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首页> 外文期刊>Journal of Fluid Mechanics >Simulation of turbulent flows with the entropic multirelaxation time lattice Boltzmann method on body-fitted meshes
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Simulation of turbulent flows with the entropic multirelaxation time lattice Boltzmann method on body-fitted meshes

机译:用熵多轴时间格子Boltzmann方法模拟湍流流动体型网格网

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We propose a body-fitted mesh approach based on a semi-Lagrangian streaming step combined with an entropy-based collision model. After determining the order of convergence of the method, we analyse the flow past a circular cylinder in the lower subcritical regime, at a Reynolds number $Re=3900$ , in order to assess the numerical performances for wall-bounded turbulence. The results are compared to experimental and numerical data available in the literature. Overall, the agreement is satisfactory. By adopting an efficient local refinement strategy together with the enhanced stability features of the entropic model, this method extends the range of applicability of the lattice Boltzmann approach to the solution of realistic fluid dynamics problems, at high Reynolds numbers, involving complex geometries.
机译:我们提出了一种基于半拉格朗日流媒体步骤的身体拟合网格方法,结合了基于熵的碰撞模型。 在确定该方法的收敛顺序之后,我们在雷诺数$ Re = 3900 $处分析流过圆柱形的圆柱体,以评估壁限湍流的数值性能。 将结果与文献中可用的实验性和数值数据进行比较。 总体而言,协议令人满意。 通过采用高效的本地细化策略以及熵模型的增强稳定性特征,该方法在高雷诺数涉及复杂几何形状的高雷诺数,将格子Boltzmann方法的适用范围扩展到逼真的流体动力学问题的解决方案。

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