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首页> 外文期刊>Acta Mechanica >Impact of dynamic subgrid-scale modeling in variational multiscale large-eddy simulation of bluff-body flows
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Impact of dynamic subgrid-scale modeling in variational multiscale large-eddy simulation of bluff-body flows

机译:动态子网格尺度模型在钝体流变分多尺度大涡模拟中的影响

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The effects of dynamic subgrid-scale (SGS) modeling are investigated in variational multiscale (VMS) large-eddy simulation (LES) simulations of bluff-body flows. The spatial discretization is based on a mixed finite-element/finite-volume formulation on unstructured grids. In the VMS approach used in this work, the separation between the largest and the smallest resolved scales is obtained through a variational projection operator and a finite-volume cell agglomeration. The dynamic and non-dynamic versions of Smagorinsky and wall-adapted local eddy-viscosity SGS models are used to account for the effects of the unresolved scales. In the VMS approach, these effects are onlymodeled in the smallest resolved scales. The VMS-LES and classical LES approaches, combined with the considered dynamic and non-dynamic SGS models, are applied to the simulation of the flow around a circular cylinder at Reynolds numbers 3,900 and 20,000 and to the flow around a square cylinder at Reynolds numbers 22,000 and 175,000.
机译:在变体多尺度(VMS)钝体流的大涡模拟(LES)模拟中研究了动态亚网格规模(SGS)建模的影响。空间离散化基于非结构化网格上的有限元/有限体积混合公式。在这项工作中使用的VMS方法中,最大分辨率和最小分辨率之间的分隔是通过变分投影算子和有限体积的单元聚结获得的。 Smagorinsky的动态和非动态版本以及与墙面相适应的局部涡流粘度SGS模型用于说明未解决尺度的影响。在VMS方法中,这些影响仅以最小分辨尺度建模。 VMS-LES和经典LES方法与考虑的动态和非动态SGS模型相结合,被用于模拟绕雷诺数为3,900和20,000的圆柱体绕流以及绕雷诺数为方形的绕流22,000和175,000。

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