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首页> 外文期刊>Procedia IUTAM >The Radiation of Internal Waves by a Turbulent Fountain in a Stratified Fluid
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The Radiation of Internal Waves by a Turbulent Fountain in a Stratified Fluid

机译:湍流喷泉在层状流体中的内波辐射

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摘要

The objective of the present paper is to study by large-eddy simulation (LES) the dynamics of a fountain created by a turbu-lent vertical jet flow penetrating a pycnocline (a sharp density interface) in a density-stratified fluid. A circular, turbulent jet flow of neutral buoyancy is considered which propagates vertically upwards towards the pycnocline level and penetrates a distance into the layer of lighter fluid. At a certain height the jet fluid stagnates and flows down under gravity around the up-flowing core thus creating a fountain. The LES results show that if the Froude number Fr (defined by the jet flow velocity and diameter at injection and the buoyancy frequency in the pycnocline) is large enough, the fountain top collapses periodically and generates circular internal waves. The dependence of the amplitude of the fountain-top oscillations on Fr is well described by a Landau model for an instability mode with soft self-excitation.
机译:本文的目的是通过大涡模拟(LES)研究由湍流垂直射流穿透密度分层流体中的比可可林(锋利的密度界面)产生的喷泉的动力学。考虑到中性浮力的圆形湍流射流,该射流垂直向上向着斜线水平传播并穿透一定距离进入较轻的流体层。在一定高度时,射流会停滞并在重力作用下围绕上升的岩心向下流动,从而形成一个喷泉。 LES结果表明,如果弗洛德数Fr(由射流的流速和直径以及比多可克林的浮力频率定义)足够大,则喷泉顶部会周期性塌陷并产生圆形内波。对于具有软自激的不稳定性模式,Landau模型很好地描述了喷泉顶部振荡幅度对Fr的依赖性。

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