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Mesoscale processes for super heavy rainfall of Typhoon Morakot (2009) over Southern Taiwan

机译:台湾南部台风莫拉科特(2009)超重降雨的Mescle流程

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Within 100 h, a record-breaking rainfall, 2855 mm, was brought to Taiwan by typhoon Morakot in August 2009 resulting in devastating landslides and casualties. Analyses and simulations show that under favorable large-scale situations, this unprecedented precipitation was caused first by the convergence of the southerly component of the pre-existing strong southwesterly monsoonal flow and the northerly component of the typhoon circulation. Then the westerly component of southwesterly flow pushed the highly moist air (mean specific humidity 16 g/kg between 950 and 700 hPa from NCEP GFS data set) eastward against the Central Mountain Range, and forced it to lift in the preferred area. From the fine-scale numerical simulation, not only did the convergence itself provide the source of the heavy rainfall when it interacted with the topography, but also convective cells existed within the typhoon's main rainband. The convective cells were in the form of small rainbands perpendicular to the main one, and propagated as wave trains downwind. As the main rainband moved northward and reached the southern CMR, convective cells inside the narrow convergence zone to the south and those to the north as wave trains, both rained heavily as they were lifted by the west-facing mountain slopes. Those mesoscale processes were responsible for the unprecedented heavy rainfall total that accompanied this typhoon.
机译:在2009年8月,在台湾历史新高地降雨量,2855毫米,导致毁灭性的山体滑坡和伤亡人数。分析和仿真表明,在有利的大规模情况下,这种前所未有的降水是首先引起了预先存在的强烈的强烈的季风季风流量和台风循环的北部部件的南部成分的融合。然后,向西流的西风部件将高度潮湿的空气(平均特定湿度> 16mg / kg从NCEP GFS数据集之间的高潮湿空气推动(平均特定的湿度> 16g / kg)反对中央山脉,并迫使它在优选的区域提升。从微尺度的数值模拟中,不仅收敛本身提供了与地形相互作用时的重度降雨的来源,而且在台风的主雨带内也存在对流细胞。对流细胞以垂直于主要的小雨带的形式,随着波动训练顺风而传播。由于主雨带向北移动并达到了南部CMR,在南部的狭窄收敛区内的对流细胞和北方的波动列车,因为它们面向西部的山坡被抬起,既沉重。那些迈斯普尔流程负责伴随着这个台风的前所未有的大雨。

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