Data Quality Reports for Session: 110085 User: troyan Completed: 01/24/2008


TABLE OF CONTENTS

DQR IDSubjectData Streams Affected
D021229.1TWP/SONDE/C1 - Broken Temperature SensortwpsondewnpnC1.a1, twpsondewnpnC1.b1
D030227.3TWP/SMET/C1 - Reprocess: Miscalibrated windspeed2 datatwpsmet60sC1.a1, twpsmet60sC1.b1
D030317.1TWP/SMET/C1 - Reprocess: Wind Speed #2 incorrecttwpsmet60sC1.a1, twpsmet60sC1.b1
D030427.2TWP/SONDE/C1 - Questionable RHtwpsondewnpnC1.a1, twpsondewnpnC1.b1
D030503.1TWP/SONDE/C1 - Bad RHtwpsondewnpnC1.a1, twpsondewnpnC1.b1
D030603.3TWP/SONDE/C1 - Broken temperature sensortwpsondewnpnC1.a1, twpsondewnpnC1.b1
D031215.3TWP/SMET/C1 - Tower Lowered for Cal Activitiestwpsmet60sC1.b1, twpsmetC1.00
D040220.1TWP/MWR/C1 - wrong azimuthtwpmwrlosC1.b1
D040530.1TWP/SONDE/C1 - Bad RH sensortwpsondewnpnC1.a1, twpsondewnpnC1.b1
D050421.6TWP/SMET/C1 - Negative rainfall ratestwpsmet60sC1.b1
D050725.9TWP/MWR/C1 - Reprocessed: Revised Retrieval Coefficientstwp5mwravgC1.c1, twpmwrlosC1.b1, twpmwrtipC1.a1
D050928.1TWP/MWR/C1 - New software version (4.15) installedtwpmwrlosC1.b1, twpmwrtipC1.a1
D060817.3TWP/SMET/C1 - Reprocess: Barometric Data Changed from hPa to kPatwpsmet60sC1.b1
D061011.2TWP/SMET/C1 - Reprocess: Tipping bucket rain gauge addedtwpsmet60sC1.b1


DQRID : D021229.1
Start DateStart TimeEnd DateEnd Time
09/18/2002233409/19/20020111
09/21/2002233009/22/20020059
10/01/2002234910/02/20020117
10/13/2002113910/13/20021303
10/18/2002235810/19/20020113
05/23/2003233005/24/20030135
06/14/2003233006/15/20030147
06/22/2003115906/22/20031332
06/22/2003234906/23/20030110
06/23/2003114606/23/20031323
06/25/2003234206/26/20030118
06/28/2003233006/29/20030056
06/29/2003113406/29/20031312
Subject:
TWP/SONDE/C1  - Broken Temperature Sensor
DataStreams:twpsondewnpnC1.a1, twpsondewnpnC1.b1
Description:
The temperature sensor on these radiosondes broke after launch.
All the temperature related data are incorrect.
Measurements:twpsondewnpnC1.b1:
  • Surface dew point temperature(dp)
  • Relative humidity inside the instrument enclosure(rh)
  • Dry bulb temperature(tdry)

twpsondewnpnC1.a1:
  • Relative humidity inside the instrument enclosure(rh)
  • Dry bulb temperature(tdry)
  • Surface dew point temperature(dp)


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DQRID : D030227.3
Start DateStart TimeEnd DateEnd Time
10/15/2002000002/27/20031100
Subject:
TWP/SMET/C1 - Reprocess: Miscalibrated windspeed2 data
DataStreams:twpsmet60sC1.a1, twpsmet60sC1.b1
Description:
A replacement anemometer (WSP2) was installed but the new anemometer calibration 
coefficients were not put into the logger. The multiplication factor was 0.09708 when it should 
have been 0.09763 (very small difference)the offset was 0.36 when it should have been 0.3 
(a difference 0.06 m/s).
Measurements:twpsmet60sC1.b1:
  • Wind #2 speed maximum gust(wind2_spd_max_gust)
  • Wind #2 speed maximum(wind2_spd_max)
  • Wind #2 speed arithmetic average(wind2_spd_arith_avg)
  • Wind #2 speed minimum(wind2_spd_min)

twpsmet60sC1.a1:
  • Wind #2 speed minimum(wind2_spd_min)
  • Wind #2 speed arithmetic average(wind2_spd_arith_avg)
  • Wind #2 speed maximum(wind2_spd_max)
  • Wind #2 speed maximum gust(wind2_spd_max_gust)


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DQRID : D030317.1
Start DateStart TimeEnd DateEnd Time
02/27/2003175003/03/20031900
Subject:
TWP/SMET/C1 - Reprocess: Wind Speed #2 incorrect
DataStreams:twpsmet60sC1.a1, twpsmet60sC1.b1
Description:
Wind Speed #2 sensor was reporting values 10 times above the actual value.  During an 
update to the logger configuration file the calibration multiplier was incorrectly entered.  
The multiplier inserted was .97630 when it should have been .09763.  This caused the 
readings from this sensor to be incorrect.
Measurements:twpsmet60sC1.b1:
  • Wind #2 speed maximum gust(wind2_spd_max_gust)
  • Wind #2 speed vector average(wind2_spd_vec_avg)
  • Wind #2 speed maximum(wind2_spd_max)
  • Wind #2 speed arithmetic average(wind2_spd_arith_avg)
  • Wind #2 speed minimum(wind2_spd_min)
  • Wind #2 speed standard deviation(wind2_spd_sd)

twpsmet60sC1.a1:
  • Wind #2 speed minimum(wind2_spd_min)
  • Wind #2 speed arithmetic average(wind2_spd_arith_avg)
  • Wind #2 speed vector average(wind2_spd_vec_avg)
  • Wind #2 speed standard deviation(wind2_spd_sd)
  • Wind #2 speed maximum(wind2_spd_max)
  • Wind #2 speed maximum gust(wind2_spd_max_gust)


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DQRID : D030427.2
Start DateStart TimeEnd DateEnd Time
04/08/2003234704/09/20030003
Subject:
TWP/SONDE/C1 - Questionable RH
DataStreams:twpsondewnpnC1.a1, twpsondewnpnC1.b1
Description:
It appears that the RH sensor heating circuit failed during this portion of the sounding 
(approximately between 5km and 10km).  The RH oscillates rapidly between low (~5 %RH) and 
not so low (~50 %RH) and the oscillation seems to stop when the temperature is below ~35 
degC.  According to Vaisala these are symptoms of failure in the ASIC (application 
specific integrated circuit) that controls the heating.
Measurements:twpsondewnpnC1.b1:
  • Surface dew point temperature(dp)
  • Relative humidity inside the instrument enclosure(rh)

twpsondewnpnC1.a1:
  • Relative humidity inside the instrument enclosure(rh)
  • Surface dew point temperature(dp)


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DQRID : D030503.1
Start DateStart TimeEnd DateEnd Time
04/29/2003112304/29/20031205
Subject:
TWP/SONDE/C1 - Bad RH
DataStreams:twpsondewnpnC1.a1, twpsondewnpnC1.b1
Description:
The RH sensor heating circuit failed on this radiosonde.  The RH-related values obtained 
between 0 and 10000 meters oscillate between near-zero and reasonable ambient values.  
Above 10000 the RH values are likely correct.
Measurements:twpsondewnpnC1.b1:
  • Surface dew point temperature(dp)
  • Relative humidity inside the instrument enclosure(rh)

twpsondewnpnC1.a1:
  • Relative humidity inside the instrument enclosure(rh)
  • Surface dew point temperature(dp)


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DQRID : D030603.3
Start DateStart TimeEnd DateEnd Time
05/23/2003233005/24/20030135
Subject:
TWP/SONDE/C1 - Broken temperature sensor
DataStreams:twpsondewnpnC1.a1, twpsondewnpnC1.b1
Description:
The temperature sensor on this radiosonde broke after launch.  All the temperature-related 
data are incorrect.
Measurements:twpsondewnpnC1.b1:
  • Surface dew point temperature(dp)
  • Relative humidity inside the instrument enclosure(rh)
  • Dry bulb temperature(tdry)

twpsondewnpnC1.a1:
  • Relative humidity inside the instrument enclosure(rh)
  • Dry bulb temperature(tdry)
  • Surface dew point temperature(dp)


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DQRID : D031215.3
Start DateStart TimeEnd DateEnd Time
12/01/2003230012/02/20030300
Subject:
TWP/SMET/C1 - Tower Lowered for Cal Activities
DataStreams:twpsmet60sC1.b1, twpsmetC1.00
Description:
Tower lowered for instrument calibration
Measurements:twpsmet60sC1.b1:
  • Wind #1 speed standard deviation(wind1_spd_sd)
  • Vapor pressure mean(vappress_mean)
  • Wind #1 speed arithmetic average(wind1_spd_arith_avg)
  • Wind #2 speed vector average(wind2_spd_vec_avg)
  • Wind #2 speed minimum(wind2_spd_min)
  • Precipitation standard deviation(precip_sd)
  • Wind #2 speed standard deviation(wind2_spd_sd)
  • Wind #1 direction vector average(wind1_dir_vec_avg)
  • Wind #2 speed maximum gust(wind2_spd_max_gust)
  • Std Dev of Relative Humidity or Hardware Error Code(relh_sd)
  • Wind #2 speed maximum(wind2_spd_max)
  • Temperature maximum(temp_max)
  • Precipitation mean(precip_mean)
  • Relative humidity minimum(relh_min)
  • Wind #1 speed maximum(wind1_spd_max)
  • Vapor pressure standard deviation(vappress_sd)
  • Mean Air Temperature or Hardware Error(temp_mean)
  • Mean Relative Humidity(relh_mean)
  • Std Dev of Air Temperature(temp_sd)
  • precipitation minimum(precip_min)
  • Relative humidity maximum(relh_max)
  • Wind #1 speed maximum gust(wind1_spd_max_gust)
  • Wind #1 direction standard deviation(wind1_dir_sd)
  • Wind #2 speed arithmetic average(wind2_spd_arith_avg)
  • Precipitation maximum(precip_max)
  • Temperature minimum(temp_min)
  • Wind #2 direction standard deviation(wind2_dir_sd)
  • Wind #2 direction vector average(wind2_dir_vec_avg)
  • Wind #1 speed minimum(wind1_spd_min)
  • Wind #1 speed vector average(wind1_spd_vec_avg)

twpsmetC1.00:
  • Raw data stream - documentation not supported(Raw data stream - documentation not supported)


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DQRID : D040220.1
Start DateStart TimeEnd DateEnd Time
10/11/1996000002/18/20042250
Subject:
TWP/MWR/C1 - wrong azimuth
DataStreams:twpmwrlosC1.b1
Description:
The MWR was initially installed at an azimuth angle defined as 180 degrees but the value 
in the configuration file was not changed from the default of 0 degrees. In examining 
photos taken during the installation of the AWS tower, I noticed that the MWR was rotated 
opposite the normal orientation. The value in the configuration file was changed to reflect 
the actual azimuth of the instrument.
Measurements:twpmwrlosC1.b1:
  • Actual Azimuth(actaz)


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DQRID : D040530.1
Start DateStart TimeEnd DateEnd Time
05/28/2003233005/29/20030010
Subject:
TWP/SONDE/C1 - Bad RH sensor
DataStreams:twpsondewnpnC1.a1, twpsondewnpnC1.b1
Description:
It appears that the RH sensor heating circuit failed during this portion of the sounding 
(approximately between the surface and 11km).  The RH oscillates rapidly between low (~0 
%RH) and high (~80 %RH) and the oscillation seems to stop when the temperature is below 
~40 degC.  According to Vaisala these are symptoms of failure in the ASIC (application 
specific integrated circuit) that controls the heating.
Measurements:twpsondewnpnC1.b1:
  • Surface dew point temperature(dp)
  • Relative humidity inside the instrument enclosure(rh)

twpsondewnpnC1.a1:
  • Relative humidity inside the instrument enclosure(rh)
  • Surface dew point temperature(dp)


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DQRID : D050421.6
Start DateStart TimeEnd DateEnd Time
10/09/1996000003/09/20042243
Subject:
TWP/SMET/C1 - Negative rainfall rates
DataStreams:twpsmet60sC1.b1
Description:
Due to limitations of the Zeno dataloggers all voltage measurements
from the optical rain gauge (ORG) were converted to rainfall rates. 
This resulted in negative values for rain rates.  Any value below 0.10 mm/hr should be 
considered to be 0 mm/hr.  New dataloggers 
alleviated this problem.  New loggers were installed 03/09/2004 @ 2243 GMT.
Measurements:twpsmet60sC1.b1:
  • Precipitation mean(precip_mean)
  • Precipitation maximum(precip_max)
  • Precipitation standard deviation(precip_sd)
  • precipitation minimum(precip_min)


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DQRID : D050725.9
Start DateStart TimeEnd DateEnd Time
05/04/2002020006/30/20052100
Subject:
TWP/MWR/C1 - Reprocessed: Revised Retrieval Coefficients
DataStreams:twp5mwravgC1.c1, twpmwrlosC1.b1, twpmwrtipC1.a1
Description:
IN THE BEGINNING (June 1992), the retrieval coefficients used to derive 
the precipitable water vapor (PWV) and liquid water path (LWP) from the 
MWR brightness temperatures were based on the Liebe and Layton (1987) 
water vapor and oxygen absorption model and the Grant (1957) liquid 
water absorption model.

Following the SHEBA experience, revised retrievals based on the more 
recent Rosenkranz (1998) water vapor and oxygen absorption models and 
the Liebe (1991) liquid waer absorption model were developed.  The 
Rosenkranz water vapor absorption model resulted a 2 percent increase 
in PWV relative to the earlier Liebe and Layton model.  The Liebe 
liquid water absorption model decreased the LWP by 10% relative to the 
Grant model.  However, the increased oxygen absorption caused a 
0.02-0.03 mm (20-30 g/m2) reduction in LWP, which was particularly 
significant for low LWP conditions (i.e. thin clouds encountered at 
SHEBA).

Recently, it has been shown (Liljegren, Boukabara, Cady-Pereira, and 
Clough, TGARS v. 43, pp 1102-1108, 2005) that the half-width of the 
22 GHz water vapor line from the HITRAN compilation, which is 5 percent 
smaller than the Liebe and Dillon (1969) half-width used in Rosenkranz 
(1998), provided a better fit to the microwave brightness temperature 
measurements at 5 frequencies in the range 22-30 GHz, and yielded more 
accurate retrievals. Accordingly, revised MWR retrieval coefficients 
have been developed using MONORTM, which utilizes the HITRAN compilation 
for its spectroscopic parameters.  These new retrievals provide 3 
percent less PWV and 2.6 percent greater LWP than the previous 
retrievals based on Rosenkranz (1998).

The Rosenkranz-based retrieval coefficients became active at TWP.C1 
20020504.0200.  The MONORTM-based retrieval coefficients became active 
at TWP.C1 20050630.2100.

Note: The TWP.C1 data for 19961011-20050630 have been reprocessed to apply the
Measurements:twpmwrlosC1.b1:
  • MWR column precipitable water vapor(vap)
  • Averaged total liquid water along LOS path(liq)

twp5mwravgC1.c1:
  • MWR column precipitable water vapor(vap)
  • Averaged total liquid water along LOS path(liq)

twpmwrtipC1.a1:
  • Total water vapor along zenith path using tip-derived brightness temperatures(vaptip)
  • Total liquid water along zenith path using tip-derived brightness temperatures(liqtip)


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DQRID : D050928.1
Start DateStart TimeEnd DateEnd Time
10/31/2002220009/13/20051854
Subject:
TWP/MWR/C1 - New software version (4.15) installed
DataStreams:twpmwrlosC1.b1, twpmwrtipC1.a1
Description:
A problem began with the installation of MWR.EXE version 4.12 in October 2002. The 
software had been upgraded from a "DOS" to a "Windows"-compiled program to address an earlier 
problem.  The software upgrade corrected the earlier problem but introduced a new one that 
caused line-of-sight observing cycles to be skipped, a 15% reduction in the number of tip 
curves, and saturation of CPU usage.  Software versions 4.13 and 4.14 also produced 
these problems.

The new MWR software version (4.15) was installed on 9/13/2005. As a consequence of this 
upgrade, the tip curve frequency increased. The tip cycle time decreased from ~60s to ~50s.
Measurements:twpmwrlosC1.b1:
  • Mixer kinetic (physical) temperature(tkxc)
  • Temperature correction coefficient at 23.8 GHz(tc23)
  • IR Brightness Temperature(ir_temp)
  • 31.4 GHz blac2body+noise injection signal(bbn31)
  • Sky brightness temperature at 23.8 GHz(tbsky23)
  • 23.8 GHz Blackbody signal(bb23)
  • Blackbody kinetic temperature(tkbb)
  • (tknd)
  • 31.4 GHz blackbody(bb31)
  • 31.4 GHz sky signal(sky31)
  • Sky brightness temperature at 31.4 GHz(tbsky31)
  • Temperature correction coefficient at 31.4 GHz(tc31)
  • MWR column precipitable water vapor(vap)
  • 23.8 GHz blackbody+noise injection signal(bbn23)
  • Ambient temperature(tkair)
  • Noise injection temp at nominal temperature at 31.4 GHz(tnd_nom31)
  • Averaged total liquid water along LOS path(liq)
  • Noise injection temp at nominal temperature at 23.8 GHz(tnd_nom23)
  • Sky Infra-Red Temperature(sky_ir_temp)
  • 23.8 GHz sky signal(sky23)
  • Noise injection temp at 31.4 GHz adjusted to tkbb(tnd31)
  • Noise injection temp at 23.8 GHz adjusted to tkbb(tnd23)

twpmwrtipC1.a1:
  • Noise injection temp at 31.4 GHz adjusted to tkbb(tnd31)
  • Noise injection temp at nominal temperature at 23.8 GHz(tnd_nom23)
  • 23.8 GHz goodness-of-fit coefficient(r23)
  • Noise injection temp at 31.4 GHz derived from this tip(tnd31I)
  • 31.8 GHz sky brightness temperature derived from tip curve(tbskytip31)
  • Total liquid water along zenith path using tip-derived brightness temperatures(liqtip)
  • Tip configuration number(tipn)
  • Mixer kinetic (physical) temperature(tkxc)
  • IR Brightness Temperature(ir_temp)
  • Total water vapor along zenith path using tip-derived brightness temperatures(vaptip)
  • 31.4 GHz blac2body+noise injection signal(bbn31)
  • 31.4 GHz sky signal(tipsky31)
  • 23.8 GHz Blackbody signal(bb23)
  • Ambient temperature(tkair)
  • (tknd)
  • 31.4 GHz goodness-of-fit coefficient(r31)
  • Blackbody kinetic temperature(tkbb)
  • 23.8 GHz blackbody+noise injection signal(bbn23)
  • 23.8 GHz sky brightness temperature derived from tip curve(tbskytip23)
  • Noise injection temp at 23.8 GHz adjusted to tkbb(tnd23)
  • 23.8 GHz sky signal(tipsky23)
  • Noise injection temp at nominal temperature at 31.4 GHz(tnd_nom31)
  • Temperature correction coefficient at 23.8 GHz(tc23)
  • 31.4 GHz blackbody(bb31)
  • Blackbody temperature 1(tkbb1)
  • Noise injection temp at 23.8 GHz derived from this tip(tnd23I)
  • Blackbody temperature 2(tkbb2)
  • Temperature correction coefficient at 31.4 GHz(tc31)


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DQRID : D060817.3
Start DateStart TimeEnd DateEnd Time
10/09/1996000007/13/20062225
Subject:
TWP/SMET/C1 - Reprocess: Barometric Data Changed from hPa to kPa
DataStreams:twpsmet60sC1.b1
Description:
Barometric pressure data was converted from hPa to kPa in order to standardize the 
measurement units among ARM sites and to conform to accepted standard units determined by the 
scientific community.
Measurements:twpsmet60sC1.b1:
  • Barometric Pressure(atmos_pressure)


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DQRID : D061011.2
Start DateStart TimeEnd DateEnd Time
10/09/1996000010/17/20060000
Subject:
TWP/SMET/C1 - Reprocess: Tipping bucket rain gauge added
DataStreams:twpsmet60sC1.b1
Description:
A tipping bucket rain gauge was added to the TWP.C1 SMET suite of instruments on 20061017. 
 Effective 20060926, two new variables (count and rain amount) were added to the end of 
the twpsmet60sC1.b1 datastream.  Between 9/26 and 10/17, the data for these two variables 
are filled with zeros.  Users should not use the data during this period as the zeros 
are not representative of the rain fall at the site.  When reprocessing of this datastream 
occurs these variables will be added for the 19961009-20060926 and data from 
19961009-20061017 will be filled with -9999 (missing).
Measurements:twpsmet60sC1.b1:
  • base time(base_time)


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