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A Diagnostic Study of Heavy Rainfall in Karachi Due to Merging of a Mesoscale Low and a Diffused Tropical Depression during South Asian Summer Monsoon

机译:南亚夏季风中尺度低气压与热带低气压合并引起的卡拉奇大雨诊断研究

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This paper presents the results of a diagnostic study of a typical case of very heavy rainfall during the South Asian summer monsoon when a mesoscale low in a desert climate merged with a diffused tropical depression. The former low was located over Pakistan's desert region and the latter depression originated over the Bay of Bengal. Surface and NCEP reanalysis data supported by satellite and radar images were incorporated in the diagnosis. The relationship between the heavy precipitation process and large-scale circulations such as monsoon trough, subtropical high, westerly jet, low level jet and water vapor transport were investigated to further understand the mechanism of this peculiar interaction. It was found that: (1) the mesoscale low developed as a result of cold air advection aloft from northern latitudes and strong convection over the region of humidity convergence on 24 July 2003 over the Indian Rajistan area. (2) On the same day, a low that formed over the Bay of Bengal was transformed into a monsoon depression and moved westward to the mesoscale low which existed over southwest India and the adjoining southeastern parts of Pakistan. (3) Initially, the mesoscale low received moisture supply from both the Bay of Bengal as well as the Arabian Sea, whereas the Bay of Bengal maintained the continuous supply of moisture to the monsoon depression. (4) After the depression crossed central India, the Bay's moisture supply was cut off and the Arabian Sea became the only source of moisture to both the closely located systems. On 27 July, both of the systems merged together and the merger resulted in a heavy downpour in the Karachi metropolitan and in its surroundings. (5) With the intensification as well as the southeastward extension of the subtropical high and the shift of the monsoon trough axis from southwest-west to northeast-east, the monsoon depression moved southwestward. In this situation, there existed a very favourable condition for a merger of the two systems in the presence of cross-latitude influence. (6) A number of convective cloud clusters were developed and organized in the mesoscale low. Probably, interactions existed among the multi-scale systems.
机译:本文介绍了诊断研究的结果,该诊断研究的典型案例是在南亚夏季风期间出现大降雨的典型案例,当时沙漠气候的中尺度低层与热带低气压扩散合并。前者的低谷位于巴基斯坦的沙漠地区,后者的低谷起源于孟加拉湾。诊断中包含了由卫星和雷达图像支持的地表和NCEP重新分析数据。研究了强降水过程与季风槽,副热带高压,西风急流,低空急流和水汽输送等大规模环流之间的关系,以进一步了解这种特殊相互作用的机理。发现:(1)中尺度低点是由于北纬高空冷空气平流和2003年7月24日印度拉吉斯坦地区湿度收敛区域上的强对流而形成的。 (2)同一天,在孟加拉湾上空形成的低谷转变为季风低压,并向西移动到印度西南部和巴基斯坦东南部附近存在的中尺度低点。 (3)最初,中尺度低水位来自孟加拉湾和阿拉伯海的水分供应,而孟加拉湾则保持向季风低压区持续供应水分。 (4)萧条横穿印度中部后,海湾的水分供应被切断,阿拉伯海成为这两个位置紧密的系统的唯一水分来源。 7月27日,这两个系统合并在一起,合并导致卡拉奇都会区及其周围地区暴雨。 (5)随着副热带高压的加剧和向东南延伸,以及季风槽轴由西南向东北移动,季风凹陷向西南方向移动。在这种情况下,存在存在跨纬度影响的两个系统合并的非常有利的条件。 (6)在中尺度低层开发并组织了许多对流云团。可能在多尺度系统之间存在交互。

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