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Large-Eddy Simulation of Flow Through an Array of Cubes with Local Grid Refinement

机译:通过局部网格细化的多维数据集流的大涡模拟

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High resolution simulations of the transport of urban contaminants are important for disaster response and city planning. Large-eddy simulation (LES) and mesh refinement can each be used to decrease the computational cost of modelling, but combining these techniques can result in additional errors at grid-refinement interfaces. Here, we study the effect of the turbulence closure on the accuracy of LES results, for grids with mesh refinement, in a test case of flow through a periodic array of cubes. It is found that a mixed-model turbulence closure, using both an eddy viscosity and a scale similarity component, reduces energy accumulation at grid-refinement interfaces when used with explicit filtering of the advection term. The mixed model must be used with explicit filtering to control high wavenumber errors generated by the non-linear scale-similarity model. The results demonstrate that the turbulence closure mitigates errors associated with using LES on block-structured grids for urban-flow simulations.
机译:高分辨率模拟城市污染物的运输对灾难响应和城市规划很重要。大涡模拟(LES)和网格细化可分别用于减少建模的计算成本,但是将这些技术结合使用会在网格细化界面上导致其他错误。在这里,我们研究了湍流闭合对​​LES精度的影响(对于具有网格细化的网格),在流经立方体的周期性阵列的测试案例中。发现使用涡流粘度和水垢相似度分量的混合模型湍流闭合,当与对流项的显式过滤一起使用时,可减少网格细化界面处的能量积累。混合模型必须与显式滤波一起使用,以控制由非线性比例相似模型产生的高波数误差。结果表明,湍流闭合减轻了在城市流动模拟中在块状结构网格上使用LES带来的误差。

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