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首页> 外文期刊>Advances in Water Resources >An external-internal mode coupling for a 3D hydrodynamical model for applications at regional scale (MARS)
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An external-internal mode coupling for a 3D hydrodynamical model for applications at regional scale (MARS)

机译:用于区域规模(MARS)的3D水动力模型的内外模式耦合

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摘要

This paper presents a 3D model in sigma coordinates. Although the principles it is based on have been established for some time, some original aspects for this type of 3D mode splitting model are presented here. The model was designed to simulate flows in various coastal areas from the regional scale down to the inshore scale of small bays or estuaries where circulation is generally driven by a mix of processes. The processes to be modeled enable simplifications of the Navier-Stokes equations on the classic Boussinesq and hydrostatic hypotheses. These equations are transformed within a sigma framework to make free surface processing easier. The main point of our demonstration focuses on the original aspect of the coupling between barotropic and baroclinic modes especially designed for ADI. It explains how full consistency of the transport calculated within the 2D and 3D equation sets was obtained. Lastly, we describe the physical processes simulated on a realistic configuration at a regional scale in the Bay of Biscay.
机译:本文介绍了一个以sigma坐标表示的3D模型。尽管基于它的原理已经建立了一段时间,但此处还是介绍了此类3D模式拆分模型的一些原始方面。该模型旨在模拟从区域尺度到小海湾或河口沿岸尺度的各个沿海地区的流量,这些区域通常由多种过程驱动循环。要建模的过程可以简化经典Boussinesq和流体静力学假设下的Navier-Stokes方程。这些方程式在sigma框架内进行转换,以简化自由曲面的处理。我们的演示重点集中在为ADI设计的正压模式和斜压模式之间耦合的原始方面。它解释了如何在2D和3D方程组内获得完全一致的输运量。最后,我们描述了比斯开湾在区域规模上以实际配置模拟的物理过程。

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