含水量
亮度温度
土壤科学
土壤水分
环境科学
表面粗糙度
土壤质地
亮度
水分
电介质
辐射传输
介电常数
表面光洁度
辐射计
遥感
微波食品加热
辐射测量
材料科学
地质学
光学
岩土工程
复合材料
物理
光电子学
量子力学
作者
James R. Wang,Peggy O’Neill,Thomas J. Jackson,Edwin T. Engman
标识
DOI:10.1109/tgrs.1983.350529
摘要
An experiment on remote sensing of soil moisture content was conducted over bare fields with microwave radiometers at the frequencies of 1.4, 5, and 10.7 GHz, during July-September of 1981. Three bare fields with different surface roughnesses and soil textures were prepared for the experiment. Ground-truth acquisition of soil temperatures and moisture contents for 5 layers down to the depths of 15 cm was made concurrently with radiometric measurements. The experimental results show that the effect of surface roughness is to increase the soil's brightness temperature and to reduce the slope of regression between brightness temperature and moisture content. The slopes of regression for soils with different textures are found to be comparable and the effect of soil texture is reflected in the difference of regression line intercepts at brightness-temperature axis. The result is consistent with laboratory measurement of soil's dielectric permittivity. Measurements on wet smooth bare fields give lower brightness temperatures at 5 than at 1.4 GHz. This phenomenon is not expected from current radiative transfer theory, using laboratory measurements of the relationship between dielectric permittivity and moisture content for different soil-water mixtures at frequencies of <5 GHz.
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