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Cloud optical thickness and effective particle radius derived from transmitted solar radiation measurements: Comparison with cloud radar observations

机译:云光学厚度和有效的粒子来自太阳辐射传输半径测量:与云雷达观察

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摘要

A method is presented for determining the optical thickness and effective particle radius of stratiform clouds containing liquid water drops in the absence of drizzle from transmitted solar radiation measurements. The procedure compares measurements of the cloud transmittance from the ground at water-absorbing and nonabsorbing wavelengths with lookup tables of the transmittance precomputed for plane-parallel, vertically homogeneous clouds. The optical thickness derived from the cloud transmittance may be used to retrieve vertical profiles of cloud microphysics in combination with the radar reflectivity factor. To do this, we also present an algorithm for solving the radar equation with a constraint of the optical thickness at the visible wavelength. Observations of clouds were made in August and September 2003 at Koganei, Tokyo, Japan, using a PREDE i-skyradiometer and a 95-GHz cloud radar Super Polarimetric Ice Crystal Detection and Explication Radar (SPIDER). The optical thickness and effective radius of water clouds were derived from the i-skyradiometer. Then, the vertical profile of the effective radius was retrieved from SPIDER, using the optical thickness determined from the i-skyradiometer. We found that the effective radii derived by using these two instruments were in good agreement.
机译:确定光学的方法厚度和有效粒子半径层状云含有液态水滴没有细雨从太阳传播辐射测量。云的透光率的测量在吸水和nonabsorbing地面波长的查找表透光率成平行面的预先计算的,垂直均匀云。厚度来自云透光率可用于检索垂直的吗云粒子物理学结合雷达反射率的因素。一个算法求解雷达方程一个约束的光学厚度可见波长。在2003年8月和9月在小金井,日本东京,使用PREDE i-skyradiometer和95 - ghz云雷达超级偏振冰晶检测和说明雷达(蜘蛛)。光学厚度和有效半径的水云来自i-skyradiometer。然后,有效的垂直剖面半径从蜘蛛,检索使用光学厚度决定的i-skyradiometer。通过使用这两个工具半径派生良好的协议。

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