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Development of a winter snow water equivalent algorithm using in situ passive microwave radiometry over snow-covered first-year sea ice [An article from: Remote Sensing of Environment]

Author A. Langlois, D.G. Barber, B.J. Hwang
Publisher Elsevier
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Book Details
PublisherElsevier
ISBN / ASINB000PDSC9S
ISBN-13978B000PDSC95
MarketplaceFrance 🇫🇷

Description

This digital document is a journal article from Remote Sensing of Environment, published by Elsevier in 2007. The article is delivered in HTML format and is available in your Amazon.com Media Library immediately after purchase. You can view it with any web browser.

Description:
A snow water equivalent (SWE) algorithm has been developed for thin and thick snow using both in situ microwave measurements and snow thermophysical properties, collected over landfast snow covered first-year sea ice during the Canadian Arctic Shelf Exchange Study (CASES) overwintering mission from December 2003 to May 2004. Results showed that the behavior of brightness temperatures (T"bs) in thin snow covers was very different from those in a thick snowpack. Microwave SWE retrievals using the combination of T"b 19 GHz and air temperature (multiple regression) over thick snow are quite accurate, and showed very good agreement with the physical data (R^2=0.94) especially during the cooling period (i.e., from freeze up to the minimum air temperature recorded) where the snow is dry and cold. Thin snow SWE predictions also showed fairly good agreement with field data (R^2=0.70) during the cold season. The differences between retrieved and in situ SWE for both thin and thick snow cover are mainly attributable to the variations in air temperature, snow wetness and spatial heterogeneity in snow thickness.