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The equivalence of the Lagrangian-averaged Navier-Stokes-α model and the rational large eddy simulation model in two dimensions

机译:二维拉格朗日平均Navier-Stokes-α模型与有理大涡模拟模型的等价性

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In the large eddy simulation (LES) framework for modeling a turbulent flow, when the large scale velocity field is defined by low-pass filtering the full velocity field, a Taylor series expansion of the full velocity field in terms of the large scale velocity field leads (at the leading order) to the nonlinear gradient model for the subfilter stresses. Motivated by the fact that while the nonlinear gradient model shows excellent a priori agreement in resolved simulations, the use of this model by itself is problematic, we consider two models that are related, but better behaved. The rational LES model that uses a sub-diagonal Pade approximation instead of a Taylor series expansion, and the Lagrangian averaged Navier-Stokes-α model that uses a regularization approach to modeling turbulence. In this article, we show that these two latter models are identical in two dimensions.
机译:在用于模拟湍流的大涡模拟(LES)框架中,当通过对全速度场进行低通滤波来定义大规模速度场时,就大速度场而言,全速度场的泰勒级数展开导致(按领先顺序)子过滤器应力的非线性梯度模型。出于以下事实的动机:尽管非线性梯度模型在解析的模拟中显示出极好的先验一致性,但该模型本身的使用存在问题,但我们认为这两个模型是相关的,但表现更好。使用对角线Pade逼近而不是泰勒级数展开的有理LES模型以及使用正则化方法对湍流建模的拉格朗日平均Navier-Stokes-α模型。在本文中,我们证明了后两个模型在二维上是相同的。

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