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首页> 外文期刊>Journal of Physical Oceanography >Cross-Shelf Circulation Induced by the Kuroshio Shear Stress in the East China Sea
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Cross-Shelf Circulation Induced by the Kuroshio Shear Stress in the East China Sea

机译:东海黑潮剪切应力引起的跨环流。

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摘要

This study solves two-dimensional (cross-shelf and depth directions) steady-state nonlinear primitive equations to infer the cross-shelf circulation induced by the Kuroshio shear stress in the East China Sea (ECS). The Kuroshio velocity data are estimated from hydrographic observations at the PN section in the ECS. Nonlinear momentum equations are solved using an iterative approach in a terrain-following coordinate system, which helps to adequately take into account the boundary conditions over complex topography. The vertical shear stress of the Kuroshio is shown to induce two offshore transport pathways over the continental shelf, which are related to the structure of the interior geostrophic current and bottom Ekman transport, respectively. As a result of the vertical shear stress, an upwelling is induced above the bottom Ekman layer on the continental slope. The horizontal shear stress of the Kuroshio has the effect of inducing onshore transport at the flow core. The advection terms in the primitive equations are found to amplify the cross-shelf velocity solved from the linear equations. This study reveals that the Kuroshio has a substantial effect on the cross-shelf circulation and that it might drive multiple transport pathways.
机译:本研究解决了二维(跨层架方向和深度方向)稳态非线性原始方程,以推断东海黑潮剪切应力引起的跨层架环流。黑潮速度数据是根据ECS PN区域的水文观测估计的。在地形跟踪坐标系中使用迭代方法求解非线性动量方程,这有助于充分考虑复杂地形上的边界条件。研究表明,黑潮的垂直切应力在大陆架上诱发了两条海上运输路径,分别与内部地转流和底部埃克曼运输的结构有关。由于垂直剪切应力,在大陆斜坡上的底部埃克曼层上方引起了上升流。黑潮的水平切应力具有在流芯处引起陆上运输的作用。发现原始方程中的对流项可以放大由线性方程求解的跨架速度。这项研究表明,黑潮对跨架循环具有实质性影响,并且可能驱动多种运输途径。

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