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首页> 外文期刊>Journal of the Atmospheric Sciences >Droplet Growth in Warm Water Clouds Observed by the A-Train. Part I: Sensitivity Analysis of the MODIS-Derived Cloud Droplet Sizes
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Droplet Growth in Warm Water Clouds Observed by the A-Train. Part I: Sensitivity Analysis of the MODIS-Derived Cloud Droplet Sizes

机译:A火车观察到的暖水云中的液滴生长。第一部分:MODIS派生的云滴大小的敏感性分析

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This study examines the sensitivity of the retrieved cloud droplet radii (CDR) to the vertical inhomogeneity of droplet radii, including the existence of a drizzle mode in clouds. The focus of this study is warm water-phase clouds. Radiative transfer simulations of three near-infrared Moderate Resolution Imaging Spectroradiometer (MODIS) channels centered on wavelengths of 1.6, 2.1, and 3.7 mu m reveal that the retrieved CDR are strongly influenced by the vertical inhomogeneity of droplet size including (i) the existence of small cloud droplets at the cloud top and (ii) the existence of the drizzle mode. The influence of smaller droplets at cloud top affects the 3.7-mu m channel most, whereas the presence of drizzle influences radiances of both the 2.1- and 1.6-mu m channels more than the 3.7-mu m channel. Differences in the CDR obtained from MODIS 1.6-, 2.1-, and 3.7-mu m channels that appear in global analysis of MODIS retrievals and the CDR derived from data collected during the First International Satellite Cloud Climatology Project (ISCCP) Regional Experiment (FIRE) intensive observation period in 1987 can be explained by the results obtained from the sensitivity experiments of this study.
机译:这项研究检查了检索到的云滴半径(CDR)对液滴半径的垂直不均匀性的敏感性,包括云中存在毛毛雨模式。这项研究的重点是温暖的水相云。三个以1.6、2.1和3.7μm波长为中心的近红外中等分辨率成像光谱仪(MODIS)通道的辐射传递模拟表明,所取回的CDR受液滴尺寸的垂直不均匀性的强烈影响,包括(i)存在云顶的小云滴和(ii)毛毛雨模式的存在。云顶较小液滴的影响对3.7微米通道的影响最大,而毛毛雨的存在对2.1微米和1.6微米通道的辐射的影响要大于3.7微米通道。从MODIS取回的全局分析中出现的MODIS 1.6、2.1和3.7微米通道获得的CDR的差异以及从第一次国际卫星云气候项目(ISCCP)区域实验(FIRE)期间收集的数据得出的CDR的差异1987年的密集观测期可以通过本研究的敏感性实验获得的结果来解释。

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