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Remote sensing of soil moisture with microwave radiometers

机译:用微波辐射计遥感土壤湿度

摘要

Results are presented that were derived from measurements made by microwave radiometers during the March 1972 and February 1973 flights of National Aeronautics and Space Administration (NASA) Convair-9900 aircraft over agricultural test sites in the southwestern part of United States. The purpose of the missions was to study the use of microwave radiometers for the remote sensing of soil moisture. The microwave radiometers covered the 0.8- to 21-cm wavelength range. The results show a good linear correlation between the observed microwave brightness temperature and moisture content of the 0- to 1-cm layer of the soil. The results at the largest wavelength (21 cm) show the greatest sensitivity to soil moisture variations and indicate the possibility of sensing these variations through a vegetative canopy. The effect of soil texture on the emission from the soil was also studied and it was found that this effect can be compensated for by expressing soil moisture as a percent of field capacity for the soil. The results were compared with calculations based on a radiative transfer model for layered dielectrics and the agreement is very good at the longer wavelengths. At the shorter wavelengths, surface roughness effects are larger and the agreement becomes poorer.
机译:给出的结果是从1972年3月和1973年2月美国国家航空航天局(NASA)Convair-9900飞机在美国西南部农业试验地点上空飞行时,用微波辐射计进行的测量得出的。任务的目的是研究使用微波辐射计对土壤湿度进行遥感。微波辐射计覆盖0.8到21厘米的波长范围。结果表明,观测到的微波亮度温度与土壤0至1厘米层的水分含量之间具有良好的线性相关性。在最大波长(21厘米)处的结果显示出对土壤水分变化的最大敏感性,并表明有可能通过植物冠层感测这些变化。还研究了土壤质地对土壤排放的影响,发现可以通过将土壤水分表示为土壤田间持水量的百分比来补偿这种影响。将结果与基于层状电介质的辐射传输模型的计算结果进行了比较,并且在更长的波长下一致性非常好。在较短的波长下,表面粗糙度影响更大,一致性变差。

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