The background method: theory and computations

Giovanni Fantuzzi, A. Arslan, A. Wynn
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引用次数: 14

Abstract

The background method is a widely used technique to bound mean properties of turbulent flows rigorously. This work reviews recent advances in the theoretical formulation and numerical implementation of the method. First, we describe how the background method can be formulated systematically within a broader ‘auxiliary function’ framework for bounding mean quantities, and explain how symmetries of the flow and constraints such as maximum principles can be exploited. All ideas are presented in a general setting and are illustrated on Rayleigh–Bénard convection between stress-free isothermal plates. Second, we review a semidefinite programming approach and a timestepping approach to optimizing bounds computationally, revealing that they are related to each other through convex duality and low-rank matrix factorization. Open questions and promising directions for further numerical analysis of the background method are also outlined. This article is part of the theme issue ‘Mathematical problems in physical fluid dynamics (part 1)’.
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背景方法:理论与计算相结合
背景法是一种广泛应用的严格约束湍流平均性质的方法。这项工作回顾了该方法的理论表述和数值实现的最新进展。首先,我们描述了背景方法如何在一个更广泛的“辅助函数”框架内系统地制定边界平均量,并解释了如何利用流动的对称性和约束(如最大原则)。所有的想法都是在一般情况下提出的,并在无应力等温板之间的瑞利-巴萨姆德对流中加以说明。其次,我们回顾了计算优化边界的半定规划方法和时间步进方法,揭示了它们通过凸对偶和低秩矩阵分解相互关联。对背景法数值分析中存在的问题和有希望的方向进行了概述。本文是主题问题“物理流体动力学中的数学问题(第一部分)”的一部分。
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