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首页> 外文期刊>Natural hazards and earth system sciences >Discussing the role of tropical and subtropical moisture sources in cold season extreme precipitation events in the Mediterranean region from a climate change perspective
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Discussing the role of tropical and subtropical moisture sources in cold season extreme precipitation events in the Mediterranean region from a climate change perspective

机译:从气候变化角度探讨热带和亚热带水分源在地中海地区寒冷季节极端降水事件中的作用

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This paper presents a review of a large number of research studies performed during the last few decades that focused on the investigation of cold season extreme precipitation events (EPEs) in the Mediterranean region (MR). The publications demonstrate the important role of anomalously intense transports of moist air from the tropical and subtropical Atlantic in the occurrence of EPEs in the MR. EPEs in the MR are directly or indirectly connected to narrow bands with a high concentration of moisture in the lower troposphere, i.e., atmospheric rivers, along which a large amount of moisture is transported from the tropics to midlatitudes. Whereas in a significant fraction of the EPEs in the western MR moisture is transported to the MR from the tropical Atlantic, EPEs in the central, and especially the eastern, MR are more often associated with intense tropical moisture transports over North Africa and the Red Sea. The moist air for the EPEs in the latter part of the MR also mainly originates from the tropical Atlantic and Indian oceans, and in many cases it serves as a temporary moisture reservoir for future development. The paper is supplemented by the results of a test for a possible connection between declining Arctic sea ice and the climatology of intense precipitation in the eastern MR. Based on the results of the evaluation supporting those from the earlier climate change analyses and modeling studies, it is concluded that a further anthropogenic global warming may lead a greater risk of higher rainfall totals and therefore larger winter floods in western and central parts of the MR as a consequence of stronger and more numerous Atlantic atmospheric rivers, possibly accompanied by a decline in the number of EPEs in the eastern part of the MR.
机译:本文介绍了过去几十年中进行的大量研究,这些研究的重点是调查地中海地区(MR)的寒冷季节极端降水事件(EPE)。这些出版物证明了从热带和亚热带大西洋异常大量输送潮湿的空气在MR中发生EPE的重要作用。 MR中的EPE直接或间接连接到低层对流层中水分含量高的窄带,即大气河,大量的水分从热带地区流到中纬度。在西部MR的大部分EPE中,水分是从热带大西洋运到MR的,而在中部(尤其是东部)的EPE则经常与北非和红海上强烈的热带水分运输有关。在MR后期,EPE的潮湿空气也主要来自热带大西洋和印度洋,在许多情况下,它是未来发展的临时水分库。这篇论文还补充了北极海冰下降与东部MR强烈降水的气候学之间可能存在联系的测试结果。根据评估结果支持较早的气候变化分析和模型研究得出的结论,得出的结论是,进一步的人为全球变暖可能会导致更高的总降雨风险,从而导致MR西部和中部地区发生更大的冬季洪水由于大西洋大气河道越来越强,可能导致MR东部地区的EPE数量减少。

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