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A dynamic wall model for large eddy simulation of turbulent flow over complex/moving boundaries based on the immersed boundary method

机译:基于浸没边界法的复杂/移动边界湍流大型涡流模拟动态墙模型

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摘要

A hybrid immersed boundary/wall-model approach for large eddy simulation is developed for turbulent flows with complex/moving boundaries. The filtered Navier-Stokes equations are solved on a regular Eulerian mesh, with the no-slip condition on the wall imposed through the continuous forcing of the immersed boundary (IB) method. To implement the wall model, the thin boundary layer equation is solved on an embedded mesh refined along the wall-normal direction and a dynamic matching procedure is adopted. Near-wall subgrid-scale viscosity is further modified by taking into account the influence of IB forcing. The proposed method is tested on several numerical examples, including turbulent channel flow, turbulent flow over periodic hills, and turbulent channel flow with a traveling wavy wall. The mean velocity profile and turbulent fluctuations are reasonably well predicted in the canonical channel flow, as well as in flows with a complex/moving boundary and large flow separation. Published under license by AIP Publishing.
机译:大型涡流模拟的混合浸没边界/壁模型方法是为具有复杂/移动边界的湍流流动开发。过滤的Navier-Stokes方程在常规欧拉网上求解,通过连续强制浸没边界(IB)方法施加的壁上的无滑移条件。为了实现墙体模型,薄边界层方程在沿着壁法正常方向精制的嵌入网格上求解并且采用动态匹配过程。通过考虑IB强迫的影响,进一步修改近壁亚谱凝纹粘度。在几个数值示例中测试了所提出的方法,包括湍流通道流,周期山丘上的湍流,以及带有行驶波形壁的湍流通道流。在规范通道流动中,平均速度曲线和湍流波动在规范通道流中预测,以及具有复杂/移动边界的流动和大流量分离。通过AIP发布在许可证下发布。

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    《Physics of fluids》 |2019年第11期|共11页
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  • 正文语种 eng
  • 中图分类 流体力学;
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