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LARGE-EDDY AND DETACHED-EDDY SIMULATIONS OF THE SEPARATED FLOW AROUND A CIRCULAR CYLINDER

机译:圆柱绕流的大涡模拟和分离涡模拟

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The separated turbulent flow around a circular cylinder is investigated using Large-Eddy Simulation (LES), Detached-Eddy Simulation (DES, or hybrid RANS/LES methods), and Unsteady Reynolds-Averaged Navier-Stokes (URANS). The purpose of this study is to examine some typical simulation approaches for the prediction of complex separated turbulent flow and to clarify the capability of applying these approaches to a typical case of the separated turbulent flow around a circular cylinder. Several turbulence models, i.e. dynamic Sub-grid Scale (SGS) model in LES, the DES-based Spalart-Allmaras (S-A) and k — ω Shear-Stress-Transport (SST) models in DES, and the S-A and SST models in URANS, are used in the calculations. Some typical results, e.g., the mean pressure and drag coefficients, velocity profiles, Strouhal number, and Reynolds stresses, are obtained and compared with previous computational and experimental data. Based on our extensive calculations, we assess the capability and performance of these simulation approaches coupled with the relevant turbulence models to predict the separated turbulent flow.
机译:使用大涡模拟(LES),分离涡模拟(DES或混合RANS / LES方法)和非稳态雷诺平均Navier-Stokes(URANS)来研究圆柱体周围的分离湍流。本研究的目的是研究一些用于预测复杂的分离湍流的典型模拟方法,并阐明将这些方法应用于围绕圆柱的分离湍流的典型情况的能力。几种湍流模型,例如LES中的动态子网格尺度(SGS)模型,DES中的基于DES的Spalart-Allmaras(SA)模型和k —ω剪切-应力-运输(SST)模型,以及DES中的SA和SST模型URANS用于计算中。获得了一些典型结果,例如平均压力和阻力系数,速度曲线,斯特劳哈尔数和雷诺应力,并将其与先前的计算和实验数据进行了比较。基于我们广泛的计算,我们评估了这些模拟方法以及相关湍流模型的能力和性能,以预测分离的湍流。

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