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The Red Sea outflow regulated by the Indian monsoon

机译:印度季风控制的红海流出

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To investigate why the Red Sea water overflows less in summer and more in winter, we have developed a locally high-resolution global OGCM with transposed poles in the Arabian peninsula and India. Based on a series of sensitivity experiments with different sets of idealized atmospheric forcing, the present study shows that the summer cessation of the strait outflow is remotely induced by the monsoonal wind over the Indian Ocean, in particular that over the western Arabian Sea. During the southwest monsoon (May-September), thermocline in the Gulf of Aden shoals as a result of coastal Ekman upwelling induced by the predominantly northeastward wind in the Gulf of Aden and the Arabian Sea. Because this shoaling is maximum during the southwest summer monsoon, the Red Sea water is blocked at the Bab el Mandeb Strait by upwelling of the intermediate water of the Gulf of Aden in late summer. The simulation also shows the three-dimensional evolution of the Red Sea water tongue at the mid-depths in the Gulf of Aden. While the tongue meanders, the discharged Red Sea outflow water (RSOW) (incoming Indian Ocean intermediate water (IOIW)) is always characterized by anticyclonic (cyclonic) vorticity, as suggested from the potential vorticity difference. (c) 2006 Elsevier Ltd. All rights reserved.
机译:为了调查为什么红海的水在夏季少溢出而在冬季多溢出的原因,我们开发了一种局部高分辨率的全球OGCM,在阿拉伯半岛和印度的两极均已转置。基于一系列不同的理想化大气强迫的敏感性实验,本研究表明,夏季海峡停止航行是由印度洋,特别是阿拉伯海西部的季风影响的。在西南季风期间(5月至9月),由于亚丁湾和阿拉伯海的主要东北风引起的沿海埃克曼上升流,亚丁湾的温床跃迁。由于这种浅滩在西南夏季风中最大,因此夏末亚丁湾的中间水上升,红海水在Bab el Mandeb海峡被阻塞。模拟还显示了亚丁湾中深度红海水舌的三维演化。舌头弯曲时,从潜在的涡度差异可以看出,排出的红海流出水(RSOW)(流入印度洋中间水(IOIW))的特征始终是反气旋(气旋)涡。 (c)2006 Elsevier Ltd.保留所有权利。

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