干旱气象 ›› 2012, Vol. 30 ›› Issue (1): 100-106.

• 论文 • 上一篇    下一篇

对甘肃酒泉一次暴雨的数值模拟和诊断分析

张文军1 ,李建2#br#   

  1. 1. 甘肃省瓜州县气象局,甘肃瓜州736100; 2. 甘肃省酒泉市气象局,甘肃酒泉735000
  • 收稿日期:2011-09-05 修回日期:2011-12-15 出版日期:2012-02-29 发布日期:2012-03-30
  • 作者简介: 张文军( 1986 - ) ,男,汉族,甘肃瓜州人,助理工程师,从事地面测报及其他工作. E - mail: z150265@163. com

Numerical Simulation and Diagnostic Analysis of a Heavy Rain Occurred in Jiuquan of Gansu Province

ZHANG Wen jun1,LI Jian2   

  1. 1. Guazhou Meteorological Station of Gansu Province,Guazhou 736100,China;
    2. Jiuquan Meteorological Bureau of Gansu Province,Jiuquan 735000,China
  • Received:2011-09-05 Revised:2011-12-15 Online:2012-02-29 Published:2012-03-30

摘要:

利用NCEP 1° × 1°的6 h 再分析资料和常规观测资料,使用WRF 模式模拟了2011 年6 月15
~ 16 日出现在甘肃酒泉的一次暴雨天气过程。结果表明: WRF 模式能较好地模拟出这次降水的区
域,对这种中尺度天气系统具有良好的预报能力。在这次降水过程中,切变线和冷空气以及与高原低
涡的合理配置加强了强降水区垂直环流的发展; 同时来自孟加拉湾的水汽是暴雨产生的重要原因; 初
始不稳定能量是触发暴雨发生的条件之一; 而高空辐散、低空辐合的流场特征也促进了强降水的产
生, 500 hPa 辐散和600 hPa 正涡度和强降水区域有较好的对应关系; 螺旋度的高低层耦合是触发并
维持低压暴雨的动力机制,垂直螺旋度对暴雨的落区和强度有较好的指示性。

关键词: 暴雨, WRF 模式, 数值模拟, 诊断分析

Abstract:

Based on the NCEP 1° × 1°six hours reanalyzed data and daily observation data,a mesoscale model WRF was used to simulate
a heavy rain process occurred on June 15 - 16,2011 in Jiuquan of Gansu Province. The results show that the model could simulate
the location of the rainfall better,it had a good capacity to predict the mesoscale weather systems. During this rainfall process,the rational
configuring of cold air and wind - shear line as well as Plateau vortex strengthened the development of vertical circulation in the
rainfall region. And the vapour flux from Bay of Bengal provided plenteous mioisture for the rainstorm,and the initial instability energy
triggered the rainstorm. The flow field with convergence in the upper level and divergence in the lower level accelerated the rainfall. In
addition,the coupling of helicity with a negative( positive) value at upper( lower) levels was the dynamical mechanism of the rain
storm,and the vertical helicity had better indication to the rainfall area and intensity

Key words: heavy rainstorm, WRF model, numerical simulation, diagnostic analysis

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