Kinematics and Microphysics of Convection in the Outer Rainband of Typhoon Nida (2016) Revealed by Polarimetric Radar

Author:

Wu Dan12,Zhao Kun1,Kumjian Matthew R.3,Chen Xiaomin1,Huang Hao1,Wang Mingjun1,Didlake Anthony C.3,Duan Yihong4,Zhang Fuqing3

Affiliation:

1. Key Laboratory of Mesoscale Severe Weather/MOE, and School of Atmospheric Sciences, Nanjing University, Nanjing, and State Key Laboratory of Severe Weather, and Joint Center for Atmospheric Radar Research, China Meteorological Administration/Nanjing University, Beijing, China

2. Shanghai Typhoon Institute, Shanghai, China

3. Department of Meteorology and Atmospheric Science, The Pennsylvania State University, University Park, Pennsylvania

4. State Key Laboratory of Severe Weather, Chinese Academy of Meteorological Sciences, China Meteorological Administration, Beijing, China

Abstract

Abstract This study analyzes the microphysics of convective cells in an outer rainband of Typhoon Nida (2016) using data collected by a newly upgraded operational polarimetric radar in China. The life cycle of these convective cells is divided into three stages: developing, mature, and decaying according to the intensity of the corresponding updraft. Composite analysis shows that deep columns of ZDR and KDP collocate well with the enhanced updraft as the cells develop to their mature stage. A layered microphysical structure is observed in the ice region with riming near the −5°C level within the updraft, aggregation around the −15°C level, and deposition anywhere above the 0°C level. These ice-phase microphysical processes are important pathways of particle growth in the outer rainbands. In particular, riming contributes significantly to surface heavy rainfall. These contrast to previously documented inner rainbands, where warm-rain processes are the predominant pathway of particle growth.

Funder

the National Key Research and Development Program of China under Grants

the National Natural Science Foundation of China

the National Fundamental Research 973 Program of China

the Program for New Century Excellent Talents in Universities of China

the Fundamental Research Funds for the Central Universities

Publisher

American Meteorological Society

Subject

Atmospheric Science

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