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首页> 外文期刊>Journal of Fluid Mechanics >Wall-resolved wavelet-based adaptive large-eddy simulation of bluff-body flows with variable thresholding
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Wall-resolved wavelet-based adaptive large-eddy simulation of bluff-body flows with variable thresholding

机译:基于壁分解小波的变阈值钝体流自适应大涡模拟

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The wavelet-based eddy-capturing approach with variable thresholding is extended to bluff body flows, where the obstacle geometry is enforced through Brinkman volume penalization. The use of a spatio-temporally varying threshold allows one to perform adaptive large eddy simulations With the prescribed fidelity on a near optimal computational mesh. The space time evolution of the threshold variable is achieved by solving a transport equation based on the Lagrangian path-line diffusive averaging methodology. The coupled wavelet-collocation/volume-penalization approach with variable thresholding is illustrated for a turbulent incompressible flow around an isolated stationary prism with square cross-section. Wavelet-based adaptive large-eddy simulations supplied with the one-equation localized dynamic kinetic energy-based model are successfully performed at moderately high Reynolds number. The present study demonstrates that the proposed variable thresholding methodology for wavelet-based modelling of turbulent flows around solid obstacles is feasible, accurate and efficient.
机译:具有可变阈值的基于小波的涡流捕获方法扩展到虚张声势的体流,其中通过Brinkman体积罚分来增强障碍物的几何形状。时空变化的阈值的使用允许人们在接近最佳的计算网格上以规定的保真度执行自适应大涡流模拟。通过基于拉格朗日路径线扩散平均方法求解运输方程,可以实现阈值变量的时空演化。针对具有方形横截面的孤立的固定棱镜周围的不可压缩湍流,说明了具有可变阈值的耦合小波配置/体积惩罚方法。在中等较高的雷诺数下,成功完成了基于一波局部动态动能模型的基于小波的自适应大涡模拟。本研究表明,提出的基于小波的固体障碍物绕流湍流建模的可变阈值方法是可行,准确和高效的。

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