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Dynamics of the Water Circulations in the Southern South China Sea and Its Seasonal Transports

机译:南海南部水循环动力学及其季节性输送

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摘要

A three-dimensional Regional Ocean Modeling System is used to study the seasonal water circulations and transports of the Southern South China Sea. The simulated seasonal water circulations and estimated transports show consistency with observations, e.g., satellite altimeter data set and re-analysis data of the Simple Ocean Data Assimilation. It is found that the seasonal water circulations are mainly driven by the monsoonal wind stress and influenced by the water outflow/inflow and associated currents of the entire South China Sea. The intrusion of the strong current along the East Coast of Peninsular Malaysia and the eddies at different depths in all seasons are due to the conservation of the potential vorticity as the depth increases. Results show that the water circulation patterns in the northern part of the East Coast of Peninsular Malaysia are generally dominated by the geostrophic currents while those in the southern areas are due solely to the wind stress because of negligible Coriolis force there. This study clearly shows that individual surface freshwater flux (evaporation minus precipitation) controls the sea salinity balance in the Southern South China Sea thermohaline circulations. Analysis of climatological data from a high resolution Regional Ocean Modeling System reveals that the complex bathymetry is important not only for water exchange through the Southern South China Sea but also in regulating various transports across the main passages in the Southern South China Sea, namely the Sunda Shelf and the Strait of Malacca. Apart from the above, in comparision with the dynamics of the Sunda Shelf, the Strait of Malacca reflects an equally significant role in the annual transports into the Andaman Sea.
机译:使用三维区域海洋建模系统研究南中国海南部的季节性水循环和运输。模拟的季节性水循环和估计的运输量与观测值(例如卫星高度计数据集和简单海洋数据同化的重新分析数据)保持一致。研究发现,季节性水循环主要由季风风应力驱动,并受整个南海的水流入/流出及相关水流的影响。在整个季节中,沿马来西亚半岛东海岸的强流和涡流的侵入在所有季节都是由于随着深度的增加而保留了潜在的涡度。结果表明,马来西亚半岛东海岸北部的水循环模式通常由地转流控制,而南部地区的水循环模式则完全是由于那里的科里奥利力可忽略不计的风应力引起的。这项研究清楚地表明,单个地表淡水通量(蒸发量减去降水量)控制着南海南部热盐环流中的盐度平衡。对来自高分辨率区域海洋建模系统的气候数据进行的分析表明,复杂的测深法不仅对于通过南海南部的水交换非常重要,而且对于调节跨南海南部主要通道即Sun他河的各种运输也很重要。架子和马六甲海峡。除上述内容外,与da他架的动态比较,马六甲海峡在每年向安达曼海的运输中也起着同样重要的作用。

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