • Langley regression Io, Michalsky, Direct Narrowband Filter4(michalsky_solar_constant_filter4)
  • solar constant for the Direct Narrowband Filter6(michalsky_solar_constant_filter6)
  • solar constant for the Direct Narrowband Filter1(michalsky_solar_constant_filter1)
  • solar constant for the Direct Narrowband Filter3(michalsky_solar_constant_filter3)
  • Langley regression Io, Michalsky, Direct Narrowband Filter2(michalsky_solar_constant_filter2)
  • rejection flag for Direct Broadband(michalsky_badflag_broadband)
  • optical depth for the Direct Narrowband Filter3(michalsky_optical_depth_filter3)
  • optical depth for the Direct Narrowband Filter2(michalsky_optical_depth_filter2)
  • optical depth for the Direct Narrowband Filter1(michalsky_optical_depth_filter1)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter6(michalsky_good_fraction_filter6)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter5(michalsky_good_fraction_filter5)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter4(michalsky_good_fraction_filter4)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter3(michalsky_good_fraction_filter3)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter2(michalsky_good_fraction_filter2)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter1(michalsky_good_fraction_filter1)
  • optical depth for the Direct Narrowband Filter6(michalsky_optical_depth_filter6)
  • optical depth for the Direct Narrowband Filter5(michalsky_optical_depth_filter5)
  • optical depth for the Direct Narrowband Filter4(michalsky_optical_depth_filter4)
  • number of points used in final linear fit for the Direct Broadband(michalsky_number_points_broadband)
  • rejection flag for Direct Broadband(barnard_badflag_broadband)
  • number of points used in final linear fit for the Direct Narrowband Filter1(barnard_number_points_filter1)
  • number of points used in final linear fit for the Direct Narrowband Filter3(barnard_number_points_filter3)
  • number of points used in final linear fit for the Direct Narrowband Filter2(barnard_number_points_filter2)
  • number of points used in final linear fit for the Direct Narrowband Filter5(barnard_number_points_filter5)
  • number of points used in final linear fit for the Direct Narrowband Filter4(barnard_number_points_filter4)
  • number of points used in final linear fit for the Direct Narrowband Filter6(barnard_number_points_filter6)
  • percentage of initial points used in final linear fit for the Direct Broadband(barnard_good_fraction_broadband)
  • error in final linear fit for the Direct BroadBand(barnard_error_fit_broadband)
  • rejection flag for Direct Narrowband Filter5(michalsky_badflag_filter5)
  • rejection flag for Direct Narrowband Filter6(michalsky_badflag_filter6)
  • rejection flag for Direct Narrowband Filter3(michalsky_badflag_filter3)
  • rejection flag for Direct Narrowband Filter4(michalsky_badflag_filter4)
  • rejection flag for Direct Narrowband Filter1(michalsky_badflag_filter1)
  • rejection flag for Direct Narrowband Filter2(michalsky_badflag_filter2)
more
sgpswatsE34.b1:
  • Reference sensor temperature rise, west profile(trise_ref_w)
  • Soil water potential, east profile(soilwatpot_e)
  • Soil water potential, west profile(soilwatpot_w)
  • Reference sensor temperature rise, east profile(trise_ref_e)
  • Soil temperature, east profile(tsoil_e)
  • Soil temperature, west profile(tsoil_w)
  • Sensor temperature rise, west profile(trise_w)
  • Sensor temperature rise, east profile(trise_e)
  • depth(depth)
  • Fractional water index, east profile(fwi_e)
  • Fractional water index, west profile(fwi_w)
  • Volumetric water content, west profile(watcont_w)
  • Volumetric water content, east profile(watcont_e)
  • Reference Thermistor Temperature(tref)
  • West profile sensor serial numbers(serial_numbers_w)
  • East profile sensor serial numbers(serial_numbers_e)
more
sgpcsaprrhiI7.00:
  • Differential propagation phase shift(dp_phase_shift)
  • Received power in horizontal channel, clutter filtered(power_horizontal)
  • Distance to the center of the corresponding range bin(range)
  • Unfiltered differential reflectivity(diff_reflectivity_unf)
  • Unfiltered Mean Doppler velocity(mean_doppler_velocity_unf)
  • Unfiltered received power in vertical channel(power_vertical_unf)
  • Doppler spectral width, clutter filtered(doppler_spectral_width)
  • Unfiltered reflectivity in horizontal polarization(reflectivity_horizontal_unf)
  • Unfiltered normalized coherent power(norm_coherent_power_unf)
  • Unfiltered specific differential phase(diff_phase_unf)
  • Clutter filtered reflectivity in vertical polarization(reflectivity_vertical)
  • Clutter filtered reflectivity in horizontal polarization(reflectivity_horizontal)
  • Received power in vertical channel, clutter filtered(power_vertical)
  • altitude(altitude)
  • Unfiltered received power in horizontal channel(power_horizontal_unf)
  • Azimuth of Radar Ray(azimuth)
  • Lag-0 co-polar correlation coefficient, clutter filtered(copol_coeff)
  • Mean doppler velocity(mean_doppler_velocity)
  • Specific differential phase(diff_phase)
  • Unfiltered Doppler spectral width(doppler_spectral_width_unf)
  • Unfiltered reflectivity in vertical polarization(reflectivity_vertical_unf)
  • Unfiltered differential propagation phase shift(dp_phase_shift_unf)
  • Normalized coherent power, clutter filtered(norm_coherent_power)
  • Unfiltered lag-0 co-polar correlation coefficient(copol_coeff_unf)
  • Differential reflectivity, clutter filtered(diff_reflectivity)
more
sgpsirs60sE21.a1:
  • Upwelling (10 meter) Shortwave Hemispheric Irradiance, Ventilated Pyranometer,
    Standard Deviation(up_short_hemisp_std)
  • Downwelling longwave hemispheric irradiance, shaded pyrgeometer(down_long_hemisp_shaded)
  • Downwelling shortwave hemispheric irradiance, pyranometer, maxima(down_short_hemisp_max)
  • Downwelling Shortwave Hemispheric Irradiance, Pyranometer, Minima(down_short_hemisp_min)
  • Shortwave direct normal irradiance, pyrheliometer, minima(short_direct_normal_min)
  • Shortwave Direct Normal Irradiance, Pyrheliometer, Maxima(short_direct_normal_max)
  • Upwelling (10 meter) Longwave Hemispheric Irradiance, Ventilated Pyrgeometer,
    Standard Deviation(up_long_hemisp_std)
  • Downwelling Shortwave Hemispheric Irradiance, Ventilated Pyrgeometer, Standard
    Deviation(down_short_hemisp_std)
  • 25 meter Upwelling Shortwave Hemispheric Irradiance, Pyranometer(up_short_hemisp)
  • Battery voltage(vBatt)
  • 10 meter Upwelling Longwave Hemispheric Irradiance, Pyrgeometer(up_long_hemisp)
  • Downwelling Longwave Hemispheric Irradiance, Shaded Pyrgeometer, Maxima(down_long_hemisp_shaded_max)
  • Downwelling Shortwave Diffuse Hemispheric Irradiance, Pyranometer, Standard
    Deviation(down_short_diffuse_hemisp_std)
  • Downwelling Longwave Hemispheric Irradiance, Shaded Pyrgeometer, Minima(down_long_hemisp_shaded_min)
  • Upwelling shortwave hemispheric irradiance, pyranometer, minima(up_short_hemisp_min)
  • Upwelling (10 meter) Shortwave Hemispheric Irradiance, Pyranometer, Maxima(up_short_hemisp_max)
  • Shortwave Direct Normal Irradiance, Pyrgeometer, Standard Deviation(short_direct_normal_std)
  • Upwelling longwave hemispheric irradiance, pyrgeometer, maxima(up_long_hemisp_max)
  • Upwelling Longwave Hemispheric Irradiance, Pyrgeometer, Minima(up_long_hemisp_min)
  • Downwelling Shortwave Diffuse Hemispheric Irradiance, Pyrgeometer, Minima(down_short_diffuse_hemisp_min)
  • Down-welling unshaded pyranometer voltage(down_short_hemisp)
  • Downwelling Shortwave Diffuse Hemispheric Irradiance, Ventilated Pyranometer(down_short_diffuse_hemisp)
  • Downwelling shortwave diffuse hemispheric irradiance, pyranometer, maxima(down_short_diffuse_hemisp_max)
  • Shortwave direct normal irradiance, pyrheliometer(short_direct_normal)
  • Downwelling longwave hemispheric irradiance, shaded pyrgeometer, standard
    deviation(down_long_hemisp_shaded_std)
more
sgpxsaprvptI4.00:
  • Lag-0 co-polar correlation coefficient, clutter filtered(copol_coeff)
  • Attenuation corrected differential reflectivity(diff_reflectivity_corr)
  • Differential propagation phase shift(dp_phase_shift)
  • Doppler spectral width, clutter filtered(doppler_spectral_width)
  • Unfiltered reflectivity(reflectivity_unf)
  • reflectivity(reflectivity)
  • Signal quality index(sig_qual_index)
  • Range gate(gate)
  • Specific differential phase(diff_phase)
  • Differential reflectivity, clutter filtered(diff_reflectivity)
  • Attenuation corrected reflectivity(reflectivity_corr)
  • Mean doppler velocity(mean_doppler_velocity)
more
sgpmfrsrE36.b1:
  • angle of incidence during cosine bench measurements(bench_angle)
  • Direct Horizontal Broadband Irradiance(direct_horizontal_broadband)
  • Elevation angle(elevation_angle)
  • Normalized filter function data, filter 4, measured transmittance value obtained
    during bench calibrations(normalized_transmittance_filter4)
  • Normalized filter function data, filter 3, measured transmittance value obtained
    during bench calibrations(normalized_transmittance_filter3)
  • Normalized filter function data, filter 2, measured transmittance value obtained
    during bench calibrations(normalized_transmittance_filter2)
  • Normalized filter function data, filter 1, measured transmittance value obtained
    during bench calibrations(normalized_transmittance_filter1)
  • Normalized filter function data, filter 6, measured transmittance value obtained
    during bench calibrations(normalized_transmittance_filter6)
  • Normalized filter function data, filter 5, measured transmittance value obtained
    during bench calibrations(normalized_transmittance_filter5)
  • Second detector temperature(head_temp2)
  • Cosine correction of broadband diffuse, assuming Rayleigh sky at 45 degree
    zenith angle(diffuse_correction_broadband)
  • Nominal calibration factor, applied to broadband data(nominal_calibration_factor_broadband)
  • Alltime narrowband hemispheric irradiance, filter 2(alltime_hemisp_narrowband_filter2)
  • Alltime Narrowband Hemispheric Irradiance, Filter 3(alltime_hemisp_narrowband_filter3)
  • Alltime Narrowband Hemispheric Irradiance, Filter 4(alltime_hemisp_narrowband_filter4)
  • Alltime narrowband hemispheric irradiance, filter 5(alltime_hemisp_narrowband_filter5)
  • Alltime Narrowband Hemispheric Irradiance, Filter 6(alltime_hemisp_narrowband_filter6)
  • Alltime narrowband hemispheric irradiance, filter 1(alltime_hemisp_narrowband_filter1)
  • Air mass(airmass)
  • Diffuse Hemispheric Broadband Irradiance, offset corrected(diffuse_hemisp_broadband)
  • Ratio of direct_normal_broadband to diffuse_hemisp_broadband(direct_diffuse_ratio_broadband)
  • Offset subtracted from hemispheric and diffuse broadband data(offset_broadband)
  • Offset subtracted from direct normal filter4 data(offset_filter4)
  • Offset subtracted from direct normal filter3 data(offset_filter3)
  • Offset subtracted from upwelling hemispheric filter2 data(offset_filter2)
  • Offset subtracted from hemispheric filter1 data(offset_filter1)
  • Offset subtracted from hemispheric and diffuse filter6 data(offset_filter6)
  • Offset subtracted from upwelling hemispheric filter5 data(offset_filter5)
  • Data Logger Temperature(logger_temp)
  • Cosine solar zenith angle(cosine_solar_zenith_angle)
  • Cosine correction applied to direct_horizontal_narrowband_filter2(computed_cosine_correction_filter2)
  • Cosine correction applied to direct_horizontal_narrowband_filter3(computed_cosine_correction_filter3)
  • Cosine correction applied to direct_horizontal_narrowband_filter4(computed_cosine_correction_filter4)
  • Cosine correction applied to direct_horizontal_filter5(computed_cosine_correction_filter5)
  • Cosine correction applied to direct_horizontal_filter6(computed_cosine_correction_filter6)
  • Cosine correction applied to direct_horizontal_filter1(computed_cosine_correction_filter1)
  • Nominal calibration factor, applied to filter5 data(nominal_calibration_factor_filter5)
  • Nominal calibration factor, applied to filter6 data(nominal_calibration_factor_filter6)
  • Nominal calibration factor, applied to filter3 data(nominal_calibration_factor_filter3)
  • Nominal calibration factor, applied to filter4 data(nominal_calibration_factor_filter4)
  • Nominal calibration factor, applied to filter1 data(nominal_calibration_factor_filter1)
  • Nominal calibration factor, applied to filter2 data(nominal_calibration_factor_filter2)
  • Ratio of direct_normal_filter1 to diffuse_hemisp_filter1(direct_diffuse_ratio_filter1)
  • Ratio of direct_normal_narrowband_filter3 to diffuse_hemisp_narrowband_filter3(direct_diffuse_ratio_filter3)
  • Ratio of direct_normal_filter2 to diffuse_hemisp_filter2(direct_diffuse_ratio_filter2)
  • Ratio of direct_normal_filter5 to diffuse_hemisp_filter5(direct_diffuse_ratio_filter5)
  • Ratio of direct_normal_filter4 to diffuse_hemisp_filter4(direct_diffuse_ratio_filter4)
  • Ratio of direct_normal_narrowband_filter6 to diffuse_hemisp_narrowband_filter6(direct_diffuse_ratio_filter6)
  • Normalized filter function data, filter 4, wavelength value obtained during
    bench calibrations(wavelength_filter4)
  • Normalized filter function data, filter 3, wavelength value obtained during
    bench calibrations(wavelength_filter3)
  • Normalized filter function data, filter 2, wavelength value obtained during
    bench calibrations(wavelength_filter2)
  • Normalized filter function data, filter 1, wavelength value obtained during
    bench calibrations(wavelength_filter1)
  • Normalized filter function data, filter 6, wavelength value obtained during
    bench calibrations(wavelength_filter6)
  • Normalized filter function data, filter 5, wavelength value obtained during
    bench calibrations(wavelength_filter5)
  • Narrowband Direct Normal Irradiance, Filter 1(direct_normal_narrowband_filter1)
  • Direct normal narrowband irradiance, filter 6, offset corrected(direct_normal_narrowband_filter6)
  • Narrowband Direct Normal Irradiance, Filter 3, cosine corrected(direct_normal_narrowband_filter3)
  • Direct normal narrowband irradiance, filter 2, offset corrected(direct_normal_narrowband_filter2)
  • Narrowband Direct Normal Irradiance, Filter 5(direct_normal_narrowband_filter5)
  • Direct normal narrowband irradiance, filter 4, offset corrected(direct_normal_narrowband_filter4)
  • Data logger supply voltage(logger_volt)
  • Narrowband Hemispheric Irradiance, Filter 2(hemisp_narrowband_filter2)
  • Narrowband Hemispheric Irradiance, Filter 1, offset corrected(hemisp_narrowband_filter1)
  • Narrowband hemispheric irradiance, filter 4, offset and cosine corrected(hemisp_narrowband_filter4)
  • Narrowband hemispheric irradiance, filter 3, offset and cosine corrected(hemisp_narrowband_filter3)
  • Narrowband hemispheric irradiance, filter 6, nominal wavelength is 935 nm(hemisp_narrowband_filter6)
  • Narrowband Hemispheric Irradiance, Filter 5, offset corrected(hemisp_narrowband_filter5)
  • cosine correction, south to north, filter6(cosine_correction_sn_filter6)
  • Cosine correction, south to north, filter2(cosine_correction_sn_filter2)
  • Cosine correction, south to north, filter3(cosine_correction_sn_filter3)
  • Cosine correction, south to north, filter4(cosine_correction_sn_filter4)
  • cosine correction, south to north, filter5(cosine_correction_sn_filter5)
  • cosine correction, south to north, filter1(cosine_correction_sn_filter1)
  • Cosine correction, west to east, filter5(cosine_correction_we_filter5)
  • cosine correction, west to east, filter6(cosine_correction_we_filter6)
  • cosine correction, west to east, filter3(cosine_correction_we_filter3)
  • Cosine correction, west to east, filter4(cosine_correction_we_filter4)
  • cosine correction, west to east, broadband channel(cosine_correction_we_broadband)
  • Cosine correction, west to east, filter1(cosine_correction_we_filter1)
  • cosine correction, west to east, filter2(cosine_correction_we_filter2)
  • Azimuth angle(azimuth_angle)
  • Direct Normal Broadband Irradiance, cosine corrected, broadband scale applied(direct_normal_broadband)
  • Alltime hemispheric broadband irradiance(alltime_hemisp_broadband)
  • Solar zenith angle(solar_zenith_angle)
  • Hemispheric broadband irradiance(hemisp_broadband)
  • Cosine correction applied to direct_horizontal_broadband(computed_cosine_correction_broadband)
  • Detector temperature(head_temp)
  • cosine correction, south to north, broadband channel(cosine_correction_sn_broadband)
  • Cosine correction of filter4 diffuse, assuming Rayleigh sky at 45 deg zenith
    angle(diffuse_correction_filter4)
  • Cosine correction of filter3 diffuse, assuming Rayleigh sky at 45 deg zenith
    angle(diffuse_correction_filter3)
  • Cosine correction of filter2 diffuse, assuming Rayleigh sky at 45 deg zenith
    angle(diffuse_correction_filter2)
  • Cosine correction of filter1 diffuse, assuming Rayleigh sky at 45 degree zenith
    angle(diffuse_correction_filter1)
  • Cosine correction of filter6 diffuse, assuming Rayleigh sky at 45 deg zenith
    angle(diffuse_correction_filter6)
  • Cosine correction of filter5 diffuse, assuming Rayleigh sky at 45 deg zenith
    angle(diffuse_correction_filter5)
  • Direct horizontal narrowband irradiance, filter 1(direct_horizontal_narrowband_filter1)
  • Narrowband Direct Horizontal Irradiance, Filter 2, cosine corrected(direct_horizontal_narrowband_filter2)
  • Narrowband Direct Horizontal Irradiance, Filter 5, cosine corrected(direct_horizontal_narrowband_filter5)
  • Narrowband Direct Horizontal Irradiance, Filter 6, cosine corrected(direct_horizontal_narrowband_filter6)
  • Direct Horizontal Narrowband Irradiance, Filter 3(direct_horizontal_narrowband_filter3)
  • Narrowband Direct Horizontal Irradiance, Filter 4, cosine corrected(direct_horizontal_narrowband_filter4)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 3(diffuse_hemisp_narrowband_filter3)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 2, offset corrected(diffuse_hemisp_narrowband_filter2)
  • Narrowband diffuse hemispheric irradiance, filter 5, offset and cosine corrected(diffuse_hemisp_narrowband_filter5)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 4(diffuse_hemisp_narrowband_filter4)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 1, offset corrected(diffuse_hemisp_narrowband_filter1)
  • Diffuse Narrowband Hemispheric Irradiance, Filter 6, offset corrected(diffuse_hemisp_narrowband_filter6)
more
sgp915rwpprecipconI8.a1:
  • Interpulse period(ipp)
  • Signal-to-noise-ratio(snr)
  • Sample Rate(sampr)
  • Number of pulses/ave int, Beam 0(nrec)
  • Height Index(range_gate)
  • Number of Individual Spectra/Average Spectrum(nspc)
  • Delay Time to 1st Gate(dly)
  • Number of values that passed consensus(ncns)
  • Number of Coherent Samples/Spectral Point(ncoh)
  • Radial wind speed(vel)
  • Vertical FFT Bandwidth(vband)
  • Pulse length(plen)
  • Time Domain Integration Time(tditime)
  • Pulse repetition frequency(prf)
  • Number of Valid Heights(nheight)
  • Height of Center of First Range Gate(rgf)
  • Height of center of last range gate(rgl)
  • Power offset(power)
  • Range gate spacing(rgs)
  • Number of Values Required for Consensus, Beam 0(nrcns)
  • Averaging interval(avgint)
  • Array of heights for each sample time(height_p)
more
sgpxsaprunkI4.00:
  • null(Raw data stream - unknown modes)
more
sgpsirsE12.b1:
  • Downwelling Shortwave Diffuse Hemispheric Irradiance, Pyranometer, Standard
    Deviation(down_short_diffuse_hemisp_std)
  • 25 meter Upwelling Shortwave Hemispheric Irradiance, Pyranometer(up_short_hemisp)
  • Instantaneous Dome Temperature(inst_up_long_dome_temp)
  • Downwelling Shortwave Hemispheric Irradiance, Ventilated Pyrgeometer, Standard
    Deviation(down_short_hemisp_std)
  • Instantaneous upwelling pyrgeometer case thermistor temperature, pyrgeometer(inst_up_long_case_temp)
  • Downwelling longwave hemispheric irradiance, shaded pyrgeometer, standard
    deviation(down_long_hemisp_shaded_std)
  • Downwelling Shortwave Diffuse Hemispheric Irradiance, Ventilated Pyranometer(down_short_diffuse_hemisp)
  • Down-welling unshaded pyranometer voltage(down_short_hemisp)
  • Shortwave direct normal irradiance, pyrheliometer(short_direct_normal)
  • Upwelling (10 meter) Shortwave Hemispheric Irradiance, Ventilated Pyranometer,
    Standard Deviation(up_short_hemisp_std)
  • Instantaneous downwelling pyrgeometer case thermistor temperature, shaded
    pyrgeometer(inst_down_long_shaded_case_temp)
  • Upwelling Longwave Hemispheric Irradiance, Pyrgeometer, Minima(up_long_hemisp_min)
  • Upwelling longwave hemispheric irradiance, pyrgeometer, maxima(up_long_hemisp_max)
  • Battery voltage(vBatt)
  • Shortwave direct normal irradiance, pyrheliometer, minima(short_direct_normal_min)
  • Instantaneous Downwelling Pyrgeometer Dome Thermistor Temperature, Shaded
    Pyrgeometer(inst_down_long_shaded_dome_temp)
  • 10 meter Upwelling Longwave Hemispheric Irradiance, Pyrgeometer(up_long_hemisp)
  • Shortwave Direct Normal Irradiance, Pyrheliometer, Maxima(short_direct_normal_max)
  • Downwelling longwave hemispheric irradiance, shaded pyrgeometer(down_long_hemisp_shaded)
  • Downwelling longwave hemispheric net infrared(down_long_netir)
  • Downwelling shortwave hemispheric irradiance, pyranometer, maxima(down_short_hemisp_max)
  • Downwelling Shortwave Hemispheric Irradiance, Pyranometer, Minima(down_short_hemisp_min)
  • Downwelling Longwave Hemispheric Irradiance, Shaded Pyrgeometer, Maxima(down_long_hemisp_shaded_max)
  • Downwelling Longwave Hemispheric Irradiance, Shaded Pyrgeometer, Minima(down_long_hemisp_shaded_min)
  • Instantaneous Upwelling Longwave Hemispheric Irradiance, Pyrgeometer(up_long_netir)
  • Shortwave Direct Normal Irradiance, Pyrgeometer, Standard Deviation(short_direct_normal_std)
  • Downwelling Shortwave Diffuse Hemispheric Irradiance, Pyrgeometer, Minima(down_short_diffuse_hemisp_min)
  • Upwelling (10 meter) Shortwave Hemispheric Irradiance, Pyranometer, Maxima(up_short_hemisp_max)
  • Downwelling shortwave diffuse hemispheric irradiance, pyranometer, maxima(down_short_diffuse_hemisp_max)
  • Upwelling shortwave hemispheric irradiance, pyranometer, minima(up_short_hemisp_min)
  • Upwelling (10 meter) Longwave Hemispheric Irradiance, Ventilated Pyrgeometer,
    Standard Deviation(up_long_hemisp_std)
more
sgpmfrsrlangleyE11.c1:
  • optical depth for the Direct Narrowband Filter2(barnard_optical_depth_filter2)
  • optical depth for the Direct Narrowband Filter1(barnard_optical_depth_filter1)
  • optical depth for the Direct Narrowband Filter4(barnard_optical_depth_filter4)
  • optical depth for the Direct Narrowband Filter3(barnard_optical_depth_filter3)
  • optical depth for the Direct Narrowband Filter6(barnard_optical_depth_filter6)
  • optical depth for the Direct Narrowband Filter5(barnard_optical_depth_filter5)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter5(barnard_good_fraction_filter5)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter6(barnard_good_fraction_filter6)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter1(barnard_good_fraction_filter1)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter2(barnard_good_fraction_filter2)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter3(barnard_good_fraction_filter3)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter4(barnard_good_fraction_filter4)
  • rejection flag for Direct Narrowband Filter3(barnard_badflag_filter3)
  • rejection flag for Direct Narrowband Filter2(barnard_badflag_filter2)
  • rejection flag for Direct Narrowband Filter1(barnard_badflag_filter1)
  • rejection flag for Direct Narrowband Filter6(barnard_badflag_filter6)
  • rejection flag for Direct Narrowband Filter5(barnard_badflag_filter5)
  • rejection flag for Direct Narrowband Filter4(barnard_badflag_filter4)
  • rejection flag for Direct Narrowband Filter2(michalsky_badflag_filter2)
  • rejection flag for Direct Narrowband Filter1(michalsky_badflag_filter1)
  • rejection flag for Direct Narrowband Filter6(michalsky_badflag_filter6)
  • rejection flag for Direct Narrowband Filter5(michalsky_badflag_filter5)
  • rejection flag for Direct Narrowband Filter4(michalsky_badflag_filter4)
  • rejection flag for Direct Narrowband Filter3(michalsky_badflag_filter3)
  • number of points used in final linear fit for the Direct Broadband(barnard_number_points_broadband)
  • solar constant corrected for solar distance for the Direct Broadband(michalsky_solar_constant_sdist_broadband)
  • Langley regression Io, adjusted to 1AU, Barnard, Direct BroadBand(barnard_solar_constant_sdist_broadband)
  • solar constant corrected for solar distance for the Direct Narrowband Filter2(barnard_solar_constant_sdist_filter2)
  • solar constant corrected for solar distance for the Direct Narrowband Filter1(barnard_solar_constant_sdist_filter1)
  • Langley regression Io, adjusted to 1AU, Barnard, Direct Narrowband Filter4(barnard_solar_constant_sdist_filter4)
  • solar constant corrected for solar distance for the Direct Narrowband Filter3(barnard_solar_constant_sdist_filter3)
  • solar constant corrected for solar distance for the Direct Narrowband Filter6(barnard_solar_constant_sdist_filter6)
  • solar constant corrected for solar distance for the Direct Narrowband Filter5(barnard_solar_constant_sdist_filter5)
  • optical depth for the Direct BroadBand(michalsky_optical_depth_broadband)
  • rejection flag for Direct Broadband(michalsky_badflag_broadband)
  • error in final linear fit for the Direct Narrowband Filter1(barnard_error_fit_filter1)
  • error in final linear fit for the Direct Narrowband Filter2(barnard_error_fit_filter2)
  • error in final linear fit for the Direct Narrowband Filter3(barnard_error_fit_filter3)
  • error in final linear fit for the Direct Narrowband Filter4(barnard_error_fit_filter4)
  • error in final linear fit for the Direct Narrowband Filter5(barnard_error_fit_filter5)
  • error in final linear fit for the Direct Narrowband Filter6(barnard_error_fit_filter6)
  • error in optical depth (slope) of final linear fit for the Direct Narrowband
    Filter6(barnard_error_slope_filter6)
  • error in optical depth (slope) of final linear fit for the Direct Narrowband
    Filter5(barnard_error_slope_filter5)
  • error in optical depth (slope) of final linear fit for the Direct Narrowband
    Filter2(barnard_error_slope_filter2)
  • error in optical depth (slope) of final linear fit for the Direct Narrowband
    Filter1(barnard_error_slope_filter1)
  • error in optical depth (slope) of final linear fit for the Direct Narrowband
    Filter4(barnard_error_slope_filter4)
  • error in optical depth (slope) of final linear fit for the Direct Narrowband
    Filter3(barnard_error_slope_filter3)
  • Angstrom exponent(barnard_angstrom_exponent)
  • percentage of initial points used in final linear fit for the Direct Broadband(barnard_good_fraction_broadband)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter1(michalsky_good_fraction_filter1)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter3(michalsky_good_fraction_filter3)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter2(michalsky_good_fraction_filter2)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter5(michalsky_good_fraction_filter5)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter4(michalsky_good_fraction_filter4)
  • percentage of initial points used in final linear fit for the Direct Narrowband
    Filter6(michalsky_good_fraction_filter6)
  • error in optical depth (slope) of final linear fit for the Direct Broadband(barnard_error_slope_broadband)
  • optical depth for the Direct Narrowband Filter5(michalsky_optical_depth_filter5)
  • optical depth for the Direct Narrowband Filter4(michalsky_optical_depth_filter4)
  • optical depth for the Direct Narrowband Filter6(michalsky_optical_depth_filter6)
  • optical depth for the Direct Narrowband Filter1(michalsky_optical_depth_filter1)
  • optical depth for the Direct Narrowband Filter3(michalsky_optical_depth_filter3)
  • optical depth for the Direct Narrowband Filter2(michalsky_optical_depth_filter2)
  • number of points used in final linear fit for the Direct Broadband(michalsky_number_points_broadband)
  • standard deviation around regression line for the Direct Narrowband Filter6(michalsky_standard_deviation_filter6)
  • standard deviation around regression line for the Direct Narrowband Filter5(michalsky_standard_deviation_filter5)
  • standard deviation around regression line for the Direct Narrowband Filter4(michalsky_standard_deviation_filter4)
  • standard deviation around regression line for the Direct Narrowband Filter3(michalsky_standard_deviation_filter3)
  • standard deviation around regression line for the Direct Narrowband Filter2(michalsky_standard_deviation_filter2)
  • standard deviation around regression line for the Direct Narrowband Filter1(michalsky_standard_deviation_filter1)
  • number of points used in final linear fit for the Direct Narrowband Filter1(michalsky_number_points_filter1)
  • number of points used in final linear fit for the Direct Narrowband Filter2(michalsky_number_points_filter2)
  • number of points used in final linear fit for the Direct Narrowband Filter3(michalsky_number_points_filter3)
  • number of points used in final linear fit for the Direct Narrowband Filter4(michalsky_number_points_filter4)
  • number of points used in final linear fit for the Direct Narrowband Filter5(michalsky_number_points_filter5)
  • number of points used in final linear fit for the Direct Narrowband Filter6(michalsky_number_points_filter6)
  • Langley regression Io, Michalsky, Direct BroadBand(michalsky_solar_constant_broadband)
  • Angstrom exponent(michalsky_angstrom_exponent)
  • standard deviation around regression line for the Direct BroadBand(michalsky_standard_deviation_broadband)
  • rejection flag for Direct Broadband(barnard_badflag_broadband)
  • percentage of initial points used in final linear fit for the Direct Broadband(michalsky_good_fraction_broadband)
  • solar constant for the Direct Narrowband Filter1(michalsky_solar_constant_filter1)
  • Langley regression Io, Michalsky, Direct Narrowband Filter2(michalsky_solar_constant_filter2)
  • solar constant for the Direct Narrowband Filter3(michalsky_solar_constant_filter3)
  • Langley regression Io, Michalsky, Direct Narrowband Filter4(michalsky_solar_constant_filter4)
  • Langley regression Io, Michalsky, Direct Narrowband Filter5(michalsky_solar_constant_filter5)
  • solar constant for the Direct Narrowband Filter6(michalsky_solar_constant_filter6)
  • error in final linear fit for the Direct BroadBand(barnard_error_fit_broadband)
  • number of points used in final linear fit for the Direct Narrowband Filter1(barnard_number_points_filter1)
  • number of points used in final linear fit for the Direct Narrowband Filter2(barnard_number_points_filter2)
  • number of points used in final linear fit for the Direct Narrowband Filter3(barnard_number_points_filter3)
  • number of points used in final linear fit for the Direct Narrowband Filter4(barnard_number_points_filter4)
  • number of points used in final linear fit for the Direct Narrowband Filter5(barnard_number_points_filter5)
  • number of points used in final linear fit for the Direct Narrowband Filter6(barnard_number_points_filter6)
  • solar constant corrected for solar distance for the Direct Narrowband Filter4(michalsky_solar_constant_sdist_filter4)
  • solar constant corrected for solar distance for the Direct Narrowband Filter5(michalsky_solar_constant_sdist_filter5)
  • solar constant corrected for solar distance for the Direct Narrowband Filter2(michalsky_solar_constant_sdist_filter2)
  • solar constant corrected for solar distance for the Direct Narrowband Filter3(michalsky_solar_constant_sdist_filter3)
  • solar constant corrected for solar distance for the Direct Narrowband Filter6(michalsky_solar_constant_sdist_filter6)
  • solar constant corrected for solar distance for the Direct Narrowband Filter1(michalsky_solar_constant_sdist_filter1)
  • optical depth for the Direct BroadBand(barnard_optical_depth_broadband)
more
sgpswatspcpE12.b1:
  • Total precipitation over one minute sampling period(precip)
more
sgpxsaprhsrhiI4.00:
  • Doppler spectral width, clutter filtered(doppler_spectral_width)
  • Lag-0 co-polar correlation coefficient, clutter filtered(copol_coeff)
  • reflectivity(reflectivity)
  • Differential propagation phase shift(dp_phase_shift)
  • Attenuation corrected reflectivity(reflectivity_corr)
  • Specific differential phase(diff_phase)
  • Unfiltered reflectivity(reflectivity_unf)
  • Differential reflectivity, clutter filtered(diff_reflectivity)
  • Signal quality index(sig_qual_index)
  • Mean doppler velocity(mean_doppler_velocity)
  • Range gate(gate)
  • Attenuation corrected differential reflectivity(diff_reflectivity_corr)
more
sgpsebsE21.b1:
  • Surface soil heat flux, average of fluxes 1-5(surface_soil_heat_flux_avg)
  • cloud narrowband albedo(albedo)
  • Soil heat flow 1(soil_heat_flow_1)
  • Soil heat flow 3(soil_heat_flow_3)
  • Soil heat flow 2(soil_heat_flow_2)
  • Soil heat capacity 3(soil_heat_capacity_3)
  • Soil heat capacity 2(soil_heat_capacity_2)
  • Soil heat capacity 1(soil_heat_capacity_1)
  • Soil temperature 1(soil_temp_1)
  • Soil temperature 2(soil_temp_2)
  • Soil temperature mean 3(soil_temp_3)
  • Soil moisture 2, gravimetric(soil_moisture_2)
  • Soil moisture 1, gravimetric(soil_moisture_1)
  • Soil moisture 3, gravimetric(soil_moisture_3)
  • Net radiometer temperature(temp_net_radiometer)
  • Change in energy storage 1, 0-5 cm soil layer(energy_storage_change_1)
  • Change in energy storage 2, 0-5 cm soil layer(energy_storage_change_2)
  • Change in energy storage 3, 0-5 cm soil layer(energy_storage_change_3)
  • 25 meter Upwelling Shortwave Hemispheric Irradiance, Pyranometer(up_short_hemisp)
  • Wetness, rain detector(wetness)
  • Down-welling unshaded pyranometer voltage(down_short_hemisp)
  • Surface energy balance(surface_energy_balance)
  • Sky longwave irradiance(down_long)
  • Surface longwave irradiance(up_long)
  • Soil heat flow 3, corrected for soil moisture(corr_soil_heat_flow_3)
  • Soil heat flow 2, corrected for soil moisture(corr_soil_heat_flow_2)
  • Soil heat flow 1, corrected for soil moisture(corr_soil_heat_flow_1)
  • Battery voltage(battery_voltage)
  • Net radiation(net radiation)
  • Surface soil heat flux 3(surface_soil_heat_flux_3)
  • Surface soil heat flux 2(surface_soil_heat_flux_2)
  • Surface soil heat flux 1(surface_soil_heat_flux_1)
more
sgpswatsE9.b1:
  • Soil temperature, east profile(tsoil_e)
  • Soil temperature, west profile(tsoil_w)
  • Sensor temperature rise, east profile(trise_e)
  • Sensor temperature rise, west profile(trise_w)
  • depth(depth)
  • Fractional water index, east profile(fwi_e)
  • Fractional water index, west profile(fwi_w)
  • Soil water potential, west profile(soilwatpot_w)
  • Soil water potential, east profile(soilwatpot_e)
  • Reference Thermistor Temperature(tref)
  • Reference sensor temperature rise, east profile(trise_ref_e)
  • Reference sensor temperature rise, west profile(trise_ref_w)
  • Volumetric water content, east profile(watcont_e)
  • Volumetric water content, west profile(watcont_w)
  • West profile sensor serial numbers(serial_numbers_w)
  • East profile sensor serial numbers(serial_numbers_e)
more
sgp915rwptempconI10.a1:
  • Signal to Noise Ratio, Beam 0 Virtual Temperature(snr_virtual_temp)
  • Height(height)
  • Corrected Beam 0 Virtual Temperature(virtual_temp_corr)
  • Signal to Noise Ratio, Vertical wind velocity(snr_vert_v)
  • Beam 0 virtual temperature(virtual_temp)
  • Range gate spacing(rgs)
  • Signal to Noise Ratio, Corrected Beam 0 Virtual Temperature(snr_virtual_temp_corr)
  • Number of values that passed consensus, corrected virtual temperature(ncns_virtual_temp_corr)
  • Number of Values Required for Consensus, Beam 0(nrcns)
  • Number of Values that Passed Consensus, Vertical wind velocity(ncns_vert_v)
  • Number of values that passed consensus, virtual temperature(ncns_virtual_temp)
  • Number of pulses/ave int, Beam 0(nrec)
  • Averaging interval(avgint)
  • Sample Rate(sampr)
  • Vertical wind velocity(vert_v)
more
sgp915rwpprecipspecI10.a0:
  • Interpulse period(ipp)
  • Time Domain Integration Time(tditime)
  • Radial Velocity Spectral Resolution(vsr)
  • Particle radius at logarithmic center of bin(bins)
  • Vertical FFT Bandwidth(vband)
  • Delay Time to 1st Gate(dly)
  • Height of Center of First Range Gate(rgf)
  • Height of center of last range gate(rgl)
  • Ave Time per Average Spectra. Also known as dwell.(spcavetime)
  • Range gate spacing(rgs)
  • Sample Rate(sampr)
  • Number of Valid Heights(nheight)
  • Pulse repetition frequency(prf)
  • Rx Bandwidth Switch Code(bswitch)
  • Spectral Data(spc_amp)
  • Pulse length(plen)
  • Array of heights for each sample time(height_t)
  • Number of pulse code bits(pcbits)
  • Height Index(range_gate)
  • Number of Coherent Samples/Spectral Point(ncoh)
  • Individual Spectrum Integration Time(sitime)
  • Number of Individual Spectra/Average Spectrum(nspc)
more
sgpmetE11.b1:
  • Relative humidity observed by the Raman lidar(rh_mean)
  • Wind direction vector mean standard deviation(wdir_vec_std)
  • Temperature mean(temp_mean)
  • Wind speed arithmetic mean(wspd_arith_mean)
  • Vapor pressure mean, calculated(vapor_pressure_mean)
  • TBRG precipitation total(tbrg_precip_total)
  • Wind speed vector mean(wspd_vec_mean)
  • Atmospheric pressure(atmos_pressure)
  • Wind direction vector mean(wdir_vec_mean)
  • TBRG precipitation total, corrected(tbrg_precip_total_corr)
more
sgpxsaprppiI4.00:
  • Attenuation corrected reflectivity(reflectivity_corr)
  • Signal quality index(sig_qual_index)
  • Mean doppler velocity(mean_doppler_velocity)
  • reflectivity(reflectivity)
  • Doppler spectral width, clutter filtered(doppler_spectral_width)
  • Unfiltered reflectivity(reflectivity_unf)
  • Specific differential phase(diff_phase)
  • Differential propagation phase shift(dp_phase_shift)
  • Lag-0 co-polar correlation coefficient, clutter filtered(copol_coeff)
  • Attenuation corrected differential reflectivity(diff_reflectivity_corr)
  • Range gate(gate)
  • Differential reflectivity, clutter filtered(diff_reflectivity)
more

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