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Evaluation of sub grid scale and local wall models in Large-eddy simulations of separated flow

机译:分流大涡模拟中子网格规模和局部壁面模型的评估

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The performance of the Sub Grid Scale models is studied by simulating a separated flow over a wavy channel. The first and second order statistical moments of the resolved velocities obtained by using Large-Eddy simulations at different mesh resolutions are compared with Direct Numerical Simulations data. The effectiveness of modeling the wall stresses by using local log-law is then tested on a relatively coarse grid. The results exhibit a good agreement between highly-resolved Large Eddy Simulations and Direct Numerical Simulations data regardless the Sub Grid Scale models. However, the agreement is less satisfactory with relatively coarse grid without using any wall models and the differences between Sub Grid Scale models are distinguishable. Using local wall model retuned the basic flow topology and reduced significantly the differences between the coarse meshed Large-Eddy Simulations and Direct Numerical Simulations data. The results show that the ability of local wall model to predict the separation zone depends strongly on its implementation way.
机译:通过模拟波浪通道上的分离流,研究了子网格比例模型的性能。通过使用大涡模拟在不同网格分辨率下获得的分解速度的一阶和二阶统计矩与直接数值模拟数据进行比较。然后在相对粗糙的网格上测试通过使用局部对数律对壁应力建模的有效性。无论子网格比例模型如何,结果都显示出高度解析的大涡模拟和直接数值模拟数据之间的良好一致性。但是,在不使用任何墙模型的情况下,使用相对粗糙的网格时,该协议不太令人满意,并且“子网格比例”模型之间的差异是可区分的。使用局部壁模型重新调整了基本流动拓扑,并显着减小了粗网格大涡模拟和直接数值模拟数据之间的差异。结果表明,局部壁模型预测分离带的能力在很大程度上取决于其实现方式。

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