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A numerical study of stratified tidal rectification

机译:分层潮汐整流的数值研究

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At the top of the continental slope, the barotropic tide provides a forcing for internal tide generation and topographic rectification. Both of these phenomena exhibit non-linear features such as Eulerian residual currents, which are the main topic of this paper. Those currents are studied with the numerical model MICOM, validated on the basis of a previous theoretical study and operated without bottom friction nor density mixing. We then proceed to the realistic case of the seasonal thermocline above the continental slope, thereby extending numerically the scope of the existing theories. The main effect of the density stratification is to intensify the topographically rectified current in the lower part of the water column, thereby diminishing the surface residual current. The numerical simulations show that the surface residual current can be expected to go from zero at the end of summer to its maximum (barotropic) value during winter, owing to the annual cycle of stratification in the upper layers of the ocean. (C) 1999 Elsevier Science Ltd. All rights reserved. [References: 28]
机译:在大陆坡的顶部,正压潮为内部潮汐的产生和地形校正提供了强迫。这两种现象都表现出非线性特征,例如欧拉残余电流,这是本文的主要主题。这些电流使用数值模型MICOM进行了研究,并在先前的理论研究基础上进行了验证,并且在没有底部摩擦或密度混合的情况下运行。然后,我们继续研究大陆坡上方的季节性温跃层的实际情况,从而在数值上扩展现有理论的范围。密度分层的主要作用是增强水柱下部的地形整流电流,从而减小表面残余电流。数值模拟表明,由于海洋上层的年度分层周期,预计表面剩余电流将从夏季末的零变为冬季的最大值(正压)。 (C)1999 Elsevier ScienceLtd。保留所有权利。 [参考:28]

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