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The Precipitation Hotspots of Afternoon Thunderstorms over the Taipei Basin: Idealized Numerical Simulations

机译:台北盆地下午雷暴的降雨热点:理想化数值模拟

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?In this study, the mechanism for precipitation hotspots (PHs) of locally developed afternoon thunderstorms in the Taipei Basin is investigated using a three-dimensional Vector Vorticity equation cloud-resolving Model (VVM) with an idealized topography and surface properties. A 500 m horizontal grid resolution is used in all experiments. The results show that the local circulation is a key for PHs at the south of the Taipei Basin. The two valleys guide background southwesterly (SW) flow along with the sea breezes to penetrate into the basin. The urban heat island (UHI) effect enhances the sea breeze convergence at the south of the basin and produces strong convection there. The interactions between cold pools generated by the convection and the sea breezes produce northward propagating new convective cells. Besides, the background wind direction is important in determining the location of sea breeze convergence. If the background wind direction changes from westerly (W) to west-northwesterly (WNW), there might be no precipitation at all in the basin. This study suggests that the idealized experiments also provide a useful framework for studying the impacts of future climate changes on the PHs in the Taipei Basin by applying the pseudo–global warming approach.
机译:在本研究中,使用具有理想地形和表面特性的三维矢量涡度方程云解析模型(VVM),研究了台北盆地局部发展的下午雷暴的降水热点(PHs)的机制。所有实验均使用500 m的水平网格分辨率。结果表明,局部环流是台北盆地南部PH的关键。这两个谷引导背景西南风(SW)与海风一起渗入盆地。城市热岛效应(UHI)增强了盆地南部的海风收敛并在盆地南部产生强对流。对流产生的冷池与海风之间的相互作用产生了向北传播的新对流单元。此外,背景风向对确定海风收敛的位置也很重要。如果背景风向从西风(W)更改为西北风(WNW),则该盆地可能根本没有降水。这项研究表明,理想的实验还提供了一个有用的框架,可以通过使用拟全球变暖方法研究未来气候变化对台北盆地PH的影响。

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