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首页> 外文期刊>Oceanographic Literature Review >Preliminary study of land-sea microphysics associated with the east asian summer monsoon rainband and its application to GPM DPR
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Preliminary study of land-sea microphysics associated with the east asian summer monsoon rainband and its application to GPM DPR

机译:与东亚夏季季风雨带相关的陆海微物理学初步研究及其在GPM DPR应用中的应用

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摘要

Raindrop size distribution (DSD) characteristics during the East Asian summer monsoon (EASM) were studied, using measurements from three OTT Particle Size Velocity (Parsivel) disdrom-eters in Nanjing, Chuzhou, and the northwestern Pacific (NWP), respectively. Western and eastern parts of the monsoon rainband were separated for a comparative study of the DSD variability. Along with disdrometer data, GPM Dual-Frequency Precipitation Radar (DPR), Fengyun-2E (FY-2E), MODIS, GPCP, ERA-Interim, and in situ radiosonde datasets are combined to illustrate the possible microphysical mechanisms for the significant DSD variability in two parts, in terms of convective intensity, cloud structure, and aerosol effects. The DSD characteristics of six rain-rate classes and two rainfall categories (convective and stratiform) were studied. The western part has larger mass-weighted mean diameter D_m while smaller normalized intercept log_(10)(N_w) than the eastern part, and the convective clusters of the western part (land) could be identified more maritime-like than continental-like due to moisture transport from the tropical ocean, while that of the eastern part (sea) is between maritime-like and continental-like. Cross validation of GPM rainfall products are implemented based on surface disdrometer observations. DPR products manifest better performance over sea than land areas of the EASM rainband. Empirical D_m-Z_e and N_w-D_m relations were also derived preliminarily to improve the GPM rain-retrieval algorithms in the EASM season.
机译:研究了东亚夏季季风(EASM)期间的雨滴大小分布(DSD)特征,分别使用南京,滁州,西北(NWP)的三个OTT粒度速度(Parsivel)Discrom-Eters测量。季风雨带的西部和东部部分被分开了DSD变异性的比较研究。除了抑菌数据,GPM双频降水雷达(DPR),FengyUn-2E(FY-2E),MODIS,GPCP,ERA临时和原位无线电电池数据集组被组合为说明可能的显着DSD变异的微妙机制在两部分,在对流强度,云结构和气溶胶效应方面。研究了六种雨率类别的DSD特征和两种降雨类别(对流和层状)。西部具有较大的大规模加权平均直径D_m,而比东部部分较小的标准化截距log_(10)(n_w),并且西部(土地)的对流集群可以被确定比大陆的欧洲样子更常见从热带海洋中滋润,而东部部分(海)之间的水分在海上和大陆之间。基于表面抑仪观察来实现GPM降雨产品的交叉验证。 DPR产品在海上表现出比EASM Rainband的陆地面积更好。初步推导了经验D_M-Z_E和N_W-D_M关系,以改善EASM季节中的GPM雨水检索算法。

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  • 来源
    《Oceanographic Literature Review》 |2020年第9期|1892-1892|共1页
  • 作者

    Y.U.N. Zhang; Z. Wu; L. Zhang;

  • 作者单位

    College of Meteorology and Oceanography National University of Defense Technology Nanjing China;

    College of Meteorology and Oceanography National University of Defense Technology Nanjing China;

    College of Meteorology and Oceanography National University of Defense Technology Nanjing China;

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  • 正文语种 eng
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