首页> 外文期刊>Asia-Pacific journal of atmospheric sciences >Formation and Evolution of Mesoscale Convective Systems that Brought the Heavy Rainfall over Seoul on September 21,2010
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Formation and Evolution of Mesoscale Convective Systems that Brought the Heavy Rainfall over Seoul on September 21,2010

机译:中尺度对流系统的形成和演化,于2010年9月21日在首尔带来了大雨

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摘要

An investigation has been carried out using observational data and a numerical model to explain the formation and development of heavy precipitation systems on September 21, 2010. These systems were responsible for heavy rainfall over the middle Korean peninsula, with a maximum 24-h rainfall amount greater than 290 mm in the Seoul metropolitan area. Both observational analysis and a numerical simulation indicate that an important starting condition for this heavy rainfall event is the presence of a pressure trough over the Shandong peninsula and the Yellow Sea. Convective cells formed in the early morning over this trough area, grew into larger systems as they moved eastward, and induced the formation of a meso low over the Yellow Sea around 0000 UTC on September 21, 2010. A stationary front with significant vertical circulation developed in response to the deformation of flow associated with the meso low. In the meantime, multicell-type convective systems continuously developed and moved along the front. These storms developed further and produced heavy rainfall over the middle Korean peninsula, which includes the Seoul metropolitan area. According to observations, the band structure appeared to change after 0700 UTC as a narrow convection band developed over the sea, upstream of the existing band of multicell storms. Numerical simulation showed a similar transition. However, it failed to reproduce the stationary behavior of the observed band.
机译:已使用观测数据和数值模型进行了调查,以解释2010年9月21日强降水系统的形成和发展。这些系统是造成朝鲜半岛中部最大降雨的地方,最大降雨量为24小时在首尔市区大于290毫米。观测分析和数值模拟都表明,这次强降雨事件的重要开始​​条件是山东半岛和黄海上存在压力槽。对流单元在该槽区的清晨形成,并随着它们向东移动而发​​展成更大的系统,并于2010年9月21日在黄海0000 UTC附近诱发了中观低层的形成。形成了具有明显垂直循环的静止锋面响应与中低位相关的流动变形。同时,多单元式对流系统不断发展并沿着前部移动。这些风暴进一步发展,并在包括首尔市区在内的朝鲜半岛中部产生大量降雨。根据观察,在0700 UTC之后,由于在现有多小区风暴带的上游海上形成了一条狭窄的对流带,因此带结构似乎发生了变化。数值模拟显示了类似的过渡。但是,它无法再现观察到的波段的平稳行为。

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