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董海萍, 赵思雄, 曾庆存. 低纬高原地区一次强降水过程的中尺度雨团数值模拟研究[J]. 大气科学, 2008, 32(5): 1159-1173. DOI: 10.3878/j.issn.1006-9895.2008.05.14
引用本文: 董海萍, 赵思雄, 曾庆存. 低纬高原地区一次强降水过程的中尺度雨团数值模拟研究[J]. 大气科学, 2008, 32(5): 1159-1173. DOI: 10.3878/j.issn.1006-9895.2008.05.14
DONG Haiping, ZHAO Sixiong, ZENG Qingcun. A Numerical Simulation Study of Mesoscale Rainy-Cluster Producing Heavy Rainfall in Lower Latitude Plateau during Early Summer[J]. Chinese Journal of Atmospheric Sciences, 2008, 32(5): 1159-1173. DOI: 10.3878/j.issn.1006-9895.2008.05.14
Citation: DONG Haiping, ZHAO Sixiong, ZENG Qingcun. A Numerical Simulation Study of Mesoscale Rainy-Cluster Producing Heavy Rainfall in Lower Latitude Plateau during Early Summer[J]. Chinese Journal of Atmospheric Sciences, 2008, 32(5): 1159-1173. DOI: 10.3878/j.issn.1006-9895.2008.05.14

低纬高原地区一次强降水过程的中尺度雨团数值模拟研究

A Numerical Simulation Study of Mesoscale Rainy-Cluster Producing Heavy Rainfall in Lower Latitude Plateau during Early Summer

  • 摘要: 对2001年5月31日~6月1日发生于低纬高原地区的一次强降水过程进行了数值模拟,在确定大尺度环流形势场、降水过程及雨团模拟正确的基础上,对引发强降水的主要雨团A,利用模式输出的高分辨模拟结果进行了深入的再诊断分析研究。结果表明:虽然雨团A所在区域未发现有明显的气旋系统(或扰动),但在其发展强盛期,仍具有明显的中尺度动力和热力结构特征;中低层正涡度中心先于降水系统的发展,而垂直上升运动是低层气流辐合抬升的结果;雨团A的形成与近地层气流辐合线密切相关,并与云南特殊的地形地貌密切关联;南风分量对强雨团A的产生和发展具有重要的作用;同时,受其大尺度环流场的影响,雨团A的发展演变与印缅槽的形成和发展密切相关。对中尺度雨团A的水汽来源分析表明:在中尺度系统发展成熟前有较强的向雨团A区域的水汽输送,并且水汽主要来源其西南侧,即孟加拉湾。

     

    Abstract: Based on the successful diagnostic study, numerical simulation was conducted for better understand of heavy rainfall in lower latitude plateau from 0000 UTC 31 May to 0000 UTC 1 June 2001. Due to successful reproducing of large-scale circulation, precipitation and rainy-cluster area, there existed the probability to study one of the rainy-clusters causing heavy rainfall by using the high resolution output data from the numerical model. It shows that the obvious mesoscale dynamical and thermodynamic structure inside the rainy-cluster defined as rainy-cluster A can be found during its development even though there was no obvious closed vortex in the wind field. The positive vortex maximum occurred earlier than rainy-cluster A, and the intensifying of ascending motion resulted from the horizontal convergence in the lower troposphere. The formation of rainy-cluster A was related not only to mesoscale convergence lines near the ground, but also to the special topography in the lower latitude plateau, especially, in Yunnan Province. The southern wind played an important role in the formation and the development of rainy-cluster A. And the appearance and evolution of rainy-cluster A was also related closely to the Indian-Myanmar trough at 500 hPa. The analysis of water vapor shows, there existed the pronounced horizontal and vertical water vapor convergence before the mature stage of rainy-cluster A, and the water vapor came mainly from the Bay of Bengal.

     

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