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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Extreme precipitation events in the Middle East: Dynamics of the Active Red Sea Trough
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Extreme precipitation events in the Middle East: Dynamics of the Active Red Sea Trough

机译:中东的极端降水事件:活跃的红海槽动力学

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The Active Red Sea Trough (ARST) is an infrequent weather phenomenon that is associated with extreme precipitation, flash floods, and severe societal impacts in the Middle East (ME). Using reanalysis (ERA-Interim) and observational precipitation (Aphrodite and stations) data, we investigate its underlying dynamics, geographical extent, and seasonality. Twelve ARST events affecting the Levant have the same dynamical characteristics as those associated with a major flood in Jeddah (Saudi Arabia) on 25 November 2009. Hence, the Jeddah flooding was caused by an ARST, which implies that ARSTs can affect a much larger part of the ME than previously assumed. We present an ARST concept involving six dynamical factors: (1) a low-level trough; the Red Sea Trough (RST), (2) an anticyclone over the Arabian Peninsula; the Arabian Anticyclone (AA), (3) a transient midlatitude upper trough, (4) an intensified subtropical jet stream, (5) moisture transport pathways, and (6) strong ascent resulting from tropospheric instability and the synoptic-scale dynamical forcing. We explain the ARST as the interaction of a persistent stationary wave in the tropical easterlies (i.e., the RST) with a superimposed amplifying Rossby wave, resulting in northward propagating moist air masses over the Red Sea. Our findings emphasize the relevance of the AA, causing moisture transport from the Arabian and Red Seas. The particular topography in the Red Sea region and associated low-level circulation makes the ARST unique among tropical-extratropical interactions. The ARST seasonality is explained by the large-scale circulation and in particular the seasonal cycle of the semipermanent quasi-stationary RST and AA. Key Points Concept of Active Red Sea Trough based on synoptic dynamics Jeddah flooding of 25 November 2009 associated with Active Red Sea Trough Role of Arabian Anticyclone and moisture transport in Active Red Sea Trough
机译:活跃的红海槽(ARST)是一种罕见的天气现象,与极端降水,山洪和中东(ME)的严重社会影响有关。使用重新分析(ERA中期)和观测降水(阿芙罗狄蒂和气象站)数据,我们调查了其潜在的动态,地理范围和季节性。十二个影响黎凡特的ARST事件具有与2009年11月25日吉达(沙特阿拉伯)特大洪水相关的动力学特征。因此,吉达洪水是由ARST引起的,这意味着ARST可以影响更大的一部分ME的大小比以前假定的要大。我们提出了一个涉及六个动力学因素的ARST概念:(1)低谷。红海槽(RST),(2)阿拉伯半岛上空的反气旋;阿拉伯反气旋(AA),(3)短暂的中纬度高谷,(4)增强的亚热带急流,(5)湿气传输路径和(6)对流层不稳定和天气尺度的动力强迫导致的强烈上升。我们将ARST解释为热带东风(即RST)中持续的固定波与叠加的Rossby波的叠加作用,从而导致红海向北传播的湿气团的相互作用。我们的发现强调了抗坏血酸的相关性,导致水分从阿拉伯海和红海运输。红海地区的特殊地形和相关的低空环流使ARST在热带与热带之间的相互作用中独树一帜。 ARST的季节性是由半永久性准静态RST和AA的大规模环流,特别是季节性周期解释的。基于天气动态的活跃红海槽关键概念2009年11月25日的吉达洪水与活跃红海槽有关阿拉伯反气旋和湿气在活跃红海槽中的作用

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