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晶格 Boltzmann 框架中的碰撞模型综合比较:理论研究。

Comprehensive comparison of collision models in the lattice Boltzmann framework: Theoretical investigations.

机构信息

Department of Computer Science, University of Geneva, 1204 Geneva, Switzerland.

出版信息

Phys Rev E. 2019 Sep;100(3-1):033305. doi: 10.1103/PhysRevE.100.033305.

Abstract

Over the last decades, several types of collision models have been proposed to extend the validity domain of the lattice Boltzmann method (LBM), each of them being introduced in its own formalism. This article proposes a formalism that describes all these methods within a common mathematical framework, and in this way allows us to draw direct links between them. Here, the focus is put on single and multirelaxation time collision models in either their raw moment, central moment, cumulant, or regularized form. In parallel with that, several bases (nonorthogonal, orthogonal, Hermite) are considered for the polynomial expansion of populations. General relationships between moments are first derived to understand how moment spaces are related to each other. In addition, a review of collision models further sheds light on collision models that can be rewritten in a linear matrix form. More quantitative mathematical studies are then carried out by comparing explicit expressions for the post-collision populations. Thanks to this, it is possible to deduce the impact of both the polynomial basis (raw, Hermite, central, central Hermite, cumulant) and the inclusion of regularization steps on isothermal LBMs. Extensive results are provided for the D1Q3, D2Q9, and D3Q27 lattices, the latter being further extended to the D3Q19 velocity discretization. Links with the most common two and multirelaxation time collision models are also provided for the sake of completeness. This work ends by emphasizing the importance of an accurate representation of the equilibrium state, independently of the choice of moment space. As an addition to the theoretical purpose of this article, general instructions are provided to help the reader with the implementation of the most complicated collision models.

摘要

在过去的几十年中,已经提出了几种类型的碰撞模型来扩展晶格玻尔兹曼方法 (LBM) 的有效域,每种模型都有其自己的形式。本文提出了一种形式,它在一个通用的数学框架内描述了所有这些方法,并以这种方式允许我们在它们之间建立直接联系。这里,重点放在单松弛时间和多松弛时间碰撞模型上,无论是原始矩、中心矩、累积量还是正则化形式。与此同时,还考虑了几种基(非正交、正交、厄米特)用于种群的多项式展开。首先推导出矩之间的一般关系,以了解矩空间如何相互关联。此外,碰撞模型的综述进一步阐明了可以以线性矩阵形式重写的碰撞模型。然后通过比较碰撞后种群的显式表达式进行更定量的数学研究。通过这种方式,可以推断出多项式基(原始、厄米特、中心、中心厄米特、累积量)和正则化步骤的包含对等温 LBM 的影响。为 D1Q3、D2Q9 和 D3Q27 晶格提供了广泛的结果,后者进一步扩展到 D3Q19 速度离散化。为了完整性,还提供了与最常见的双松弛时间和多松弛时间碰撞模型的联系。本文的工作最后强调了独立于矩空间选择准确表示平衡状态的重要性。除了本文的理论目的外,还提供了一般说明,以帮助读者实现最复杂的碰撞模型。

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