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Recent changes in the summer monsoon circulation and their impact on dynamics and thermodynamics of the Arabian Sea

机译:夏季风季风环流的最新变化及其对阿拉伯海动力学和热力学的影响

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The present study examines changes in the low-level summer monsoon circulation over the Arabian Sea and their impact on the ocean dynamics using reanalysis data. The study confirms intensification and northward migration of low-level jet during 1979 to 2015. Further during thestudy period, an increase in the Arabian Sea upper ocean heat content is found in spite of a decreasing trend in the net surface heat flux, indicating the possible role of ocean dynamics in the upper ocean warming. Increase in the anti-cyclonic wind stress curl associated with the change in the monsoon circulation induces downwelling over the central Arabian Sea, favoring upper ocean warming. The decreasing trend of southward Ekman transport, a mechanism transporting heat from the land-locked north Indian Ocean to southern latitudes, also supports increasing trend of the upper ocean heat content. To reinstate and quantify the role of changing monsoon circulation in increasing the heat content over the Arabian Sea, sensitivity experiment is carried out using ocean general circulation model. In this experiment, themodel is forced by inter-annual momentum forcingwhile rest of the forcing is climatological. Experiment reveals that the changing monsoon circulation increases the upper ocean heat content, effectively by enhancing downwelling processes and reducing southward heat transport, which strongly endorses our hypothesis that changing ocean dynamics associated with low-level monsoon circulation is causing the increasing trend in the heat content ofthe Arabian Sea.
机译:本研究使用重新分析数据检验了阿拉伯海夏季低层季风环流的变化及其对海洋动力学的影响。该研究证实了低空急流在1979年至2015年期间的加剧和向北迁移。在研究期间,尽管净表面热通量呈下降趋势,但阿拉伯海的上层海洋热含量却有所增加,这表明可能海洋动力学在上层海洋变暖中的作用。与季风环流变化相关的反气旋风应力卷曲的增加导致阿拉伯海中部下降,有利于上层海洋变暖。从内陆北部印度洋向南部纬度输送热量的机制,向南埃克曼输运的减少趋势也支持了上层海洋热量含量的增加趋势。为了恢复并定量化季风环流在增加阿拉伯海热量中的作用,使用海洋总环流模型进行了敏感性实验。在该实验中,该模型是由年际动量强迫推动的,而其余的强迫是气候的。实验表明,季风环流的变化通过增强下行流过程和减少向南的热传递而有效地增加了上层海洋热量,这强烈支持我们的假设,即与低水平季风环流相关的海洋动力学变化导致热量含量呈上升趋势。阿拉伯海。

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