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A multi-scale, multi-domain approach to wall-modelling for LES of high Reynolds number wall-bounded turbulent flows.

机译:多尺度,多域的高雷诺数壁边界湍流LES的壁建模方法。

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摘要

Application of LES to high Reynolds number wall-bounded turbulent flows of practical interest requires new methods for overcoming the large resolution requirement of the near-wall region, as well as subgrid-scale (SGS) models which remain robust regardless of the type of filter employed. To address these issues, a SGS model based on direct approximation of the nonlinear terms in the filtered Navier-Stokes equations has been developed. The resulting Nonlinear Interactions Approximation Model (NIAM) uses deconvolution to parameterize the local triadic interactions across the LES filter, and an eddy-viscosity term to represent the distant interactions. Tests of NIAM in LES of decaying isotropic turbulence at Relambda ≈ 720, turbulent channel flow at Retau ≈ 210 and 570, and rotating turbulent channel flow at Retau ≈ 190 and rotation number Ro = 0.15 show that NIAM gives more accurate predictions of the skin-friction coefficient and turbulence statistics compared to popular existing models at comparable resolution.; The near-wall resolution requirements are addressed by a novel multi-scale multi-domain (MSMD) approach. This method utilizes the quasi-periodicity of the near-wall turbulence structures to solve the flow in the near-wall region at fine resolution in a minimal flow unit large enough to accommodate only one packet of vortical structures. This flow unit is then repeated periodically or quasi-periodically and matched to a coarse-resolution but full-domain solution in the outer layer. The performance of the MSMD approach is found to be largely dependent on the size of the near-wall units employed. For near-wall units of spanwise size fixed in outer variables, ∼delta, accurate predictions can be obtained in both the near-wall region and outer layer. However, the resolution requirements of the method scale as O( Re2t ), which limits its applicability to Retau ≤ 5000. For near-wall units of spanwise size fixed in inner variables, ∼ 1000 wall units, the method yields accurate predictions in the outer layer but only approximate results in the near-wall region. In this case, simulations can be performed with a resolution of 32 x 64 x 17 in the near-wall region and 32 x 64 x 33 in the outer layer for 1000 ≤ Retau ≤ 10,000, independent of Re tau. At higher Reynolds numbers, the resolution requirements scale as O(Retau).
机译:LES在实际应用中的高雷诺数壁边界湍流中的应用需要新的方法来克服近壁区域的高分辨率要求,以及无论过滤器类型如何都保持鲁棒性的亚网格规模(SGS)模型受雇。为了解决这些问题,已经开发了基于滤波后的Navier-Stokes方程中非线性项的直接逼近的SGS模型。所得的非线性相互作用近似模型(NIAM)使用反卷积参数化LES过滤器上的局部三重相互作用,并用涡流-粘度项表示远处的相互作用。 Relambda≈衰减各向同性湍流的LES中的NIAM试验720,Retau≈的湍流通道210和570,以及Retau≈处的旋转湍流通道。 190和旋转数Ro = 0.15表明,与可比较分辨率的现有现有模型相比,NIAM可以更准确地预测皮肤摩擦系数和湍流统计。通过新颖的多尺度多域(MSMD)方法解决了近壁分辨率要求。该方法利用近壁湍流结构的准周期性,以足够大的最小流量单位以仅容纳一包涡旋结构的最小流动单元,以高分辨率对近壁湍流进行求解。然后,定期或准周期性地重复此流动单元,并使其与外层中的粗分辨率但全域解决方案匹配。发现MSMD方法的性能很大程度上取决于所采用的近壁单元的尺寸。对于固定在外部变量〜delta中的跨度大小的近壁单元,在近壁区域和外层都可以获得准确的预测。但是,该方法的分辨率要求为O(Re2t),因此将其适用范围限制为Retau≤5000。对于内部变量中固定的跨壁尺寸的近壁单元,〜1000壁单元,该方法可以在外部获得准确的预测层,但仅在近壁区域得到近似结果。在这种情况下,可以在近壁区域中以32 x 64 x 17的分辨率在外层中以32 x 64 x 33的分辨率执行仿真,独立于Re tau的分辨率为1000≤Retau≤10,000。在较高的雷诺数下,分辨率要求按O(Retau)缩放。

著录项

  • 作者

    Haliloglu, Mehmet Umut.;

  • 作者单位

    University of Michigan.;

  • 授予单位 University of Michigan.;
  • 学科 Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 119 p.
  • 总页数 119
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 机械、仪表工业;
  • 关键词

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