首页> 外文期刊>Bulletin of the American Meteorological Society >HYMEX-SOPI The Field Campaign Dedicated to Heavy Precipitation and Flash Flooding in the Northwestern Mediterranean
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HYMEX-SOPI The Field Campaign Dedicated to Heavy Precipitation and Flash Flooding in the Northwestern Mediterranean

机译:HYMEX-SOPI专为地中海西北部的强降水和山洪而开展的野战

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The Mediterranean region is frequently affected by heavy precipitation events associated with flash floods, landslides, and mudslides that cause hundreds of millions of euros in damages per year and, often, casualties. A major field campaign was devoted to heavy precipitation and flash floods from 5 September to 6 November 2012 within the framework of the 10-yr international Hydrological Cycle in the Mediterranean Experiment (HyMeX) dedicated to the hydrological cycle and related high-impact events. The 2-month field campaign took place over the northwestern Mediterranean Sea and its surrounding coastal regions in France, Italy, and Spain. The observation strategy of the field experiment was devised to improve. knowledge of the following key components leading to heavy precipitation and flash flooding in the region: 1) the marine atmospheric flows that transport moist and conditionally unstable air toward the coasts, 2) the Mediterranean Sea acting as a moisture and energy source, 3) the dynamics and microphysics of the convective systems producing heavy precipitation, and 4) the hydrological processes during flash floods. This article provides the rationale for developing this first HyMeX field experiment and an overview of its design and execution. Highlights of some intensive observation periods illustrate the potential of the unique datasets collected for process understanding, model improvement, and data assimilation
机译:地中海地区经常受到与暴洪,山体滑坡和泥石流相关的强降水事件的影响,每年造成数亿欧元的损失,并经常造成人员伤亡。在为期10年的地中海实验国际水文循环(HyMeX)框架内,针对水文循环和相关的高影响力事件,在2012年9月5日至11月6日进行了一场大型野外运动,以应对暴雨和山洪。为期两个月的野战在地中海西北部及其周围的法国,意大利和西班牙的沿海地区进行。野外实验的观察策略被设计为改进。了解导致该地区大量降雨和山洪的以下关键要素:1)将大气和有条件的不稳定空气输送到海岸的海洋大气流动; 2)作为湿气和能源的地中海; 3)产生强降水的对流系统的动力学和微观物理学,以及4)洪水期间的水文过程。本文提供了开发第一个HyMeX现场实验的原理,并概述了其设计和执行。一些密集观察期的重点说明了收集到的独特数据集对于过程理解,模型改进和数据同化的潜力

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