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Large-eddy simulation and wall modelling of turbulent channel flow

机译:湍流通道大涡模拟与壁面模拟

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摘要

We report large-eddy simulation (LES) of turbulent channel flow. This LES neither resolves nor partially resolves the near-wall region. Instead, we develop a special near-wall subgrid-scale (SGS) model based on wall-parallel filtering and wall-normal averaging of the streamwise momentum equation, with an assumption of local inner scaling used to reduce the unsteady term. This gives an ordinary differential equation (ODE) for the wall shear stress at every wall location that is coupled with the LES. An extended form of the stretched-vortex SGS model, which incorporates the production of near-wall Reynolds shear stress due to the winding of streamwise momentum by near-wall attached SGS vortices, then provides a log relation for the streamwise velocity at the top boundary of the near-wall averaged domain. This allows calculation of an instantaneous slip velocity that is then used as a 'virtual-wall' boundary condition for the LES. A Karman-like constant is calculated dynamically as part of the LES. With this closure we perform LES of turbulent channel flow for Reynolds numbers Re-tau based on the friction velocity u(tau) and the channel half-width delta in the range 2 x 10(3) to 2 x 10(7). Results, including SGS-extended longitudinal spectra, compare favourably with the direct numerical simulation (DNS) data of Hoyas & Jimenez (2006) at Re-tau = 2003 and maintain an O(1) grid dependence on Re-tau.
机译:我们报告了湍流通道流动的大涡模拟(LES)。该LES既不解析也不部分解析近壁区域。相反,我们基于流向动量方程的壁平行滤波和壁法线平均,开发了一种特殊的近壁子网格规模(SGS)模型,并假设使用局部内部缩放来减少非稳态项。这给出了与LES耦合的每个壁位置处壁剪应力的常微分方程(ODE)。拉伸涡旋SGS模型的扩展形式,其中包括由于近壁附着的SGS涡流沿流向动量的缠绕而产生的近壁雷诺剪切应力,然后提供了顶部边界处的流向速度的对数关系壁平均域的这允许计算瞬时滑移速度,然后将其用作LES的“虚拟墙”边界条件。类卡曼常数作为LES的一部分进行动态计算。通过这种闭合,我们基于摩擦速度u(tau)和通道半宽度增量在2 x 10(3)到2 x 10(7)范围内,对雷诺数Re-tau执行湍流通道的LES。结果,包括SGS扩展的纵向光谱,与Hoyas&Jimenez(2006)在Re-tau = 2003上的直接数值模拟(DNS)数据相比具有优势,并保持了对Re-tau的O(1)网格依赖性。

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