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江淮梅雨锋强暴雨低涡系统发生发展的数值研究
引用本文:马旭林,刘还珠,薛纪善,王盘兴.江淮梅雨锋强暴雨低涡系统发生发展的数值研究[J].南京气象学院学报,2004,27(3):347-355.
作者姓名:马旭林  刘还珠  薛纪善  王盘兴
作者单位:1. 南京气象学院,大气科学系,江苏,南京,210044
2. 国家气象中心,北京,100081
3. 中国气象科学研究院,北京,100081
基金项目:国家自然科学基金重点项目(40233036),国家"十五"科技攻关计划项目(2001BA607B)
摘    要:利用美国新一代中尺度WRF(Weather Research and Forecast)模式,采用高分辨率的细网格距和适当的物理方案,对2003年7月4—5日的江淮梅雨锋强暴雨中尺度系统进行了数值模拟研究。模拟结果很好地描述了本次暴雨及其中尺度系统发生、发展的时空演变过程,并较理想地预报出了该次降水的落区、强度及降水中心的位置。着重分析了低空急流、倾斜不稳定发展及中尺度低涡系统和对流层高层小扰动,并进一步指出了其形成、发展的物理机制。从数值模拟分析结果看,倾斜垂直涡度的发展是造成低空涡旋生成和发展的动力机制。充足的湿有效能量和凝结潜热的释放为本次大降水过程提供了物质条件。

关 键 词:WRF模式  数值模拟  低涡系统  江淮梅雨  湿有效能量
文章编号:1000-2022(2004)03-0347-09

Numerical Study on the Genesis and Development of the Low Vortex-rain Gush System on a Jianghuai Meiyu Front
MA Xu-lin,LIU Huan-zhu,XUE Ji-shan,WANG Pan-xing.Numerical Study on the Genesis and Development of the Low Vortex-rain Gush System on a Jianghuai Meiyu Front[J].Journal of Nanjing Institute of Meteorology,2004,27(3):347-355.
Authors:MA Xu-lin  LIU Huan-zhu  XUE Ji-shan  WANG Pan-xing
Institution:MA Xu-lin~1,LIU Huan-zhu~2,XUE Ji-shan~3,WANG Pan-xing~1
Abstract:Using the new generation mesoscale model of Weather Research and Forecast (WRF),with the high resolution grid points and the suitable physical schemes,the numerical simulation of the rain gush of the Jianghuai Meiyu front during 4th-5th July 2003 is carried out.Simulated results show that the rain gush and the genesis and development of the mesoscale system are well described,and the distribution,intensity and center location of the precipitation are successfully forecasted.The low-level jet,slantwise instability development,and the mesoscale low vortex system and the perturbation in the upper troposphere are analyzed,and it is found from the simulated results that the development of tilted vertical vorticity is the dynamical mechanism for the genesis and development of the low-level vortex.The sufficient moist available potential energy and latent heat release offer the material condition for this heavy rain event.
Keywords:WRF model  numerical simulation  low vortex system  Jianghuai Meiyu  moist available energy
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