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首页> 外文期刊>Journal of Geophysical Research, C. Oceans: JGR >A numerical modeling study of the East Australian Current encircling and overwashing a warm-core eddy
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A numerical modeling study of the East Australian Current encircling and overwashing a warm-core eddy

机译:东澳大利亚洋流环绕和冲刷暖心涡的数值模拟研究

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摘要

[1] Warm-core eddies (WCEs) often form in the meanders of Western Boundary Currents (WBCs). WCEs are frequently overwashed with less dense waters sourced from the WBC. We use the Regional Ocean Modelling System to investigate the ocean state during the overwashing of one such WCE in October 2008 in the East Australian Current (EAC). Comparisons of model outputs with satellite sea surface temperature and vertical profiles show that the model provides a realistic simulation of the eddy during the period when the EAC encircled and then overwashed the eddy. During the encircling stage, an eddy with closed circulation persisted at depth. In the surface EAC water entered from the north, encircled the eddy and exited to the east. The overwashing stage was initiated by the expulsion of cyclonic vorticity. For the following 8 days after the expulsion, waters from the EAC washed over the top of the eddy, transferring heat and anticyclonic vorticity radially-inward. After approximately one rotation period of overwashing, the eddy separated. The overwashing creates a two-layer system that forms a subsurface maximum velocity at the interface of the two layers. Analysis of water mass properties, Eulerian tracer dynamics, and Lagrangian particle tracks show that the original eddy sinks 10-50 m during the overwashing period. Overwashing has been observed in many WBCs and occurs in most WCEs in the western Tasman Sea.
机译:[1]暖芯涡(WCE)通常在西方边界流(WBC)的曲折中形成。 WCE经常被来自WBC的密度较小的水过度冲洗。在2008年10月的东澳大利亚洋流(EAC)中,一个这样的WCE被过度冲洗时,我们使用区域海洋建模系统来调查海洋状况。将模型输出与卫星海面温度和垂直剖面进行比较,结果表明,该模型在EAC环绕并随后过度冲洗涡流期间提供了逼真的涡流模拟。在环绕阶段,封闭循环的漩涡在深处持续存在。在EAC地表中,水从北部进入,环绕涡流,然后向东流出。过度清洗阶段是由驱除旋风涡旋开始的。在驱逐后的接下来的8天中,EAC的水在涡流顶部冲洗,将热量和反气旋涡流径向向内传递。经过大约一个旋转周期的过度清洗后,涡流分离了。过度冲洗会形成一个两层系统,该系统在两层界面处形成地下最大速度。对水团性质,欧拉示踪剂动力学和拉格朗日粒子径迹的分析表明,原始涡流在过度冲洗期间下沉10-50 m。在塔斯曼海西部的许多白细胞中都观察到过冲现象,并且在大多数白细胞中都发生过冲现象。

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