Budget Analyses of a Record-Breaking Rainfall Event in the Coastal Metropolitan City of Guangzhou, China

被引:42
|
作者
Huang, Yongjie [1 ,3 ]
Liu, Yubao [1 ,2 ]
Liu, Yuewei [1 ]
Knievel, Jason C. [1 ]
机构
[1] Natl Ctr Atmospher Res, POB 3000, Boulder, CO 80307 USA
[2] Nanjing Univ Informat Sci & Technol, Precis Reg Earth Modeling & Informat Ctr, Nanjing, Jiangsu, Peoples R China
[3] Univ Oklahoma, Sch Meteorol, Norman, OK 73019 USA
基金
美国国家科学基金会;
关键词
moisture sources; momentum budget; heat budget; vorticity budget; buoyancy acceleration; dynamic acceleration; MESOSCALE CONVECTIVE SYSTEM; MESOGAMMA-SCALE ANALYSIS; US-ARMY TEST; EXTREME RAINFALL; WARM-SEASON; PRECIPITATION EFFICIENCY; EVALUATION COMMAND; QUASI-STATIONARY; FORECAST SYSTEM; PART I;
D O I
10.1029/2018JD030229
中图分类号
P4 [大气科学(气象学)];
学科分类号
0706 ; 070601 ;
摘要
To investigate the mechanisms for the record-breaking rainfall in the coastal metropolitan city of Guangzhou, China during 6-7 May 2017, budget analyses of advection and source/sink terms of the water vapor, potential temperature, and vertical momentum equations were conducted using the model output of a nested very large eddy simulation with the Weather Research and Forecasting model. Results show that the warm and moist air flows from the south and east onshore in the lower troposphere provided the main moisture source for the heavy rainfall. The structure of vertical velocity and hydrometeors (low-echo centroid structure), in which the heavy rainfall was separated from the low-level updraft, was favorable for the formation and maintenance of a heavy precipitation rate. The removal of the heat due to the advection (cooling tendency) in the upper troposphere increased the convective available potential energy of parcels rising from the lower troposphere, maintaining the development of updrafts. Although the total buoyancy forcing was the main contribution term for maintaining the updrafts, total dynamic acceleration played an important role in the vertical acceleration below the maximum vertical velocity core. In particular, the nonlinear dynamic perturbation pressure gradient force in the lower troposphere induced by the rotations aloft maintained the strong updrafts.
引用
收藏
页码:9391 / 9406
页数:16
相关论文
共 50 条
  • [21] On the Key Dynamical Processes Supporting the 21.7 Zhengzhou Record-breaking Hourly Rainfall in China
    Wei, Peng
    Xu, Xin
    Xue, Ming
    Zhang, Chenyue
    Wang, Yuan
    Zhao, Kun
    Zhou, Ang
    Zhang, Shushi
    Zhu, Kefeng
    ADVANCES IN ATMOSPHERIC SCIENCES, 2023, 40 (03) : 337 - 349
  • [22] The Concurrent Record-breaking Rainfall over Northwest India and North China in September 2021
    Ying Na
    Riyu Lu
    Advances in Atmospheric Sciences, 2023, 40 : 653 - 662
  • [23] On the Key Dynamical Processes Supporting the 21.7 Zhengzhou Record-breaking Hourly Rainfall in China
    Peng Wei
    Xin Xu
    Ming Xue
    Chenyue Zhang
    Yuan Wang
    Kun Zhao
    Ang Zhou
    Shushi Zhang
    Kefeng Zhu
    Advances in Atmospheric Sciences, 2023, 40 : 337 - 349
  • [24] On the Key Dynamical Processes Supporting the 21.7 Zhengzhou Record-breaking Hourly Rainfall in China
    Peng WEI
    Xin XU
    Ming XUE
    Chenyue ZHANG
    Yuan WANG
    Kun ZHAO
    Ang ZHOU
    Shushi ZHANG
    Kefeng ZHU
    AdvancesinAtmosphericSciences, 2023, 40 (03) : 337 - 349
  • [25] Remote Effects of double Typhoons on Record-breaking Rainfall: A case Study in North China
    Zhou, Jie
    Yu, Haipeng
    Ren, Yu
    Yang, Yaoxian
    Liu, Xiaoyue
    Chen, Guanghua
    Ma, Zhanhong
    Zhao, Wen
    Chen, Siyu
    Wei, Yun
    Liu, Chenxi
    Zhang, Jinxia
    ATMOSPHERIC RESEARCH, 2024, 304
  • [26] The Concurrent Record-breaking Rainfall over Northwest India and North China in September 2021
    Ying NA
    Riyu LU
    Advances in Atmospheric Sciences, 2023, 40 (04) : 653 - 662
  • [27] The record-breaking precipitation event of December 2022 in Portugal
    Ferreira, Tiago M.
    Trigo, Ricardo M.
    Gaspar, Tomas H.
    Pinto, Joaquim G.
    Ramos, Alexandre M.
    NATURAL HAZARDS AND EARTH SYSTEM SCIENCES, 2025, 25 (02) : 609 - 623
  • [28] A prediction theory of record-breaking PDSI of China
    Yang Jie
    Hou Wei
    Feng Guo-Lin
    ACTA PHYSICA SINICA, 2010, 59 (01) : 664 - 675
  • [29] A Review of Research on the Record-Breaking Precipitation Event in Henan Province, China, July 2021
    Qinghong ZHANG
    Rumeng LI
    Juanzhen SUN
    Feng LU
    Jun XU
    Fan ZHANG
    AdvancesinAtmosphericSciences, 2023, 40 (08) : 1485 - 1500
  • [30] A Review of Research on the Record-Breaking Precipitation Event in Henan Province, China, July 2021
    Zhang, Qinghong
    Li, Rumeng
    Sun, Juanzhen
    Lu, Feng
    Xu, Jun
    Zhang, Fan
    ADVANCES IN ATMOSPHERIC SCIENCES, 2023, 40 (08) : 1485 - 1500