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2015年江淮流域中尺度涡旋梅雨期暴雨过程的诊断分析

黄文娟 陈永林 束炯

气象与环境学报2017,Vol.33Issue(6):25-33,9.
气象与环境学报2017,Vol.33Issue(6):25-33,9.DOI:10.3969/j.issn.1673-503X.2017.06.004

2015年江淮流域中尺度涡旋梅雨期暴雨过程的诊断分析

Diagnostic analysis on Meiyu rainstorm triggered by mesoscale vortex in Yangtze and Huaihe River in 2015

黄文娟 1陈永林 2束炯1

作者信息

  • 1. 地理信息科学重点实验室(教育部)华东师范大学,上海200241
  • 2. 上海中心气象台,上海200030
  • 折叠

摘要

Abstract

Based on the equivalent black body temperature at the cloud top derived from FY-2 G and the NCEP ( National Centers for Environmental Prediction) reanalysis data with resolutions of 1° × 1°,a sustained heavy rain in Yangtze-Huaihe river basin on June 16-17,2015 was analyzed. The results show that the intensity of this precipi-tation is essentially consistent with the evolution of mesoscale convective vortex ( MCV) and the southwest jet. The MCV is triggered together by the latent heat release induced by the organized development of convection and the low-level convergence and upper-level divergence. The MCV extends from the lower troposphere to 250 hPa, and the strongest center for vorticity is at the middle-low level of the troposphere. During the mature stage,me-soscale convective system ( MCS) can help to stimulate updraft and is a benefit to transport heat and water vapor because the convergence zone of wet Q vector corresponded to the center of positive vorticity,which promoted the development of MCV. The horizontal advection at the middle-lower level contributes negatively to the vorticity during the whole MCV stage. The formation and development of MCV is determined by the horizontal convergence and divergence. Ascending motion of the vortex has a direct impact on the vertical transportation of vorticity and further influences on the development of the vortex in the vertical.

关键词

中尺度对流涡旋/中尺度对流系统/湿Q矢量/黑体温度

Key words

Mesoscale convective vortex ( MCV )/Mesoscale convective system ( MCS )/Wet Q vector/Black body temperature ( TBB)

分类

天文与地球科学

引用本文复制引用

黄文娟,陈永林,束炯..2015年江淮流域中尺度涡旋梅雨期暴雨过程的诊断分析[J].气象与环境学报,2017,33(6):25-33,9.

基金项目

国家自然科学基金项目(41475054)和国家自然科学基金项目(41271055)共同资助. (41475054)

气象与环境学报

OACSTPCD

1673-503X

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