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Simulation of a Flash Flooding Storm at the Steep Edge of the Himalayas

机译:喜马拉雅山陡峭边缘的山洪暴发模拟

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A flash flood and landslide in the Leh region of the Indus Valley in the Indian state of Jammu and Kashmir on 5-6 August 2010 resulted in hundreds of deaths and great property damage. Observations have led to the hypothesis that the storm, which formed over the Tibetan Plateau, was steered over the steep edge of the plateau by 500-hPa winds and then energized by the ingestion of lower-level moist air, which was approaching from the Arabian Sea and Bay of Bengal and rose up the Himalayan barrier. A coupled land surface and atmosphericmodel simulation validates this hypothesized storm scenario, with themodel storm taking the formof a travelingmesoscale squall line with a leading convective line, trailing stratiform region, and midlevel inflow jet. In this region, the development of a mesoscale storm over high terrain is highly unusual, especially one in the form of a propagating squall line system. This unusual storm occurrence and behavior could serve as a warning sign in flash flood prediction. The coupled atmosphere and land surface model showed that the excessive runoff leading to the flood and landslide were favored by the occurrence of this unusual meteorological event coinciding temporally and spatially with favorable hydrologic conditions. Additionally, the model simulations showed that previous rainstorms had moistened the soil during the entire season and especially over the few days leading up to the Leh flood, so the normally arid mountainsides were likely not able to rapidly absorb the additional rainfall of the sudden 5 August squall line.
机译:2010年8月5日至6日,印度查mu和克什米尔邦印度河谷Leh地区发生了山洪暴发和山体滑坡,造成数百人死亡和重大财产损失。观测结果得出这样的假设:在青藏高原上形成的风暴是由500-hPa的风引导到高原的陡峭边缘,然后被来自阿拉伯的接近的低层潮湿空气吸收而激发的。孟加拉海和海湾上升了喜马拉雅屏障。地表和大气模型的耦合仿真验证了这种假设的风暴情景,该模型风暴采取具有前向对流线,尾随层状区域和中层入流射流的行进中尺度线的形式。在该地区,高海拔地区发生中尺度风暴非常罕见,尤其是以one行传播系统形式出现的风暴。这种异常的暴风雨发生和行为可以作为山洪预报中的警告信号。大气和地表耦合模型表明,这种异常的气象事件的发生在时间和空间上都与有利的水文条件相吻合,这有利于导致洪水和滑坡的过度径流。此外,模型模拟表明,以前的暴雨在整个季节,特别是在Leh洪水之前的几天内,都使土壤变湿,因此,通常干旱的山坡可能无法迅速吸收8月5日突如其来的额外降雨线。

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