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Partially Averaged Navier-Stokes Method for Turbulence: Fixed Point Analysis and Comparison With Unsteady Partially Averaged

机译:湍流的部分平均Navier-Stokes方法:不定部分平均的不动点分析和比较

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摘要

Hybrid/bridging models that combine the advantages of Reynolds averaged Navier Stokes (RANS) method and large-eddy simulations are being increasingly used for simulating turbulent flows with large-scale unsteadiness. The objective is to obtain accurate estimates of important large-scale fluctuations at a reasonable cost. In order to be effective, these bridging methods must posses the correct "energetics": that is, the right balance between production (P) and dissipation (ε). If the model production-to-dissipation ratio (P/ε) is inconsistent with turbulence physics at that cutoff, the computations will be unsuccessful. In this paper, we perform fixed-point analyses of two bridging models-partially-averaged Navier Stokes (PANS) and unsteady RANS (URANS)-to examine the behavior of production-to-dissipation ratio. It is shown that the URANS-(P/ε) ratio is too high rendering it incapable of resolving much of the fluctuations. On the other hand, the PANS-(P/ε) ratio allows the model to vary smoothly from RANS to DNS depending upon the values of its resolution control parameters.
机译:结合了雷诺平均Navier Stokes(RANS)方法和大涡模拟的优点的混合/桥接模型正越来越多地用于模拟具有大尺度不稳定的湍流。目的是以合理的成本获得重要的大规模波动的准确估计。为了有效发挥作用,这些桥接方法必须具有正确的“能量学”:即生产(P)和耗散(ε)之间的正确平衡。如果模型的产耗比(P /ε)与该临界点处的湍流物理学不一致,则计算将不会成功。在本文中,我们对部分平均的Navier Stokes(PANS)和非稳态RANS(URANS)两种桥接模型进行定点分析,以检验产耗比的行为。结果表明,URANS-(P /ε)比率太高,使其无法解决大部分波动。另一方面,PANS-(P /ε)比率允许模型根据其分辨率控制参数的值从RANS平滑过渡到DNS。

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