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Large-Eddy Simulations of Wall Bounded Turbulent Flows Using Unstructured Linear Reconstruction Techniques

机译:使用非结构化线性重构技术的壁面有限湍流大涡模拟

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摘要

Large-eddy simulations (LES) of wall bounded, low Mach number turbulent flows are conducted using an unstructured finite-volume solver of the compressible flow equations. The numerical method employs linear reconstructions of the primitive variables based on the least-squares approach of Earth. The standard Smagorinsky model is adopted as the suhgrid term. The artificial viscosity inherent to the spatial discretization is maintained as low as possible reducing the dissipative contribution embedded in the approximate Riemann solver to the minimum necessary. Comparisons are also discussed with the results obtained using the implicit LES (ILES) procedure. Two canonical test-cases are described: a fully developed pipe flow at a bulk Reynolds number Re_b, = 44 × 10~3 based on the pipe diameter, and a confined rotor-stator flow at the rotational Reynolds number Re_Ω = 4× 10~5 based on the outer radius. In both cases, the mean flow and the turbulent statistics agree well with existing direct numerical simulations (DNS) or experimental data.
机译:使用可压缩流方程的非结构化有限体积求解器进行了有边界,低马赫数湍流的大涡模拟(LES)。数值方法采用基于地球最小二乘法的原始变量的线性重构。标准的Smagorinsky模型被用作suhgrid术语。将空间离散固有的人工粘度保持在尽可能低的水平,从而将嵌入在近似Riemann求解器中的耗散贡献降至最低。比较还讨论了使用隐式LES(ILES)过程获得的结果。描述了两个典型的测试用例:基于管道直径的完全雷诺数Re_b = 44×10〜3时的充分发展的管道流,以及旋转雷诺数Re_Ω= 4×10〜时的受限转子-定子流。 5基于外半径。在这两种情况下,平均流量和湍流统计数据都与现有的直接数值模拟(DNS)或实验数据非常吻合。

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  • 来源
    《Journal of turbomachinery》 |2015年第5期|051006.1-051006.11|共11页
  • 作者单位

    Thermo-Fluid Systems UTC, University of Surrey, Guildford, Surrey GU2 7XH, UK;

    Thermo-Fluid Systems UTC, University of Surrey, Guildford, Surrey GU2 7XH, UK;

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