Data Quality Reports for Session: 118148 User: martin Completed: 03/12/2009


TABLE OF CONTENTS

DQR IDSubjectData Streams Affected
D041027.11NSA/NIMFR/C1 - No data collected during winternsanimfrC1.a0, nsanimfrC1.b1
D080409.1NSA/NIMFR/C1 - Tube heater malfunctionnsanimfrC1.a0, nsanimfrC1.b1
D080514.3NSA/NIMFR/C1 - Instrument heater not functioningnsanimfrC1.a0, nsanimfrC1.b1


DQRID : D041027.11
Start DateStart TimeEnd DateEnd Time
11/16/1998233603/16/19992042
11/18/1999025002/03/20000048
11/01/2000180204/25/20012328
11/06/2001231003/15/20020210
11/07/2002190303/06/20031502
11/17/2003230304/06/20041702
11/08/2004230202/17/20052002
11/28/2005230303/14/20062002
11/20/2006220203/20/20070002
10/31/2007000303/06/20081502
Subject:
NSA/NIMFR/C1 - No data collected during winter
DataStreams:nsanimfrC1.a0, nsanimfrC1.b1
Description:
The sun does not rise above the horizon at the NSA sites between
November and January each year.  During this time period, the MFR
instruments are removed and returned to PNNL for maintenance
and calibration.  The instruments are generally re-installed in
March.
Measurements:nsanimfrC1.a0:
  • Offset subtracted from upwelling hemispheric filter5 data(offset_filter5)
  • Time offset of tweaks from base_time(time_offset)
  • Detector Temperature(head_temp)
  • Direct Normal Narrowband Irradiance, Filter 5, raw data as read(direct_normal_narrowband_filter5_raw)
  • Direct Normal Narrowband Irradiance, Filter 5(direct_normal_narrowband_filter5)
  • Dummy altitude for Zeb(alt)
  • Offset subtracted from upwelling hemispheric filter4 data(offset_filter4)
  • Second Detector Temperature(head_temp2)
  • Direct Normal Narrowband Irradiance, Filter 3(direct_normal_narrowband_filter3)
  • Data Logger Supply Voltage(logger_volt)
  • Offset subtracted from upwelling hemispheric filter1 data(offset_filter1)
  • Direct Normal Narrowband Irradiance, Filter 6, raw data as read(direct_normal_narrowband_filter6_raw)
  • Direct Normal Narrowband Irradiance, Filter 2, raw data as read(direct_normal_narrowband_filter2_raw)
  • Direct Normal Broadband Irradiance, raw data as read(direct_normal_broadband_raw)
  • lat(lat)
  • Direct Normal Narrowband Irradiance, Filter 6(direct_normal_narrowband_filter6)
  • Direct Normal Narrowband Irradiance, Filter 4, raw data as read(direct_normal_narrowband_filter4_raw)
  • base time(base_time)
  • Tube Temperature(tube_temp)
  • Direct Normal Narrowband Irradiance, Filter 2(direct_normal_narrowband_filter2)
  • Offset subtracted from upwelling hemispheric filter2 data(offset_filter2)
  • Direct Normal Narrowband Irradiance, Filter 1, raw data as read(direct_normal_narrowband_filter1_raw)
  • Offset subtracted from upwelling hemispheric filter3 data(offset_filter3)
  • Direct Normal Narrowband Irradiance, Filter 3, raw data as read(direct_normal_narrowband_filter3_raw)
  • Offset subtracted from upwelling hemispheric broadband data(offset_broadband)
  • time(time)
  • Direct Normal Narrowband Irradiance, Filter 4(direct_normal_narrowband_filter4)
  • Direct Normal Narrowband Irradiance, Filter 1(direct_normal_narrowband_filter1)
  • lon(lon)
  • Offset subtracted from upwelling hemispheric filter6 data(offset_filter6)
  • Direct Normal Broadband Irradiance broadband scale applied(direct_normal_broadband)

nsanimfrC1.b1:
  • Narrowband Direct Horizontal Irradiance, Filter 6(direct_horizontal_narrowband_filter6)
  • base time(base_time)
  • Normalized filter function data, filter 2, wavelength value obtained during
    bench calibrations(wavelength_filter2)
  • Narrowband Direct Horizontal Irradiance, Filter 5(direct_horizontal_narrowband_filter5)
  • Data Logger Supply Voltage(logger_volt)
  • Elevation Angle(elevation_angle)
  • Solar zenith angle(solar_zenith_angle)
  • Direct Normal Narrowband Irradiance, Filter 2(direct_normal_narrowband_filter2)
  • Second Detector Temperature(head_temp2)
  • Nominal calibration factor, applied to filter6 data(nominal_calibration_factor_filter6)
  • Cosine of Solar Zenith Angle(cosine_solar_zenith_angle)
  • Direct Normal Narrowband Irradiance, Filter 5(direct_normal_narrowband_filter5)
  • Offset subtracted from upwelling hemispheric filter6 data(offset_filter6)
  • lat(lat)
  • Nominal calibration factor, applied to filter4 data(nominal_calibration_factor_filter4)
  • Direct Normal Narrowband Irradiance, Filter 6(direct_normal_narrowband_filter6)
  • Normalized filter function data, filter 3, measured transmittance value obtained
    during bench calibrations(normalized_transmittance_filter3)
  • Time offset of tweaks from base_time(time_offset)
  • Nominal calibration factor, applied to filter1 data(nominal_calibration_factor_filter1)
  • Direct Normal Narrowband Irradiance, Filter 1(direct_normal_narrowband_filter1)
  • Direct Normal Narrowband Irradiance, Filter 3(direct_normal_narrowband_filter3)
  • Normalized filter function data, filter 1, measured transmittance value obtained
    during bench calibrations(normalized_transmittance_filter1)
  • Offset subtracted from upwelling hemispheric broadband data(offset_broadband)
  • Normalized filter function data, filter 3, wavelength value obtained during
    bench calibrations(wavelength_filter3)
  • Narrowband Direct Horizontal Irradiance, Filter 4(direct_horizontal_narrowband_filter4)
  • Narrowband Direct Horizontal Irradiance, Filter 2(direct_horizontal_narrowband_filter2)
  • Direct Horizontal Broadband Irradiance, broadband scale applied(direct_horizontal_broadband)
  • Normalized filter function data, filter 4, wavelength value obtained during
    bench calibrations(wavelength_filter4)
  • Normalized filter function data, filter 2, measured transmittance value obtained
    during bench calibrations(normalized_transmittance_filter2)
  • lon(lon)
  • Normalized filter function data, filter 5, wavelength value obtained during
    bench calibrations(wavelength_filter5)
  • Direct Normal Broadband Irradiance broadband scale applied(direct_normal_broadband)
  • Nominal calibration factor, applied to broadband data(nominal_calibration_factor_broadband)
  • Normalized filter function data, filter 4, measured transmittance value obtained
    during bench calibrations(normalized_transmittance_filter4)
  • Nominal calibration factor, applied to filter3 data(nominal_calibration_factor_filter3)
  • Tube Temperature(tube_temp)
  • Offset subtracted from upwelling hemispheric filter3 data(offset_filter3)
  • Narrowband Direct Horizontal Irradiance, Filter 1(direct_horizontal_narrowband_filter1)
  • Normalized filter function data, filter 5, measured transmittance value obtained
    during bench calibrations(normalized_transmittance_filter5)
  • Direct Normal Narrowband Irradiance, Filter 4(direct_normal_narrowband_filter4)
  • Normalized filter function data, filter 6, measured transmittance value obtained
    during bench calibrations(normalized_transmittance_filter6)
  • Detector Temperature(head_temp)
  • Nominal calibration factor, applied to filter5 data(nominal_calibration_factor_filter5)
  • Narrowband Direct Horizontal Irradiance, Filter 3(direct_horizontal_narrowband_filter3)
  • Offset subtracted from upwelling hemispheric filter1 data(offset_filter1)
  • Normalized filter function data, filter 6, wavelength value obtained during
    bench calibrations(wavelength_filter6)
  • Air mass(airmass)
  • Offset subtracted from upwelling hemispheric filter2 data(offset_filter2)
  • Normalized filter function data, filter 1, wavelength value obtained during
    bench calibrations(wavelength_filter1)
  • time(time)
  • Dummy altitude for Zeb(alt)
  • Nominal calibration factor, applied to filter2 data(nominal_calibration_factor_filter2)
  • Offset subtracted from upwelling hemispheric filter4 data(offset_filter4)
  • Azimuth angle(azimuth_angle)
  • Offset subtracted from upwelling hemispheric filter5 data(offset_filter5)


Back To Table of Contents

DQRID : D080409.1
Start DateStart TimeEnd DateEnd Time
03/06/2008150003/29/20080000
Subject:
NSA/NIMFR/C1 - Tube heater malfunction
DataStreams:nsanimfrC1.a0, nsanimfrC1.b1
Description:
The instrument was installed after winter calibration and the tube heater was found to be 
operating erratically. The purpose of the heating the tube is to keep condensation from 
forming on the window.

Though erratic, the tube temperature was generally warm enough that no condensation should 
have formed.  There was never any evidence of this in the irradiance data.  Since it is 
not believed to have affected the adversely, this DQR is being assigned as transparent.
Measurements:nsanimfrC1.a0:
  • Direct Normal Narrowband Irradiance, Filter 5, raw data as read(direct_normal_narrowband_filter5_raw)
  • Direct Normal Narrowband Irradiance, Filter 2(direct_normal_narrowband_filter2)
  • Direct Normal Narrowband Irradiance, Filter 5(direct_normal_narrowband_filter5)
  • Direct Normal Narrowband Irradiance, Filter 1, raw data as read(direct_normal_narrowband_filter1_raw)
  • Direct Normal Narrowband Irradiance, Filter 3, raw data as read(direct_normal_narrowband_filter3_raw)
  • Direct Normal Narrowband Irradiance, Filter 3(direct_normal_narrowband_filter3)
  • Direct Normal Narrowband Irradiance, Filter 4(direct_normal_narrowband_filter4)
  • Direct Normal Narrowband Irradiance, Filter 1(direct_normal_narrowband_filter1)
  • Direct Normal Narrowband Irradiance, Filter 6, raw data as read(direct_normal_narrowband_filter6_raw)
  • Direct Normal Narrowband Irradiance, Filter 2, raw data as read(direct_normal_narrowband_filter2_raw)
  • Direct Normal Broadband Irradiance, raw data as read(direct_normal_broadband_raw)
  • Direct Normal Narrowband Irradiance, Filter 6(direct_normal_narrowband_filter6)
  • Direct Normal Narrowband Irradiance, Filter 4, raw data as read(direct_normal_narrowband_filter4_raw)
  • Direct Normal Broadband Irradiance broadband scale applied(direct_normal_broadband)

nsanimfrC1.b1:
  • Narrowband Direct Horizontal Irradiance, Filter 6(direct_horizontal_narrowband_filter6)
  • Direct Normal Broadband Irradiance broadband scale applied(direct_normal_broadband)
  • Narrowband Direct Horizontal Irradiance, Filter 5(direct_horizontal_narrowband_filter5)
  • Narrowband Direct Horizontal Irradiance, Filter 1(direct_horizontal_narrowband_filter1)
  • Direct Normal Narrowband Irradiance, Filter 4(direct_normal_narrowband_filter4)
  • Direct Normal Narrowband Irradiance, Filter 2(direct_normal_narrowband_filter2)
  • Direct Normal Narrowband Irradiance, Filter 5(direct_normal_narrowband_filter5)
  • Narrowband Direct Horizontal Irradiance, Filter 3(direct_horizontal_narrowband_filter3)
  • Direct Normal Narrowband Irradiance, Filter 6(direct_normal_narrowband_filter6)
  • Direct Normal Narrowband Irradiance, Filter 1(direct_normal_narrowband_filter1)
  • Direct Normal Narrowband Irradiance, Filter 3(direct_normal_narrowband_filter3)
  • Narrowband Direct Horizontal Irradiance, Filter 2(direct_horizontal_narrowband_filter2)
  • Narrowband Direct Horizontal Irradiance, Filter 4(direct_horizontal_narrowband_filter4)
  • Direct Horizontal Broadband Irradiance, broadband scale applied(direct_horizontal_broadband)


Back To Table of Contents

DQRID : D080514.3
Start DateStart TimeEnd DateEnd Time
04/21/2008180004/22/20080100
Subject:
NSA/NIMFR/C1 - Instrument heater not functioning
DataStreams:nsanimfrC1.a0, nsanimfrC1.b1
Description:
For a short period the instrument heater was not functioning.  Do not use data covered by 
this DQR. Could look at the MFRSR, but it has been experiencing shading issues.  This is 
a very short period of data, so not much is lost.
Measurements:nsanimfrC1.a0:
  • Direct Normal Narrowband Irradiance, Filter 5, raw data as read(direct_normal_narrowband_filter5_raw)
  • Direct Normal Narrowband Irradiance, Filter 2(direct_normal_narrowband_filter2)
  • Direct Normal Narrowband Irradiance, Filter 5(direct_normal_narrowband_filter5)
  • Direct Normal Narrowband Irradiance, Filter 1, raw data as read(direct_normal_narrowband_filter1_raw)
  • Direct Normal Narrowband Irradiance, Filter 3, raw data as read(direct_normal_narrowband_filter3_raw)
  • Direct Normal Narrowband Irradiance, Filter 3(direct_normal_narrowband_filter3)
  • Direct Normal Narrowband Irradiance, Filter 4(direct_normal_narrowband_filter4)
  • Direct Normal Narrowband Irradiance, Filter 1(direct_normal_narrowband_filter1)
  • Direct Normal Narrowband Irradiance, Filter 6, raw data as read(direct_normal_narrowband_filter6_raw)
  • Direct Normal Narrowband Irradiance, Filter 2, raw data as read(direct_normal_narrowband_filter2_raw)
  • Direct Normal Broadband Irradiance, raw data as read(direct_normal_broadband_raw)
  • Direct Normal Narrowband Irradiance, Filter 6(direct_normal_narrowband_filter6)
  • Direct Normal Narrowband Irradiance, Filter 4, raw data as read(direct_normal_narrowband_filter4_raw)
  • Direct Normal Broadband Irradiance broadband scale applied(direct_normal_broadband)

nsanimfrC1.b1:
  • Narrowband Direct Horizontal Irradiance, Filter 6(direct_horizontal_narrowband_filter6)
  • Direct Normal Broadband Irradiance broadband scale applied(direct_normal_broadband)
  • Narrowband Direct Horizontal Irradiance, Filter 5(direct_horizontal_narrowband_filter5)
  • Narrowband Direct Horizontal Irradiance, Filter 1(direct_horizontal_narrowband_filter1)
  • Direct Normal Narrowband Irradiance, Filter 4(direct_normal_narrowband_filter4)
  • Direct Normal Narrowband Irradiance, Filter 2(direct_normal_narrowband_filter2)
  • Direct Normal Narrowband Irradiance, Filter 5(direct_normal_narrowband_filter5)
  • Narrowband Direct Horizontal Irradiance, Filter 3(direct_horizontal_narrowband_filter3)
  • Direct Normal Narrowband Irradiance, Filter 6(direct_normal_narrowband_filter6)
  • Direct Normal Narrowband Irradiance, Filter 1(direct_normal_narrowband_filter1)
  • Direct Normal Narrowband Irradiance, Filter 3(direct_normal_narrowband_filter3)
  • Narrowband Direct Horizontal Irradiance, Filter 2(direct_horizontal_narrowband_filter2)
  • Narrowband Direct Horizontal Irradiance, Filter 4(direct_horizontal_narrowband_filter4)
  • Direct Horizontal Broadband Irradiance, broadband scale applied(direct_horizontal_broadband)


Back To Table of Contents



END OF DATA