首页> 外文期刊>Philosophical transactions of the Royal Society. Mathematical, physical, and engineering sciences >Application of the ideas and techniques of classical fluid mechanics to some problems in physical oceanography
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Application of the ideas and techniques of classical fluid mechanics to some problems in physical oceanography

机译:古典流体力学思想及技术在物理海洋学中存在一些问题的应用

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This review makes a case for describing many of the flows observed in our oceans, simply based on the Euler equation, with (piecewise) constant density and with suitable boundary conditions. The analyses start from the Euler and mass conservation equations, expressed in a rotating, spherical coordinate system (but the f-plane and beta-plane approximations are also mentioned); five examples are discussed. For three of them, a suitable non-dimensionalization is introduced, and a single small parameter is identified in each case. These three examples lead straightforwardly and directly to new results for: waves on the Pacific Equatorial Undercurrent (EUC) with a thermocline (in the f-plane); a nonlinear, three-dimensional model for EUC-type flows (in the beta-plane); and a detailed model for large gyres. The other two examples are exact solutions of the complete system: a flow which corresponds to the underlying structure of the Pacific EUC; and a flow based on the necessary requirement to use a non-conservative body force, which produces the type of flow observed in the Antarctic Circumpolar Current. (All these examples have been discussed in detail in the references cited.) This review concludes with a few comments on how these solutions can be extended and expanded.
机译:本综述是为了描述在海洋中观察到的许多流动的情况,简单地基于欧拉方程,(分段)恒定密度和合适的边界条件。分析从欧拉和质量保护方程开始,在旋转的球形坐标系(但是也提到了F面和β面近似);讨论了五个例子。对于其中三个,引入合适的非维度,并且在每种情况下识别单个小参数。这三个例子直接引领并直接用于新的结果:与热管(在F平面中)的太平洋赤道暗流(EUC)上的波浪; EUC型流量的非线性,三维模型(在β面上);以及大型陀螺的详细模型。另外两个示例是完整系统的精确解决方案:一种对应于太平洋EUC的底层结构的流动;并且基于使用非保守体力的必要要求的流动,这产生了在南极环形电流中观察到的流动类型。 (所有这些示例都已在引用的参考文献中详细讨论过。)这条评论的结论是关于这些解决方案如何扩展和扩展的一些评论。

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