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Effects of tropical cyclones on large-scale circulation and ocean heat transport in the South China Sea

机译:热带气旋对南海大规模环流和海洋热传输的影响

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摘要

In this study, we investigate the influence of tropical cyclones (TCs) on large-scale circulation and ocean heat transport in the South China Sea (SCS) by using an ocean general circulation model at a 1/8° resolution during 2000-2008. The model uses a data assimilation system to assimilate observations in order to improve the representation of SCS circulation. The results reveal an unexpected deep SCS circulation anomaly induced by TCs, which suggests that effects of TC can penetrate deeper into the ocean. This deep effect may result from the near inertial oscillations excited by TCs. The inertial oscillations can propagate downward to the oceanic interior. The analyses confirm that TCs have two effects on ocean heat transport of the SCS. Firstly, the wind stress curl induced by TCs affects the structure of SCS circulation, and then changes heat transport. Secondly, TCs pump surface heat downward to the thermocline, increasing the heat injection from the atmosphere to the ocean. Two effects together amplify the outflow of the surface heat southward away the SCS through the Mindoro and Karimata Straits. The TC-induced heat transports through the Mindoro, Balabac and Karimata Straits account for 20 % of the total heat transport through three straits. An implication of this study is that ocean models need to simulate the TC effect on heat transport in order to correctly evaluate the role of the SCS through flow in regulating upper ocean circulation and climate in the Indonesian maritime continent and its adjacent regions.
机译:在这项研究中,我们通过使用2000-2008年期间分辨率为1/8°的海洋总环流模型研究热带气旋(TCs)对南中国海(SCS)大规模环流和海洋热传输的影响。该模型使用数据同化系统来同化观测值,以改善SCS循环的表示形式。结果表明,TCs引起了意想不到的深海CSS循环异常,这表明TC的影响可以更深地渗透到海洋中。这种深层影响可能是由TC激发的近惯性振荡引起的。惯性振荡可以向下传播到海洋内部。分析证实,TCs对SCS的海洋热传输有两个影响。首先,由TCs引起的风应力卷曲影响SCS循环的结构,然后改变热传递。其次,TC将地表热量向下泵送到温跃层,从而增加了从大气到海洋的热量注入。两种效应共同放大了地表热量通过Mindoro和Karimata海峡向南离开南海的向外流出的热量。 TC引起的通过Mindoro,Balbac和Karimata海峡的热传输占通过三个海峡的总热传输的20%。该研究的含义是海洋模型需要模拟TC对热传输的影响,以便正确评估SCS通过流量在调节印度尼西亚海洋大陆及其邻近地区的上层海洋环流和气候中的作用。

著录项

  • 来源
    《Climate dynamics》 |2014年第12期|3351-3366|共16页
  • 作者单位

    Cooperative Institute for Marine and Atmospheric Studies, University of Miami, Miami, FL, USA,NOAA/Atlantic Oceanographic and Meteorological Laboratory, Miami, FL, USA,Key Laboratory of Marine Environmental Information Technology, SOA, National Marine Data and Information Service, 93 Liuwei Road, Hedong District, Tianjin 300171, China;

    NOAA/Atlantic Oceanographic and Meteorological Laboratory, Miami, FL, USA;

    Key Laboratory of Marine Environmental Information Technology, SOA, National Marine Data and Information Service, 93 Liuwei Road, Hedong District, Tianjin 300171, China;

    Key Laboratory of Marine Environmental Information Technology, SOA, National Marine Data and Information Service, 93 Liuwei Road, Hedong District, Tianjin 300171, China;

    Key Laboratory of Marine Environmental Information Technology, SOA, National Marine Data and Information Service, 93 Liuwei Road, Hedong District, Tianjin 300171, China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    South China Sea circulation; Tropical cyclone; Heat transport; Air-sea interaction;

    机译:南海环流;热带气旋;热传输;海海互动;

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