Öttinger Hans Christian, Struchtrup Henning, Torrilhon Manuel
Department of Materials, ETH Zürich, HCP F 47.2, 8093 Zürich, Switzerland.
Department of Mechanical Engineering, University of Victoria, Victoria, British Columbia, Canada V8W 2Y2.
Philos Trans A Math Phys Eng Sci. 2020 May;378(2170):20190174. doi: 10.1098/rsta.2019.0174. Epub 2020 Mar 30.
In this work, we make a further step in bringing together different approaches to non-equilibrium thermodynamics. The structure of the moment hierarchy derived from the Boltzmann equation is at the heart of rational extended thermodynamics (RET, developed by Ingo Müller and Tommaso Ruggeri). Whereas the full moment hierarchy has the structure expressed in the general equation for the nonequilibrium reversible-irreversible coup- ling (GENERIC), the Poisson bracket structure of reversible dynamics postulated in that approach is a major obstacle for truncating moment hierarchies, which seems to work only in exceptional cases (most importantly, for the five moments associated with conservation laws). The practical importance of truncated moment hierarchies in rarefied gas dynamics and microfluidics motivates us to develop a new strategy for establishing the full GENERIC structure of truncated moment equations, based on non-entropy-producing irreversible processes associated with Casimir symmetry. Detailed results are given for the special case of 10 moments. This article is part of the theme issue 'Fundamental aspects of nonequilibrium thermodynamics'.
在这项工作中,我们朝着将非平衡热力学的不同方法结合起来又迈进了一步。从玻尔兹曼方程导出的矩层次结构是理性扩展热力学(由英戈·米勒和托马索·鲁杰里发展而来的RET)的核心。虽然完整的矩层次结构具有非平衡可逆 - 不可逆耦合(GENERIC)通用方程中所表达的结构,但该方法中假设的可逆动力学的泊松括号结构是截断矩层次结构的主要障碍,截断似乎仅在特殊情况下有效(最重要的是,对于与守恒定律相关的五个矩)。截断矩层次结构在稀薄气体动力学和微流体中的实际重要性促使我们基于与卡西米尔对称性相关的非熵产生不可逆过程,开发一种建立截断矩方程完整GENERIC结构的新策略。给出了10个矩的特殊情况的详细结果。本文是“非平衡热力学的基本方面”主题特刊的一部分。