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A Simplified General Circulation Model for a Baroclinic Ocean with Topography. Part Ⅰ: Theory, Waves, and Wind-Driven Circulations

机译:具有地形的斜压海洋的简化总环流模型。第一部分:理论,波浪和风循环

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摘要

A new type of ocean general circulation model with simplified physics is described and tested for various simple wind-driven circulation problems. The model consists of the vorticity balance of the depth-averaged flow and a hierarchy of equations for "vertical moments" of density and baroclinic velocity. The first vertical density moment is the (vertically integrated) potential energy, which is used to describe the predominant link between the barotropic and the baroclinic oceanic flow in the presence of sloping topography. Tendency equations for the vertical moments of density and baroclinic velocity and an appropriate truncation of the coupled hierarchy of moments are derived that, together with the barotropic vorticity balance, yield a closed set of equations describing the barotropic-baroclinic interaction (BARBI) model of the oceanic circulation. Idealized companion experiments with a numerical implementation of the BARBI model and a primitive equation model indicate that wave propagation properties and baroclinic adjustments are correctly represented in BARBI in midlatitudes as well as in equatorial latitudes. Furthermore, a set of experiments with a realistic application to the Atlantic/ Southern Ocean system reproduces important aspects that have been previously reported by studies of gyre circulations and circumpolar currents using full primitive equation models.
机译:描述了一种新型的简化了物理的海洋总循环模型,并针对各种简单的风循环问题进行了测试。该模型由深度平均流的涡旋平衡和密度和斜压速度的“垂直矩”方程层次组成。第一个垂直密度矩是(垂直积分的)势能,用于描述在倾斜地形下正压和斜压洋流之间的主要联系。推导出了密度和斜压速度的垂直矩的趋势方程以及耦合的矩层的适当截断,连同正压涡度平衡一起,得出了一组封闭的方程,描述了该系统的正压-斜压相互作用(BARBI)模型海洋环流。使用BARBI模型和原始方程模型的数值实现的理想伴随实验表明,在中纬度和赤道纬度中,BARBI均能正确表示波的传播特性和斜度调整。此外,一组实际应用到大西洋/南洋海洋系统的实验再现了重要的方面,这些方面先前已通过使用完整的原始方程模型对回转环流和绕极流的研究进行了报道。

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