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首页> 外文期刊>Journal of Geophysical Research, C. Oceans: JGR >Basin-scale wind-forced dynamics of the seasonal southern South China Sea gyre
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Basin-scale wind-forced dynamics of the seasonal southern South China Sea gyre

机译:南海季风回旋区的盆地尺度风动力

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摘要

Using observed wind-forcing, the seasonal development and disappearance of the near-surface anticyclonic gyre in the southern South China Sea is modeled, along with associated dynamic features. Forced by monsoon winds, the ocean circulation in the South China Sea alternates between a single cyclonic gyre during the winter northeast monsoon and a double gyre, cyclonic/anticyclonic in the northern/southern South China Sea, during the summer southwest monsoon, reversing the western boundary current along Vietnam with each shift of the monsoon regime. During the summer southwest monsoon, the poleward western boundary current converges with the equatorward western boundary current of the northern gyre, turning offshore to create an eastward jet and flanking dipole recirculation near 13°N. The development and timing of the eastward jet and recirculations are consistent with large-scale basin dynamics. The subsequent transition to the winter northeast monsoon regime destroys the recirculation cells and eastward jet. Employing high-resolution 1.5-layer and 2.0-layer numerical models, we demonstrate the applicability of large-scale dynamics to the deeper central basin of the South China Sea, specifically showing that the gyre-scale circulation governs the development of the eastward jet and dipole recirculations. The destruction of the recirculations by the monsoon winds each autumn is also modeled. This effort highlights the dominance of monsoon wind-forcing in the South China Sea's basin-scale dynamics.
机译:利用观测到的风力,模拟了南海南部近地表反气旋回旋的季节发展和消失以及相关的动力学特征。在季风风的作用下,南海的海洋环流在冬季东北季风期间交替为单个旋风回旋,而在夏季西南季风期间在南/北南部为双重旋回,旋风/反气旋,逆转西随着季风政权的每一次转移,越南的边界水流都会增加。在夏季西南季风期间,极地西边界流与北涡旋的赤道西边界流汇合,转向离岸以产生东向喷流,并在13°N附近形成侧翼偶极子再循环。东风急流和再循环的发展和时机与大规模盆地动力学一致。随后向冬季东北季风政权过渡,破坏了再循环单元和向东的喷射流。利用高分辨率的1.5层和2.0层数值模型,我们证明了大规模动力学对南海中部深海盆地的适用性,特别表明了旋回规模的环流控制着东风急流的发展。偶极子再循环。还模拟了每年秋天的季风对再循环的破坏。这项工作凸显了季风强迫在南中国海盆地规模动力学中的主导地位。

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