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Development and calibration of algebraic nonlinear models for terms in the Reynolds stress transport equations

机译:雷诺应力传递方程中项的代数非线性模型的开发和校准

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摘要

A simple and straightforward method is presented for the derivation and calibration of algebraic nonlinear models for terms in Reynolds stress turbulence closures. The method extensively utilizes data from direct numerical simulations to allow an investigation of the model performance over the entire Reynolds stress anisotropy-invariant map. The model constants are determined from the condition of minimizing the mean square error over the invariant map, in order to give good model behavior for as wide a class as possible of flow situations. A low Reynolds number closure is proposed based on the most general form for closing the Reynolds stress transport equations in terms of Reynolds stresses and total dissipation rate. It is shown that forcing the closure to satisfy realizability in a strict sense leads to a good model behavior even for the complicated flow situation near a wall, without any use of ad-hoc wall damping functions in the closure. The model behavior in homogeneous turbulent flow is analyzed by formulating equations for invariant measures, yielding several quite general results for the behavior of the present and other existing models. A new approach to the modeling effects of rotation in the context of Reynolds stress closures is presented and tested for some different homogeneous flows subjected to rotation. (C) 2000 American Institute of Physics. [S1070-6631(00)01205-8]. [References: 30]
机译:本文提出了一种简单明了的方法来推导和校准雷诺应力湍流闭锁项中的代数非线性模型。该方法广泛利用来自直接数值模拟的数据,从而可以研究整个雷诺应力各向异性图的模型性能。模型常数是根据在不变图上最小化均方误差的条件确定的,以便为尽可能广泛的流动情况提供良好的模型行为。根据用于关闭雷诺应力和总耗散率的雷诺应力传递方程的最通用形式,提出了一种低雷诺数闭环的方法。结果表明,即使在壁附近复杂的流动情况下,从严格意义上讲迫使封闭物满足可实现性也会导致良好的模型行为,而在封闭物中不使用任何特殊的壁阻尼功能。通过制定不变测度的方程,分析了均相湍流中的模型行为,从而为当前模型和其他现有模型的行为提供了一些相当普遍的结果。提出了一种在Reynolds应力闭合的情况下对旋转建模效果进行建模的新方法,并针对某些不同的旋转均质流进行了测试。 (C)2000美国物理研究所。 [S1070-6631(00)01205-8]。 [参考:30]

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