The surface current of Ekman flows with time-dependent eddy viscosity

L. Roberti
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引用次数: 3

Abstract

In this paper we investigate transients in the oceanic Ekman layer in the presence of time-varying winds and a constant-in-depth but time dependent eddy viscosity, where the initial state is taken to be the steady state corresponding to the initial wind and the initial eddy viscosity. For this specific situation, a formula for the evolution of the surface current can be derived explicitly. We show that, if the wind and the eddy viscosity converge toward constant values for large times, under mild assumptions on their convergence rate the solution converges toward the corresponding steady state. The time evolution of the surface current and the surface deflection angle is visualized with the aid of simple numerical plots for some specific examples.
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埃克曼表面电流具有随时间变化的涡流黏度
本文研究了海洋Ekman层在时变风和持续深度但随时间变化的涡动黏度存在下的瞬态,其中初始状态取为初始风和初始涡动黏度对应的稳态。对于这种特殊情况,可以明确地推导出表面电流演变的公式。我们证明,如果风和涡流黏度长时间向恒定值收敛,在对其收敛速率的温和假设下,解向相应的稳态收敛。通过一些具体的算例,用简单的数值图显示了表面电流和表面偏转角的时间演变。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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