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Assessment of multiscale resolution for hybrid turbulence model in unsteady separated transonic flows

机译:非稳态分离跨音速流中混合湍流模型的多尺度分辨率评估

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This paper presents results of a computational study conducted to assess the multi-scale resolution capabilities of a hybrid two-equation turbulence model in predicting unsteady separated high speed flows. Numerical solutions are obtained using a third order Roe scheme and the SST (shear-stress-transport) two-equation-based hybrid turbulence model for three-dimensional transonic flow over an open cavity. A detailed assessment of the effects of the computational grid and the hybrid turbulence model coefficient is presented for the unsteady flow field. Computed results are presented for both the resolved and the modeled turbulent kinetic energy (TKE) and for the predicted sound pressure level (SPL) spectra, which are compared to available experimental data and large Eddy simulation (LES) results. The comparison shows that the predicted SPL spectra agree well with the experimental results over a frequency range up to 2500 Hz, and that hybrid turbulence effectively models the shorter wavelengths. The results demonstrate improved agreement with experimental SPL spectra with increased grid resolution and a reduced hybrid turbulence model coefficient. In addition, they show that energy dissipation of the unresolved scales is over-predicted at low resolutions and that the hybrid coefficient influences the grid resolution requirements.
机译:本文介绍了一项计算研究的结果,以评估混合二方程湍流模型在预测不稳定的分离高速流中的多尺度分辨能力。使用三阶Roe方案和基于SST(剪切应力传输)基于两方程的混合湍流模型获得了求解开放腔上的三维跨音速流的数值解。对于非定常流场,对计算网格和混合湍流模型系数的影响进行了详细评估。给出了解析的和模型的湍动能(TKE)以及预测的声压级(SPL)谱的计算结果,并将这些结果与可用的实验数据和大型涡模拟(LES)结果进行了比较。比较表明,在高达2500 Hz的频率范围内,预测的SPL光谱与实验结果非常吻合,并且混合湍流有效地模拟了较短的波长。结果表明,与实验SPL光谱相比,具有更高的网格分辨率和更低的混合湍流模型系数,从而改善了实验一致性。此外,它们表明,在低分辨率下,未解析比例的能量耗散被过度预测,并且混合系数会影响网格分辨率要求。

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