Analysis on Precipitation Efficiency of the “21.7” Henan Extremely Heavy Rainfall Event

被引:0
|
作者
Lei Yin
Fan Ping
Jiahua Mao
Shuanggen Jin
机构
[1] Chinese Academy of Sciences,Institute of Atmospheric Physics
[2] Zhejiang University of Water Resources and Electric Power,School of Geomatics and Municipal Engineering
[3] Nanjing University of Information Science and Technology,undefined
来源
关键词
extremely heavy rainfall; Zhengzhou; large-scale precipitation efficiency; cloud-microphysical precipitation efficiency; 极端暴雨; 郑州; 大尺度降水效率; 云微物理降水效率;
D O I
暂无
中图分类号
学科分类号
摘要
A record-breaking heavy rainfall event that occurred in Zhengzhou, Henan province during 19–21 July 2021 is simulated using the Weather Research and Forecasting Model, and the large-scale precipitation efficiency (LSPE) and cloud-microphysical precipitation efficiency (CMPE) of the rainfall are analyzed based on the model results. Then, the key physical factors that influenced LSPE and CMPE, and the possible mechanisms for the extreme rainfall over Zhengzhou are explored. Results show that water vapor flux convergence was the key factor that influenced LSPE. Water vapor was transported by the southeasterly winds between Typhoon In-Fa (2021) and the subtropical high, and the southerly flow of Typhoon Cempaka (2021), and converged in Zhengzhou due to the blocking by the Taihang and Funiu Mountains in western Henan province. Strong moisture convergence centers were formed on the windward slope of the mountains, which led to high LSPE in Zhengzhou. From the perspective of CMPE, the net consumption of water vapor by microphysical processes was the key factor that influenced CMPE. Quantitative budget analysis suggests that water vapor was mainly converted to cloud water and ice-phase particles and then transformed to raindrops through melting of graupel and accretion of cloud water by rainwater during the heavy precipitation stage. The dry intrusion in the middle and upper levels over Zhengzhou made the high potential vorticity descend from the upper troposphere and enhanced the convective instability. Moreover, the intrusion of cold and dry air resulted in the supersaturation and condensation of water vapor, which contributed to the heavy rainfall in Zhengzhou.
引用
收藏
页码:374 / 392
页数:18
相关论文
共 50 条
  • [1] Analysis on Precipitation Efficiency of the "21.7" Henan Extremely Heavy Rainfall Event
    Yin, Lei
    Ping, Fan
    Mao, Jiahua
    Jin, Shuanggen
    ADVANCES IN ATMOSPHERIC SCIENCES, 2023, 40 (03) : 374 - 392
  • [2] Analysis on Precipitation Efficiency of the “21.7” Henan Extremely Heavy Rainfall Event
    Lei YIN
    Fan PING
    Jiahua MAO
    Shuanggen JIN
    AdvancesinAtmosphericSciences, 2023, 40 (03) : 374 - 392
  • [3] Impact of Atmospheric River and Local Topography on "21.7" Extremely Heavy Rainfall in Henan Province, China
    Zhang, Zhiwei
    Chen, Jingjing
    Li, Yunying
    Fu, Xiaoxia
    Ding, Yamei
    ATMOSPHERIC RESEARCH, 2024, 310
  • [4] A case study of the "21.7" Henan extremely rainfall event: From the perspective of water vapor monitored with GNSS tomography
    Chen, Xinxin
    Lou, Yidong
    Zhang, Weixing
    Dousa, Jan
    Zhou, Linghao
    Zhou, Yaozong
    ADVANCES IN SPACE RESEARCH, 2025, 75 (02) : 1719 - 1731
  • [5] Variability of microphysical characteristics in the “21·7” Henan extremely heavy rainfall event
    Gang CHEN
    Kun ZHAO
    Yinghui LU
    Yuanyuan ZHENG
    Ming XUE
    Zhe-Min TAN
    Xin XU
    Hao HUANG
    Haonan CHEN
    Fen XU
    Ji YANG
    Shushi ZHANG
    Xueqi FAN
    ScienceChina(EarthSciences), 2022, 65 (10) : 1861 - 1878
  • [6] Variability of microphysical characteristics in the “21·7” Henan extremely heavy rainfall event
    Gang Chen
    Kun Zhao
    Yinghui Lu
    Yuanyuan Zheng
    Ming Xue
    Zhe-Min Tan
    Xin Xu
    Hao Huang
    Haonan Chen
    Fen Xu
    Ji Yang
    Shushi Zhang
    Xueqi Fan
    Science China Earth Sciences, 2022, 65 : 1861 - 1878
  • [7] Variability of microphysical characteristics in the "21•7" Henan extremely heavy rainfall event
    Chen, Gang
    Zhao, Kun
    Lu, Yinghui
    Zheng, Yuanyuan
    Xue, Ming
    Tan, Zhe-Min
    Xu, Xin
    Huang, Hao
    Chen, Haonan
    Xu, Fen
    Yang, Ji
    Zhang, Shushi
    Fan, Xueqi
    SCIENCE CHINA-EARTH SCIENCES, 2022, 65 (10) : 1861 - 1878
  • [8] Evaluating the Variability of Simulated Raindrop Size Distributions in the "21•7" Henan Extremely Heavy Rainfall Event
    Chen, Gang
    Lu, Yinghui
    Hua, Shaofeng
    Liu, Qingyuan
    Zhao, Kun
    Zheng, Yuanyuan
    Wang, Mingjun
    Zhang, Shushi
    Wang, Xiuming
    GEOPHYSICAL RESEARCH LETTERS, 2023, 50 (08)
  • [9] The Roles of Low-level Jets in “21·7” Henan Extremely Persistent Heavy Rainfall Event
    Yuhan Luo
    Yu Du
    Advances in Atmospheric Sciences, 2023, 40 : 350 - 373
  • [10] The Roles of Low-level Jets in “21·7” Henan Extremely Persistent Heavy Rainfall Event
    Yuhan LUO
    Yu DU
    AdvancesinAtmosphericSciences, 2023, 40 (03) : 350 - 373