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The effects of topography on mixing rates in controlled exchange flows

机译:地形对控制交换流中混合率的影响

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We examine irreversible mixing in buoyancy-driven baroclinic exchange flows past bottom topography. In all cases the shear between the counter-flowing layers is unstable in the vicinity of a hydraulic control situated above the topography. The overall amount of irreversible turbulent mixing produced by overturning billows during a given time is determined from mea-surements of vertical density profiles after the exchange. The potential energy changes are used to evaluate the global mixing efficiency, defined as the fraction of the available potential energy released into kinetic energy that is converted to potential energy through irreversible mixing. In all cases examined, the mixing efficiency is no more than 11% ± 1%, which corresponds to the max-imum mixing efficiency found in previous work for exchange flows through a lateral contraction. The mixing efficiency is found to reduce as the fractional depth of the topography increases and as the topographic slope decreases.
机译:我们检查浮力驱动的曲金交换中的不可逆混合流动过去底部地形。在所有情况下,反流层之间的剪切在位于地形上方的液压控制附近不稳定。通过在给定时间内翻转波形产生的不可逆湍流混合的总体量由交换后的垂直密度谱的测定测定。潜在的能量变化用于评估全局混合效率,定义为通过不可逆混合转换为势能的动能的可用势能的分数。在所有检查的情况下,混合效率不超过11​​%±1%,这对应于以前的工作中发现的MAX-imum混合效率,以通过横向收缩流动。发现混合效率随着地形的分数增加而随着地形斜率降低而减少。

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