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Drop Size Distribution Observed by Dual-frequency Precipitation Radar onboard Global Precipitation Measurement Core Satellite

机译:全球降水测量核心卫星上双频降水雷达观测到的液滴尺寸分布

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This study investigated the drop size distribution (DSD) observed by the Dual-frequency Precipitation Radar (DPR) onboard the Global Precipitation Measurement (GPM) core satellite, which makes the world's first dual-frequency preciptation observations by space-borne radar. Four years have passed since the launch of the GPM core satellite, and data have been accumulated. This study focuses on the characteristics of DSD derived from the GPM/DPR measurements. In this study, DSD parameters (especially for a mass-weighted mean diameter, Dm) which are estimated based on dual-frequency information derived from GPM/DPR are analyzed with seasonal variations and precipitation characteristics. Values of Dm are generally larger over land than over the oceans. DSD shows seasonal variation, especially over the mid-latitude ocean; Dm in the winter season over the mid-latitude ocean is larger than that in the summer season in both the Northern and Southern hemispheres. Focusing on the mid-latitude North Pacific Ocean close to Japan in winter, precipitation top height is lower and stratiform ratio is higher than those in summer. It suggests that differences of Dm are associated with those of precipitation regimes, such as organized precipitation system in summer season and extratropical frontal systems in winter season.
机译:这项研究调查了全球降水测量(GPM)核心卫星上的双频降水雷达(DPR)观测到的液滴尺寸分布(DSD),这是世界上第一个通过星载雷达进行的双频降水观测。自GPM核心卫星发射以来已经过去了四年,并且已经积累了数据。这项研究的重点是从GPM / DPR测量得出的DSD特性。在这项研究中,DSD参数(尤其是质量加权平均直径Dm)是基于GPM / DPR的双频信息估算的,分析了季节变化和降水特征。通常,陆地上的Dm值大于海洋上的Dm值。 DSD显示季节性变化,尤其是在中纬度海洋;在北半球和南半球,中纬度冬季的冬季Dm大于夏季的Dm。冬季集中在日本附近的中纬度北太平洋,降水顶高较低,地层比率高于夏季。这表明Dm的差异与降水方式的差异有关,例如夏季的有组织降水系统和冬季的温带额叶系统。

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