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A general circulation model study of the dynamics of the upper ocean circulation of the South China Sea

机译:南海上层海洋环流动力学的一般环流模型研究

摘要

[1] The temporal-spatial structure and the formation mechanisms of the South China Sea (SCS) circulation are studied using the Princeton Ocean Model (POM). The model well reproduces the observed sea surface height (SSH) annual cycle and some current system such as the SCS Western Boundary Current (SCSWBC) system and the Kuroshio Loop Current (KLC). Four sensitivity experiments are carried out to reveal the dynamic mechanisms of the SCS circulation. The results show that most of the seasonal variability of the SCS is controlled predominantly by wind forcing. The Kuroshio affects the mean SSH significantly but contribute little to the variability. The SCSWBC system consists of the SCS Warm Current (SCSWC) and the Vietnam Coastal Current (VCC). In winter the SCSWBC splits into two branches separated at similar to14degrees-18degreesN. The northern branch is the SCSWC flowing northward and the southern branch is the VCC flowing southward. In summer, however, the SCSWBC flows unidirectionally northward from the Karimata Strait to the Taiwan Strait. The temporal variation of the SCSWBC, especially the VCC, is determined by the wind forcing over the interior SCS. Buoyancy forcing can strengthen (weaken) the summer (winter) SCSWBC. The KLC is crucial to the SCS circulation north of 18degreesN. It ultimately determines the appearance of the SCSWC in winter.
机译:[1]利用普林斯顿海洋模型(POM)研究了南中国海(SCS)环流的时空结构及其形成机制。该模型很好地再现了观测到的海面高度(SSH)的年度周期以及一些当前系统,例如SCS西部边界流(SCSWBC)系统和黑潮环流(KLC)。进行了四个敏感性实验以揭示SCS循环的动力学机制。结果表明,SCS的大部分季节性变化主要受风力控制。黑潮会严重影响平均SSH,但对变异性影响很小。 SCSWBC系统由SCS暖流(SCSWC)和越南沿海流(VCC)组成。冬季,SCSWBC分成两个分支,分别以接近北纬14度到18度的方式分开。北部分支是向南流动的SCSWC,南部分支是向南流动的VCC。然而,在夏季,SCSWBC从卡里马塔海峡单向北流至台湾海峡。 SCSWBC(尤其是VCC)的时间变化是由内部SCS上的风力决定的。浮力强迫可以增强(减弱)夏季(冬季)的SCSWBC。 KLC对于南北18度的SCS循环至关重要。它最终决定了SCSWC在冬天的外观。

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