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Dynamics of an Equatorial River Plume: Theory and Numerical Experiments Applied to the Congo Plume Case

机译:赤道河羽流的动力学:理论和数值实验在刚果羽流中的应用

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摘要

The Congo River has the second largest rate of flow in the world and is mainly responsible for the broad tongue of low-salinity water that is observed in the Gulf of Guinea. Despite their importance, near-equatorial river plumes have not been studied as thoroughly as midlatitude plumes and their dynamics remain unclear. Using both theory and idealized numerical experiments that reproduce the major characteristics of the region, the authors have investigated the dynamics of the Congo River plume and examine its sensitivity to different forcing mechanisms. It is found that near-equatorial plumes are more likely to be surface trapped than midlatitude plumes, and the importance of the β effect in describing the strong offshore extent of the low-salinity tongue during most of the year is demonstrated. It is shown that the buoyant plume constrained by the geomorphology is subject to the β pulling of nonlinear structures and wavelike equatorial dynamics. The wind is found to strengthen the intrinsic buoyancy-driven dynamics and impede the development of the coastal southward current, in coherence with observations.
机译:刚果河的水流量居世界第二,主要归因于几内亚湾的低盐度水。尽管它们很重要,但尚未像中纬度羽流那样对赤道附近的河羽进行深入研究,其动态性仍不清楚。利用理论和理想的数值实验,再现了该地区的主要特征,作者研究了刚果河羽流的动力学,并研究了其对不同强迫机制的敏感性。已发现,与中纬度烟羽相比,近赤道烟羽更容易被表面困住,并且证明了β效应在描述一年中大部分时间低盐度舌头的强近海程度方面的重要性。结果表明,受地貌约束的浮羽受到非线性结构的β拉动和波状赤道动力学的影响。与观测结果相一致,发现风增强了内在的浮力驱动动力,并阻碍了沿海南流的发展。

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  • 来源
    《Journal of Physical Oceanography 》 |2014年第3期| 980-994| 共15页
  • 作者单位

    Laboratoire de Physique des Oceans, UMR6523, UBO/IFREMER/CNRS/IRD, Brest, France Laboratoire de Physique des Oceans, 6 Avenue Victor Le Gorgeu, 29200 Brest, France;

    Actimar, Brest, France;

    Laboratoire de Physique des Oceans, UMR6523, UBO/IFREMER/CNRS/IRD, Brest, France;

    Laboratoire de Physique des Oceans, UMR6523, UBO/IFREMER/CNRS/IRD, Brest, France;

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