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Spectral-dynamic model for large-eddy simulations of turbulent rotating channel flow

机译:大涡模拟湍流旋转通道流动的谱动力学模型

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A new subgrid-scale model called the spectral-dynamic model is proposed. It consists of a refinement of spectral eddy-viscosity models taking into account nondeveloped turbulence in the subgrid-scales. The proposed correction, which is derived from eddy-damped quasi-normal Markovian statistical theory, is based on an adjustment of the turbulent eddy-viscosity coefficient to the deviation of the spectral slope (at small scales) with respect to the standard Kolmogorov law. The spectral-dynamic model is applied to large eddy simulation (LES) of rotating and nonrotating turbulent plane channel flows. It is shown that the proposed refinement allows for clear improvement of the statistical predictions due to a correct prediction of the near-wall behavior. Cases of rotating and nonrotating low (DNS) and high Reynolds (LES) numbers are then compared. It is shown that the principal structural features of the rotating turbulent channel flow are reproduced by the LES, such as the presence of the near-zero mean absolute vorticity region, the modification of the anisotropic character of the flow (with respect to the nonrotating case), the enhancement of how organization, and the inhibition of the high- and low-speed streaks near the anticyclonic wall. Only a moderate Reynolds number dependence is exhibited, resulting in a more unstable character of the longitudinal large-scale roll cells at high Reynolds number, and a slight increase of the laminarization tendency on the cyclonic side of the channel. [References: 35]
机译:提出了一种新的亚网格规模模型,称为谱动力学模型。它包括对光谱涡流-粘度模型的改进,其中考虑了子网格尺度上未发展的湍流。拟议的校正是基于涡动阻尼准正态马尔可夫统计理论而得出的,其修正是基于湍流涡流粘度系数相对于标准Kolmogorov定律的光谱斜率偏差(小尺度)进行的。谱动力学模型被应用于旋转和非旋转湍流平面通道流动的大涡模拟(LES)。结果表明,由于对近壁行为的正确预测,提出的改进方案可以使统计预测得到明显改善。然后比较旋转和非旋转低(DNS)和高雷诺(LES)数的情况。结果表明,LES再现了旋转湍流通道流的主要结构特征,如接近零的平均绝对涡度区域的存在,流动各向异性特征的改变(相对于非旋转情况) ),增强组织方式以及抑制反气旋壁附近的高速和低速条纹。仅表现出适度的雷诺数依赖性,导致在高雷诺数下纵向大型辊式电池更加不稳定,通道的旋风侧的层化趋势略有增加。 [参考:35]

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