DocumentCode
1301469
Title
Metamorphic signature of snow revealed in SSM/I measurements
Author
Rosenfeld, Simon ; Grody, Norman C.
Author_Institution
NOAA, Camp Springs, MD, USA
Volume
38
Issue
1
fYear
2000
fDate
1/1/2000 12:00:00 AM
Firstpage
53
Lastpage
63
Abstract
Brightness temperatures (19, 22, 37, 85 GHz) measured by the special sensor microwave/imager (SSM/I) are analyzed using data from the snow monitoring network within the former Soviet Union during the 1987-1988 winter period. It is shown that in the beginning of winter, the SSM/I measurements display the classical snow scattering signature, i.e., the brightness temperatures decrease with increasing depth, and the largest decrease occurs at the highest frequency. Dramatic deviations from this pattern are observed in the middle of winter, where the brightness temperature approaches a minimum and then begins to increase despite the fact that the snow depth remains constant or continues to grow. The two-stream radiative transfer model is combined with results from dense media theory to help explain the phenomenon. Model results suggest that the increase in brightness temperature is due to a decrease of the single scattering albedo as the snowpack ages. This decrease of the albedo is related to changes in the snow crystalline structure due to metamorphism. Consequences for the interpretation of satellite measurements and development of algorithms for deriving snow water equivalent are discussed
Keywords
atmospheric techniques; hydrological techniques; radiometry; remote sensing; snow; 19 to 85 GHz; AD 1987; AD 1998; EHF; SHF; SSM/I; Soviet Union; age; atmosphere; brightness temperature; dense media theory; depth; hydrology; measurement technique; metamorphic signature; metamorphism; microwave radiometry; remote sensing; scattering signature; snow cover; snow water equivalent; snowcover; snowpack; special sensor microwave/imager; two-stream radiative transfer model; winter; Brightness temperature; Data analysis; Image analysis; Image sensors; Microwave measurements; Microwave sensors; Monitoring; Scattering; Snow; Temperature sensors;
fLanguage
English
Journal_Title
Geoscience and Remote Sensing, IEEE Transactions on
Publisher
ieee
ISSN
0196-2892
Type
jour
DOI
10.1109/36.823901
Filename
823901
Link To Document