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首页> 外文期刊>Journal of Fluid Mechanics >Energy balances for axisymmetric gravity currents in homogeneous and linearly stratified ambients
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Energy balances for axisymmetric gravity currents in homogeneous and linearly stratified ambients

机译:均匀线性分层环境中轴对称重力流的能量平衡

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摘要

We analyse the exchange of energy for an axisymmetric gravity current, released instantaneously from a lock, propagating over a horizontal boundary at high Reynolds number. The study is relevant to flow in either a wedge or a full circular geometry. Attention is focused on effects due to a linear stratification in the ambient. The investigation uses both a one-layer shallow-water model and Navier-Stokes finite-difference simulations. There is fair agreement between these two approaches for the energy changes of the dense fluid (the current). The stratification enhances the accumulation of potential energy in the ambient and reduces the energy decay (dissipation) of the two-fluid system. The total energy of the axisymmetric current decays considerably faster with distance of propagation than for the two-dimensional counterpart.
机译:我们分析了轴对称重力电流的能量交换,该重力电流从锁瞬间释放,在高雷诺数下沿水平边界传播。该研究与楔形或全圆形几何形状的流动有关。注意集中在由于环境中线性分层而产生的影响。该调查使用了一层浅水模型和Navier-Stokes有限差分模拟。对于稠密流体(电流)的能量变化,这两种方法之间存在公平的共识。分层增加了周围环境中势能的积累,并减少了双流体系统的能量衰减(耗散)。轴对称电流的总能量随传播距离的衰减远快于二维对应的衰减。

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