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Remote sensing of atmospheric water vapor, liquid water and wind speed at the ocean surface by passive microwave techniques from the Nimbus-5 satellite

机译:通过Nimbus-5卫星的被动微波技术遥感海洋表面的大气水蒸气,液态水和风速

摘要

The microwave brightness temperature measurements for Nimbus-5 electrically scanned microwave radiometer and Nimbus E microwave spectrometer are used to retrieve the atmospheric water vapor, liquid water and wind speed by a quasi-statistical retrieval technique. It is shown that the brightness temperature can be utilized to yield these parameters under various weather conditions. Observations at 19.35 GHz, 22.235 GHz and 31.4 GHz were input to the regression equations. The retrieved values of these parameters for portions of two Nimbus-5 orbits are presented. Then comparison between the retrieved parameters and the available observations on the total water vapor content and the surface wind speed are made. The estimated errors for retrieval are approximately 0.15 g/sq cm for water vapor content, 6.5 mg/sq cm for liquid water content and 6.6 m/sec for surface wind speed.
机译:Nimbus-5电扫描微波辐射仪和Nimbus E微波光谱仪的微波亮度温度测量通过准统计检索技术来检索大气中的水蒸气,液态水和风速。结果表明,在各种天气条件下,可以利用亮度温度得出这些参数。将19.35 GHz,22.235 GHz和31.4 GHz的观测值输入回归方程。给出了两个Nimbus-5轨道各部分的这些参数的检索值。然后,将检索到的参数与总水蒸气含量和地表风速的可用观测值进行比较。对于水蒸气含量,估计的检索误差约为0.15 g / sq cm,对于液体水含量,约为6.5 mg / sq cm,对于表面风速约为6.6 m / sec。

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