首页> 外文期刊>Journal of Fluids Engineering: Transactions of the ASME >Partially Averaged Navier-Stokes (PANS) Method for Turbulence Simulations: Flow Past a Circular Cylinder
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Partially Averaged Navier-Stokes (PANS) Method for Turbulence Simulations: Flow Past a Circular Cylinder

机译:湍流模拟的部分平均Navier-Stokes(PANS)方法:流过圆柱的流体

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The objective of this study is to evaluate the capability of the partially averaged Navier-Stokes (PANS) method in a moderately high Reynolds number (Re_(D) 1.4 X 10~(5)) turbulent flow past a circular cylinder. PANS is a bridging closure model purported for use at any level of resolution ranging from Reynolds-averaged Navier-Stokes to direct numerical simulations. The closure model is sensitive to the length-scale cut-off via the ratios of unresolved-to-total kinetic energy (f_(k)) and unresolved-to-total dissipation (f_(epsilon)). Several simulations are performed to study the effect of the cut-off length-scale on computed closure model results. The results from various resolutions are compared against experimental data, large eddy simulation, and detached eddy simulation solutions. The quantities examined include coefficient of drag (C_(d)), Strouhal number (S_(t)), and coefficient of pressure distribution (C_(p)) along with the mean flow statistics and flow structures. Based on the computed results for flow past circular cylinder presented in this paper and analytical attributes of the closure model, it is reasonable to conclude that the PANS bridging method is a theoretically sound and computationally viable variable resolution approach for practical flow computations.
机译:这项研究的目的是评估部分平均Navier-Stokes(PANS)方法在通过圆柱体的中等高雷诺数(Re_(D)1.4 X 10〜(5))湍流中的能力。 PANS是一种桥接闭合模型,据称可用于任何分辨率级别,范围从雷诺平均Navier-Stokes到直接数值模拟。闭合模型通过未解决的总动能(f_(k))和未解决的总耗散(f_(epsilon))的比率对长度尺度截止敏感。进行了一些模拟,以研究截止长度尺度对计算的闭合模型结果的影响。将来自各种分辨率的结果与实验数据,大涡模拟和分离涡模拟解决方案进行比较。检查的数量包括阻力系数(C_(d)),斯特劳哈尔数(S_(t))和压力分布系数(C_(p))以及平均流量统计信息和流量结构。根据本文介绍的绕圆柱流的计算结果和闭合模型的分析属性,可以合理地得出结论,PANS桥接方法在实际流量计算中是理论上合理且在计算上可行的可变分辨率方法。

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