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A Combined Derivation of the Integrated and Vertically Resolved, Coupled Wave-Current Equations

机译:积分和垂直解析的耦合波电流方程的组合推导

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摘要

There exist different theories representing the effects of surface gravity waves on oceanic flow fields. In the past, the author has conjectured that the vertically integrated, two-dimensional fluid equations of motion put forward by Longuet-Higgins and Stewart are correct and that theories that differ from their theory cannot be entirely correct; this paper explores these differences. Longuet-Higgins and Stewart deduced vertically integrated, two-dimensional equations featuring a wave radiation stress term in the fluid dynamic, momentum equation. More recently, the author has proposed vertically dependent, three-dimensional equations that have required correction but when vertically integrated, agreed with the earlier, two-dimensional equations. This paper derives both vertically independent and vertically dependent equations from the same base and, importantly, using the same expression for pressure in the belief that the paper will contribute to the understanding and clarification of this seemingly difficult topic in ocean dynamics. An error in the classical papers by Longuet-Higgins and Stewart has been detected. Although the final phase-averaged result was correct, the error has had consequences in the development of vertically dependent equations. The prognostic equations in this paper are for the Eulerian current plus Stokes drift; toward the end of the paper these equations are contrasted with prognostic equations for the Eulerian current alone.
机译:存在代表表面重力波对海洋流场影响的不同理论。过去,作者推测Longuet-Higgins和Stewart提出的垂直积分的二维流体运动方程是正确的,与理论不同的理论不能完全正确。本文探讨了这些差异。 Longuet-Higgins和Stewart推导了垂直积分的二维方程,在流体动力学动量方程中包含了波辐射应力项。最近,作者提出了需要修正的垂直相关的三维方程,但当垂直积分时,与早期的二维方程相符。本文从相同的基础上导出了垂直独立方程和垂直相关方程,并且重要的是,使用了相同的压力表达式,因为该论文将有助于理解和阐明这个看似困难的海洋动力学主题。 Longuet-Higgins和Stewart在经典论文中发现了一个错误。尽管最终的相位平均结果是正确的,但该误差已对垂直相关方程的开发产生了影响。本文的预后方程为欧拉电流加斯托克斯漂移;在本文接近尾声时,这些方程与仅针对欧拉流的预后方程进行了对比。

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