DocumentCode :
2136726
Title :
Simulation of the emission of frozen soil by using IEM
Author :
Ying, Zhu ; Lixin, Zhang ; Kaiguang, Zhao ; Fang, Wang ; Qinbo
Author_Institution :
Sch. of Geogr., Beijing Normal Univ., China
Volume :
4
fYear :
2004
fDate :
20-24 Sept. 2004
Firstpage :
2780
Abstract :
Seasonal freeze/thaw cycles of soils influence the ground thermal and hydrological characteristics, which have significant impact on the balance of heat and moisture at interface between soil and atmosphere. Microwave remote sensing of frozen soil is of primary importance. In this study, microwave emission of frozen soil was simulated for evaluating the surface and subsurface effect, including surface roughness and dielectric properties, on the brightness temperature at AMSR-E frequencies. First a dielectric constant model of frozen soil newly proposed was employed to obtain dielectric properties for frozen soil. We simulated the interface emission by using integral equation model (IEM) to reach the total emission. It is found that emission signatures of soil layer are quite different at frozen or thaw status at AMSR-E frequencies. The importance of each emission component was demonstrated at different frequencies and polarizations under different surface conditions.
Keywords :
hydrological techniques; hydrology; land surface temperature; microwave measurement; moisture; remote sensing; soil; AMSR-E frequency; IEM; brightness temperature; dielectric constant model; dielectric properties; frozen soil emission; ground hydrological characteristics; ground thermal characteristics; heat; integral equation model; interface emission; microwave emission; microwave remote sensing; moisture; polarization; seasonal freeze-thaw cycle; soil layer emission signature; soil-atmosphere interface; surface roughness; Atmosphere; Atmospheric modeling; Dielectrics; Electromagnetic heating; Frequency; Moisture; Remote sensing; Rough surfaces; Soil; Surface roughness;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Geoscience and Remote Sensing Symposium, 2004. IGARSS '04. Proceedings. 2004 IEEE International
Print_ISBN :
0-7803-8742-2
Type :
conf
DOI :
10.1109/IGARSS.2004.1369879
Filename :
1369879
Link To Document :
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