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Dual-channel microwave radiometer measurements from the high-Arctic ASCOS expedition 2008

Matthew Shupe

Newer versions of this dataset are available

Vertically integrated water vapor (PWV) and cloud liquid water (LWP) was measured using a microwave radiometer, simultaneously observing the microwave radiation at two different wavelengths.

AtmosphereCloudsASCOSMeteorologyHigh ArcticArctic boundary layerArctic cloudsCloudsRemote sensing

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Name

oden-ascos-2008-dual-channel-radiometer

Version

1

Citation

Matthew Shupe (2018) Dual-channel microwave radiometer measurements from the high-Arctic ASCOS expedition 2008. Dataset version 1. Bolin Centre Database. https://doi.org/10.17043/oden-ascos-2008-dual-channel-radiometer-1

References

Tjernström, M. et al. 2014. The Arctic Summer Cloud Ocean Study (ASCOS): overview and experimental design. Atmospheric Chemistry and Physics, 14, 2823–2869. https://doi.org/10.5194/acp-14-2823-2014

Data description

This data set includes brightness temperature measurements from a ground-based, vertically-pointing, dual-channel (23 and 30 GHz) microwave radiometer system. From these brightness temperatures the total cloud liquid water path and precipitable water vapor in the vertical atmospheric column are retrieved. All files are in netCDF format and thus contain data set and field-specific attributes in the files.

Comments

Information on clouds was also collected using surface-based remote sensing from two radars and one microwave radiometer. The main source of information comes from the MilliMeter Cloud Radar (MMCR) which is a vertically pointing Ka-band Doppler radar. The second radar is also a vertically pointing Doppler radar, but at the S-band. The MMCR, transmitting at 34 GHz, is very sensitive and ideal for probing low-level clouds, while the S-band radar is more adapted to measuring precipitation but can also be used for clouds. Both radars provide three main user products for every measuring volume (determined by the increasing width of the radar beam and the height discrimination): The radar reflectivity; essentially the power of the backscatter of the radar beam; 2) The mean Doppler velocity; the mean vertical speed of all the hydrometeors with respect to the radar, and; 3) The width of the Doppler spectra; all hydrometeors within each volume does not have the same vertical velocity. In addition to the radars a dual-wavelength radiometer was deployed, observing simultaneously the microwave radiation at two wavelengths, allowing the observation of the vertically integrated water vapor (PWV) and cloud liquid water (LWP). By a combination of the information from the MMCR, the microwave radiometer, the cloud base ceilometer and the soundings, one can also estimate various cloud microphysics parameter can be estimated.Original address: http://www.ascos.se/index.php?q=node/261

Files:
ascmwrlosC1.b1.zip (8.12 MB)

Project

Arctic Summer Cloud-Ocean Study 2008 (Ascos)

Publisher

Bolin Centre Database

First name

Michael

Last name or organisation

Tjernström

Email address

michaelt@misu.su.se

Address

Department of Meteorology; Stockholm University

Postal code

SE-106 91

City

Stockholm

Country

Sweden

GCMD science keyword

Earth science > Atmosphere

GCMD location

Ocean > Arctic Ocean

Dataset language

English

Begin date

2008-08-01

End date

2008-09-08

DOI

10.17043/oden-ascos-2008-dual-channel-radiometer-1

Time

2021-12-03T16:09:30.070212+00:00

Versions

  • 1 2022-01-26T13:47:43.467847+00:00
  • 1 2021-12-03T16:09:30.070212+00:00
  • 1 2021-10-29T06:23:12.615571+00:00
  • 1 2018-10-16T14:24:39+00:00