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首页> 外文期刊>Journal of Physical Oceanography >Modulation of the Agulhas Current Retroflection and Leakage by Oceanic Current Interaction with the Atmosphere in Coupled Simulations
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Modulation of the Agulhas Current Retroflection and Leakage by Oceanic Current Interaction with the Atmosphere in Coupled Simulations

机译:耦合模拟中洋流与大气相互作用对Agulhas电流逆流和泄漏的调制

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摘要

Coupled ocean-atmosphere simulations are carried out for the Mozambique Channel, the Agulhas Current system, and the Benguela upwelling system to assess the ocean surface current feedback to the atmosphere and its impact on the Agulhas Current (AC) retroflection and leakage. Consistent with previous studies, the authors show that the current feedback slows down the oceanic mean circulation and acts as an oceanic eddy killer by modulating the energy transfer between the atmosphere and the ocean, reducing by 25% the mesoscale energy and inducing a pathway of energy transfer from the ocean to the atmosphere. The current feedback, by dampening the eddy kinetic energy (EKE), shifts westward the distribution of the AC retroflection location, reducing the presence of eastern retroflections in the simulations and improving the realism of the AC simulation. By modulating the EKE, the AC retroflection and the Good Hope jet intensity, the current feedback allows a larger AC leakage (by 21%), altering the water masses of the Benguela system. Additionally, the eddy shedding is shifted northward and the Agulhas rings propagate less far north in the Atlantic. The current-wind coupling coefficient s(w) is not spatially constant: a deeper marine boundary layer induces a weaker s(w). Finally the results indicate that the submesoscale currents may also be weakened by the current feedback.
机译:对莫桑比克海峡,Agulhas洋流系统和Benguela上升流系统进行了耦合的海洋-大气模拟,以评估海面流向大气的反馈及其对Agulhas洋流(AC)逆向和渗漏的影响。与先前的研究一致,作者表明,当前的反馈通过调节大气与海洋之间的能量传递,使中尺度能量减少25%并诱导能量路径,减慢了海洋平均循环并充当了海洋涡旋杀手。从海洋转移到大气。通过抑制涡流动能(EKE),电流反馈使AC反折位置的分布向西移动,减少了模拟中东部反折的出现,并改善了AC模拟的真实性。通过调节EKE,交流反作用力和好望角射流强度,电流反馈允许更大的交流泄漏(减少21%),从而改变了本格拉系统的水量。此外,涡流向北偏移,而阿古拉斯环则在大西洋向北扩散得不那么远。风-风耦合系数s(w)在空间上不是恒定的:更深的海洋边界层会导致s(w)变弱。最后的结果表明,亚中尺度电流也可能被电流反馈所削弱。

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  • 来源
    《Journal of Physical Oceanography》 |2017年第8期|2077-2100|共24页
  • 作者单位

    Univ Calif Los Angeles, Dept Atmospher & Ocean Sci, Los Angeles, CA 90095 USA;

    Univ Calif Los Angeles, Dept Atmospher & Ocean Sci, Los Angeles, CA 90095 USA;

    Univ Brest, Lab Oceanogr Phys & Spatiale, CNRS, IRD,Ifremer,IUEM, Brest, France;

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