主办单位:中国气象局沈阳大气环境研究所
国际刊号:ISSN 1673-503X
国内刊号:CN 21-1531/P

气象与环境学报 ›› 2013, Vol. 29 ›› Issue (2): 6-11.doi:

• 论文 • 上一篇    下一篇

“080527”湖北老河口短历时暴雨的中尺度天气成因分析

金琪1 舒斯1 王晓玲1 王艳1 王仁乔2   

  1. 1.武汉中心气象台,湖北 武汉430074;2.湖北省气象局,湖北 武汉430074
  • 出版日期:2013-04-30 发布日期:2013-04-30

Formation reason for mesoscale weather system of a short-time rainstorm on May 27, 2008 at Laohekou of Hubei province

JIN Qi1 SHU Si1 WANG Xiao-ling1 WANG Yan1 WANG Ren-qiao2   

  1. 1.Wuhan Central Meteorological Observatory, Wuhan 430074, China; 2.Hubei Meteorological Service, Wuhan 430074, China
  • Online:2013-04-30 Published:2013-04-30

摘要: 以2008年5月27日发生在湖北老河口的短历时暴雨为例,利用NCEP客观再分析资料,开展中尺度天气系统诊断分析。结果表明:干线、500 hPa冷温度槽、冷切尾部辐合区、中低层湿区及地面风场辐合线等中尺度天气系统的活动与暴雨发生、发展密切相关。干空气自北向南、自上而下侵入湿区,具有典型的湖北干侵入暴雨特征。干侵入使干冷空气与暖湿空气汇合上升,同时激发冷切尾部辐合区中的正涡度柱沿假相当位温锋区向上发展,配合地面中尺度辐合线,增强对流上升运动。500 hPa冷温度槽活动及干侵入造成垂直方向上对流不稳定,冷式切变线尾部由于冷暖平流、干湿平流交汇构成水平方向不稳定区,不稳定区受露点锋生扰动,从而触发强对流天气。中低层深厚湿区的维持和水汽辐合为老河口中尺度暴雨提供了水汽来源。

关键词: 中尺度暴雨, 干侵入, 冷切尾部辐合区, 冷温度槽, 地面风场辐合线, 湿区

Abstract:  Based on the NCEP reanalysis data, the mesoscale weather systems of a short-time rainstorm process occurred on May 27, 2008 at Laohekou of Hubei province were analyzed. The results show the movement of mesoscale weather systems of a short time rainstorm such as dry line, cold trough at 500 hPa, convergence zone of rear of cold shear line, wet area at middle and low levels and convergence line of ground wind field and so on are closely related with the occurrence and development of heavy rain. Dry air invades the wet area from north to south and from upper to lower, which is of typical features of rainstorm caused by dry invasion in Hubei province. Dry invasion makes dry-cold air and warm-wet air rising jointly, and it causes the positive vorticity at the convergence area of rear of cold shear line developing upward along the front area of θse, which enhances convective ascending motion in coordination with ground wind field convergence. Cold trough at 500 hPa and dry intrusion result in convective instability, and the convergence of cold-warm advection, dry-wet advection at the rear of cold shear line forms the unstable region at the horizontal direction. The unstable region is disturbed by dew point front, so convective weather is triggered. The sustainability of deep-wet area at middle and low levels and water vapor convergence provide the water vapor source for this process.

Key words: Mesoscale rainstorm, Dry intrusion, Convergence zone of rear of cold shear line, Cold trough, Convergence line of ground wind field, Wet zone