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The compressible hybrid RANS/LES formulation using an additive operator

机译:使用加法算子的可压缩混合RANS / LES配方

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In this work, the compressible governing equations for the hybrid Reynolds-averaged/large-eddy simulations are formally derived by applying a hybrid filter to the Navier-Stokes equations. This filter is constructed by linearly combining the Reynolds-average (RANS) and large-eddy simulation (LES) operators with a continuous blending function. The derived hybrid equations include additional terms that represent the interactions between RANS and LES formulations. The relevance of these terms is investigated in flat-plate turbulent boundary layer simulations and indicate that these additional terms play a fundamental role in compensating for the turbulence that is neither modeled nor resolved in the transition region between RANS and LES. Results also show that when the additional terms are included, the calculations are not very sensitive to the blending function implemented in the hybrid filter. In the contrary, when these terms are neglected and a step function is implemented in the hybrid filter, nonphysical discontinuities are predicted in the flow statistics. (C) 2008 Elsevier Inc. All rights reserved.
机译:在这项工作中,通过对Navier-Stokes方程应用混合滤波器,正式得出了混合的雷诺平均/大涡模拟的可压缩控制方程。该滤波器是通过将雷诺平均(RANS)和大涡模拟(LES)运算符与连续混合函数线性组合而成的。派生的混合方程包括代表RANS和LES公式之间相互作用的其他项。在平板湍流边界层模拟中研究了这些术语的相关性,并指出这些附加术语在补偿在RANS和LES之间的过渡区域中既未建模也未解析的湍流中起着基本作用。结果还表明,当包括附加项时,计算对混合滤波器中实现的混合功能不是很敏感。相反,当忽略这些术语并在混合滤波器中实现阶跃函数时,将在流量统计中预测非物理的不连续性。 (C)2008 Elsevier Inc.保留所有权利。

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