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Resonant Diurnal Oscillations and Mean Alongshore Flows Driven by Sea/Land Breeze Forcing in the Coastal Southern California Bight

机译:南加利福尼亚沿海沿海海陆风推动的共振日振荡和平均近海流量

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摘要

This study presents observations of the cross-sectional structure of resonant response to sea/land breezes (SLBs) off Huntington Beach (HB) in the Southern California Bight (SCB). A resonant response to local diurnal wind stress fluctuations associated with SLB forcing occurs intermittently and produces strong diurnal oscillations of flow and temperature resulting from enhanced work of the diurnal local wind on the sea surface. At nighttime (daytime), a coherent cross-sectional circulation with offshore (onshore) currents in the surface layer (upper 15 m) and onshore (offshore) currents in the intermediate layer around 20 m are generated, with a three-layered vertical structure on the outer shelf. The authors find a net cross-shore eddy heat flux (net cooling of nearshore water) during the period of strong response to SLB, that is, a rectified mean heat flux and steeper isotherms resulting from the diurnal SLB fluctuations. The steepened mean isotherms are also found to be in thermal-wind balance with intensified mean equatorward flow, which thus can also be generated by the resonant SLB dynamics. Similar rectified onshore transport of other quantities is expected, relevant for biogeochemical processes. The distribution of maximum diurnal kinetic energy in time and across the shelf supports the concept that subinertial shears create the sufficient condition for resonant response to SLB forcing.
机译:这项研究提出了对南加州湾(SCB)的亨廷顿海滩(HB)附近海/陆风(SLB)共振响应的横截面结构的观察。与SLB强迫相关的局部昼夜风应力波动的共振响应间歇性发生,并由于海面昼夜局部风的增强功而产生强烈的昼夜流量和温度振荡。在夜间(白天),通过三层垂直结构,在表层(上层15 m)中有离岸(陆上)流和中间层中约20 m处有陆上(离岸)流产生了连贯的横截面循环。在外面的架子上。作者发现,在对SLB的强烈响应期间,存在跨岸涡流的净热通量(近岸水域的净冷却),即,校正后的平均热通量和SLB昼夜波动导致的等温线陡峭。还发现,陡峭的平均等温线与平均赤道向流增强处在热风平衡中,因此也可以通过共振SLB动力学产生。预计其他数量的类似的经过整流的陆上运输也与生物地球化学过程有关。时间和整个货架上最大日动能的分布支持以下概念:惯性剪切为SLB强迫的共振响应创造了足够的条件。

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  • 来源
    《Journal of Physical Oceanography》 |2013年第3期|616-630|共15页
  • 作者

    SungHyun Nam; Uwe Send;

  • 作者单位

    Scripps Institution of Oceanography, 9500 Gilman Dr., La Jolla, CA 92093-0230;

    Scripps Institution of Oceanography, 9500 Gilman Dr., La Jolla, CA 92093-0230;

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