DocumentCode :
1757795
Title :
Effect of Soil Moisture on the Angular Variation of Thermal Infrared Emissivity of Inorganic Soils
Author :
Garcia-Santos, Vicente ; Valor, Enric ; Caselles, Vicent ; Coll, Cesar ; Angeles Burgos, Ma
Author_Institution :
Dept. of Earth Phys. & Thermodynamics, Univ. of Valencia, Valencia, Spain
Volume :
11
Issue :
6
fYear :
2014
fDate :
41791
Firstpage :
1091
Lastpage :
1095
Abstract :
Emissivity is influenced by different factors. This study deals with the effect of the soil moisture (SM) content on the zenithal (θ) variation of ratio-to-nadir emissivity (εr), for a wide variety of inorganic bare soils. To retrieve εr, a goniometer assembly was used, together with two identical CIMEL Electronique CE312-2 radiometers working at six spectral bands within 7.7-14.3 μm, performing simultaneous radiance measurements at different combinations of zenith and azimuth angles. The results showed that the effect of SM upon εr(θ) is different depending on the spectral range and textural composition of the sample. Sandy soils showed a decrease of εr(θ) from nadir up to 0.132 for θ ≥ 40° at 8-9.4 μm under dry conditions, but this decrease was reduced to 0.093 with the increase of SM. Clayey samples did not present dependence of εr(θ) on SM. Loamy texture samples presented a more sharp decrease of εr(θ) with the increase of SM, reaching differences between nadir values and 70 ° up to 6%, at all spectral ranges studied. Finally, a parameterization of εr with SM and θ was derived allowing to obtain ratio-to-nadir emissivities with an accuracy of ± 0.011.
Keywords :
soil; CIMEL Electronique CE312-2 radiometers; azimuth angles; clayey samples; goniometer assembly; inorganic bare soils; loamy texture samples; ratio-to-nadir emissivities; ratio-to-nadir emissivity zenithal variation; soil moisture content; soil moisture effect; thermal infrared emissivity; zenith angles; Distance measurement; Radiometers; Remote sensing; Soil measurements; Soil moisture; Uncertainty; Angular emissivity; bare soil; remote sensing; soil moisture (SM); thermal infrared (TIR);
fLanguage :
English
Journal_Title :
Geoscience and Remote Sensing Letters, IEEE
Publisher :
ieee
ISSN :
1545-598X
Type :
jour
DOI :
10.1109/LGRS.2013.2286747
Filename :
6663644
Link To Document :
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