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Interaction between waves and gravity currents: description of turbulence in a simple numerical model

机译:波和重力电流之间的相互作用:简单数值模型中的湍流描述

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摘要

AbstractEffects of surface waves on gravity current propagation are studied by means of a numerical model. The adopted modeling approach couples a Boussinesq-type of model for surface waves and a gravity current model for stratified flows. In particular two different turbulence closure models are introduced which take into account subgrid turbulence and an additional depth-constant eddy-viscosity. The turbulence parameters are calibrated by means of experimental data on the time evolution of the heavy front, obtained both in the absence and in the presence of regular surface waves. Velocity fields, heavy and light front position, shear stresses, vorticity and entrainment calculated by the model are analyzed. The turbulence closure which includes both uniform and Smagorinsky type eddy viscosity allows a better description of the actual gravity current propagation. In particular, the results highlight the fact that the presence of the oscillatory motion causes, simultaneously, a reduction in turbulence and an increase in the mixing of heavy and light fluids. Such a result is in agreement with the experimental observations.]]>
机译:<![cdata [ <标题>抽象 ara id =“par1”>研究了表面波对重力电流传播的影响数字模型的手段。所采用的建模方法对地表波的BoussinesQ型模型和分层流动的重力电流模型耦合。特别地,引入了两种不同的湍流封闭模型,其考虑了底图湍流和额外的深度恒定涡流。湍流参数通过关于沉重前线的时间演变的实验数据校准,在不存在和存在的常规表面波的存在下获得。分析了模型计算的速度场,沉重和光正面位置,剪切应力,涡旋度和夹带。包括均匀和Smagorinsky型涡粘度的湍流封闭件允许更好地描述实际重力电流传播。特别地,结果突出了振荡运动的存在,同时振荡运动的存在和湍流的降低和重重和光流体混合的增加。这种结果与实验观察一致。 ]]>

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