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High-Reynolds-number wall-modelled large eddy simulations of turbulent pipe flows using explicit and implicit subgrid stress treatments within a spectral element solver

机译:高雷诺数壁图的湍流管道的大型涡流模拟使用光谱元件求解器内的显式和隐式底图应力处理流动

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We present explicit and implicit large eddy simulations for fully developed turbulent pipe flows using a continuous-Galerkin spectral element solver. On the one hand, the explicit stretched-vortex model (by Misra and Pullin [45] and Chung and Pullin [14]), accounts for an explicit treatment of unresolved stresses and is adapted to the high-order solver. On the other hand, an implicit approach based on a spectral vanishing viscosity technique is implemented. The latter implicit technique is modified to incorporate Chung & Pullin virtual-wall model instead of relying on implicit dissipative mechanisms near walls. This near-wall model is derived by averaging in the wall-normal direction and relying in local inner scaling to treat the time-dependence of the filtered wall-parallel velocity. The model requires space-time varying Dirichlet and Neumann boundary conditions for velocity and pressure respectively. We provide results and comparisons for the explicit and implicit subgrid treatments and show that both provide favourable results for pipe flows at Re-tau = 2 x 10(3) and Re-tau = 1.8 x 10(5) in terms of turbulence statistics. Additionally, we conclude that implicit simulations are enhanced when including the wall model and provide the correct statistics near walls. (C) 2019 Elsevier Ltd. All rights reserved.
机译:我们使用连续的Galerkin光谱元件求解器来满足完全开发的湍流管道的明确和隐含的大型涡流模拟。一方面,明确的拉伸涡旋模型(通过MISRA和Pullin [45]和Chung和Pullin [14]),用于明确处理未解决的应力,并适应高阶求解器。另一方面,实施了基于光谱消失粘度技术的隐式方法。后一种隐含的技术被修改为包含Chung&Pullin虚拟墙模型,而不是依赖于墙壁附近的隐式耗散机制。通过在壁正常方向上平均并依赖于局部内缩放来衍生这种近壁模型以处理过滤壁平行速度的时间依赖性。该模型需要空间时间改变Dirichlet和Neumann边界条件,分别用于速度和压力。我们为明确和隐含的划分症治疗提供结果和比较,并表明在湍流统计方面提供了在Re-Tau = 2 x 10(3)和Re-tau = 1.8 x 10(5)的管道流动的有利结果。此外,我们得出结论,当包括墙面模型时,可以提高隐式模拟,并在墙壁附近提供正确的统计数据。 (c)2019年elestvier有限公司保留所有权利。

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