Preliminary Study of Land–Sea Microphysics Associated with the East Asian Summer Monsoon Rainband and Its Application to GPM DPR

Author:

Zhang Yun1,Wu Zuhang1,Zhang Lifeng1,Xie Yanqiong1,Huang Yanbin2,Zheng Hepeng1

Affiliation:

1. College of Meteorology and Oceanography, National University of Defense Technology, Nanjing, China

2. Hainan Province Weather Modification Center, Haikou, China

Abstract

AbstractRaindrop size distribution (DSD) characteristics during the East Asian summer monsoon (EASM) were studied, using measurements from three OTT Particle Size Velocity (Parsivel) disdrometers 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 Dm while smaller normalized intercept log10(Nw) 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 DmZe and NwDm relations were also derived preliminarily to improve the GPM rain-retrieval algorithms in the EASM season.

Funder

National Natural Science Foundation of China

Beijige Open Research Fund for Nanjing Joint Center of Atmospheric Research

Publisher

American Meteorological Society

Subject

Atmospheric Science,Ocean Engineering

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