Research on the vertical structural characteristics of precipitation clouds and their relationship with surface precipitation using Xband vertically pointing radar
Zhao Song1, Duan Minghua2,3
1. Chongqing Meteorological Information and Technology Support Center,Chongqing 401147; 2. School of Communication and Information Engineering,Chongqing University of Technology,Chongqing 401520; 3. State Key Laboratory of Severe Weather,Chinese Academy of Meteorological Sciences,Beijing 100081
Abstract:Based on data from X-band vertically pointing weather radar and ground rainfall stations,this article takes a convective precipitation process and a stratiform precipitation process in Ding'an,Hainan in the summer of 2020 as the research objects.Through the vertically pointing observation mode,it explores the echo characteristics of different types of precipitation clouds at different heights and their relationship with ground precipitation,and analyzes the differences in these characteristics in precipitation intensity inversion.The results show that the inversion accuracy of the Z-R relationship is significantly affected by raindrop spectra,with stratiform precipitation being overestimated and convective clouds underestimated.Furthermore,the correlation between reflectivity and ground precipitation gradually weakens with increasing height,requiring adjustments to parameters based on cloud type.In stratiform precipitation,the inverted rainfall intensity is generally higher,and its correlation with ground precipitation gradually decreases with increasing height.In convective precipitation,there is a significant temporal difference between the inverted rainfall intensity and the actual ground rainfall intensity.The research results can provide a reference for the future application of weather radar in precipitation observation.
赵松, 段明花. X波段垂直指向雷达对降水云垂直结构特征及其与地面降水关系的研究[J]. 气象水文海洋仪器, 2025, 42(6): 1-5.
Zhao Song, Duan Minghua. Research on the vertical structural characteristics of precipitation clouds and their relationship with surface precipitation using Xband vertically pointing radar. Meteorological Hydrological and Marine Instrument, 2025, 42(6): 1-5.
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