首页> 外文会议>ASME Joint US-European Fluids Engineering Division summer meeting;FEDSM2010 >ON THE 'EARLY-TIME' EVOLUTION OF VARIABLES RELEVANT TO TURBULENCE MODELS FOR THE RAYLEIGH-TAYLOR INSTABILITY
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ON THE 'EARLY-TIME' EVOLUTION OF VARIABLES RELEVANT TO TURBULENCE MODELS FOR THE RAYLEIGH-TAYLOR INSTABILITY

机译:关于瑞利-泰勒不稳定性湍流模型的变量的“早期”演化

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We present our progress toward setting initial conditions in variable density turbulence models. In particular, we concentrate our efforts on the BHR turbulence model [1] for turbulent Rayleigh-Taylor instability. Our approach is to predict profiles of relevant variables before fully turbulent regime and use them as initial conditions for the turbulence model. We use an idealized model of mixing between two interpenetrating fluids to define the initial profiles for the turbulence model variables. Velocities and volume fractions used in the idealized mixing model are obtained respectively from a set of ordinary differential equations modeling the growth of the Rayleigh-Taylor instability and from an idealization of the density profile in the mixing layer. A comparison between predicted profiles for the turbulence model variables and profiles of the variables obtained from low Atwood number three dimensional simulations show reasonable agreement.
机译:我们介绍了在设置可变密度湍流模型中的初始条件方面的进展。特别是,我们将精力集中在湍流瑞利-泰勒不稳定性的BHR湍流模型[1]上。我们的方法是在完全湍流之前预测相关变量的轮廓,并将其用作湍流模型的初始条件。我们使用两种互穿流体之间混合的理想化模型来定义湍流模型变量的初始轮廓。理想化混合模型中使用的速度和体积分数分别从一组模拟瑞利-泰勒不稳定性增长的常微分方程组和混合层中密度分布的理想化获得。湍流模型变量的预测轮廓与从低阿特伍德数三维模拟获得的变量轮廓之间的比较显示出合理的一致性。

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