A PARAMETRIZED NON-EQUILIBRIUM WALL-MODEL FOR LARGE-EDDY SIMULATIONS

S. Hickel, E. Touber, J. Bodart, J. Larsson
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引用次数: 19

Abstract

Wall-models are essential for enabling large-eddy simulations (LESs) of realistic problems at high Reynolds numbers. The present study is focused on approaches that directly model the wall shear stress, specifically on filling the gap between models based on wall-normal ordinary differential equations (ODEs) that assume equilibrium and models based on full partial differential equations (PDEs) that do not. We develop ideas for how to incorporate non-equilibrium effects (most importantly, strong pressure-gradient effects) in the wall-model while still solving only wall-normal ODEs. We test these ideas using two reference databases: an adverse pressure-gradient turbulent boundary-layer and a shock/boundary-layer interaction problem, both of which lead to separation and re-attachment of the turbulent boundary layer.
大涡模拟的参数化非平衡壁面模型
壁面模型是实现高雷诺数实际问题大涡模拟(LESs)的必要条件。目前的研究重点是直接模拟墙体剪切应力的方法,特别是填补基于假设平衡的墙-法向常微分方程(ode)模型和基于不假设平衡的全偏微分方程(PDEs)模型之间的空白。我们提出了如何在壁面模型中纳入非平衡效应(最重要的是强压力梯度效应)的想法,同时仍然只解决壁面法向ode。我们使用两个参考数据库来测试这些想法:一个逆压力梯度湍流边界层和一个激波/边界层相互作用问题,两者都会导致湍流边界层的分离和重新附着。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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