里海风致流的数值模拟

Jalal Mofidi, A. R. E. Hesari
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引用次数: 3

摘要

文章历史:收稿时间:2018年5月14日接收时间:2018年6月13日建立了一个三维原始方程模型来研究里海(CS)的风力流。在球坐标系下,采用正交修正Arakawa c网格,用有限差分法求解了压力-西格玛垂直阵列的方程。模拟结果表明,南里海盆地(SCB)深水上空存在一个从地表向地下延伸的反气旋涡旋,并持续了一年。该模式成功地在中里海盆地东部沿海产生了主要向南的沿海流,导致这些海岸的上升流补偿了地面漂移。结果表明,底部地形对洋流的转向起着关键作用,并在表层Ekman层中产生辐散,而在表层最深的摩擦底Ekman层中辐合平衡。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Numerical Simulation of the Wind-Induced Current in the Caspian Sea
Article History: Received: 14 May 2018 Accepted: 13 Jun. 2018 A three-dimensional primitive equation model has been developed to study wind-driven currents in the Caspian Sea (CS). The equations were solved in the spherical coordinate system with a vertical array of pressure-sigma using a finite difference Method on a staggered modified Arakawa c grid. Simulations showed that there is an anticyclonic eddy over the deep water of South Caspian Basin (SCB), which extended from surface to subsurface and persist throughout the year. The model successfully produced the coastal current along the eastern coast of the Middle Caspian Basin (MCB) with a prevailing southward component, resulting in upwelling on these coasts to compensate the surface drift. The results indicate that the bottom topography has a key role in steering currents and generated a divergence in the surface Ekman layer which balanced by convergence in the frictional bottom Ekman layer in deepest areas of the CS.
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