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VERIFICATION OF LENGTH SCALE EFFECTS ON SOLUTION ACCURACY OF HYBRID RANS - LES METHODS

机译:混合RAN-LES法求解准确性的长度尺度效应的验证。

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Hybrid RANS-LES methods are gaining popularity for the simulation of the complex bluff body flows at high Reynolds numbers due to their reduced computational cost and good accuracy. A number of such methods have been proposed in the literature. Each of these methods have enjoyed varying degree of success for different applications. One of the most important parameter which determines the switching between near-wall RANS region and off-body LES region is the length scale parameter. This parameter can be grid based or physics based and numerous choices exist for defining this parameter. This study proposes to investigate the effect of this parameter on the size of the RANS and LES regions and also on the solution accuracy. Four test problems are chosen covering attached, mildly separated and massively separated flow regimes. Results will help us to identify length scale definitions to be used for different flow scenarios.
机译:混合RANS-LES方法因其降低的计算成本和良好的精度而在高雷诺数下的复杂钝体流模拟中获得广泛应用。文献中已经提出了许多这样的方法。这些方法中的每一种对于不同的应用都享有不同程度的成功。确定近壁RANS区域和离体LES区域之间切换的最重要参数之一是长度比例参数。该参数可以基于网格或基于物理,并且存在多种选择来定义该参数。这项研究建议调查此参数对RANS和LES区域的大小以及对求解精度的影响。选择了四个测试问题,分别涉及附着的,轻度分离的和大规模分离的流动状态。结果将帮助我们确定用于不同流量方案的长度刻度定义。

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