Gavassino Lorenzo
Department of Mathematics, Vanderbilt University, Nashville, TN 37240, USA.
Entropy (Basel). 2024 Feb 8;26(2):147. doi: 10.3390/e26020147.
We propose a general procedure for evaluating, directly from microphysics, the constitutive relations of heat-conducting fluids in regimes of large fluxes of heat. Our choice of hydrodynamic formalism is Carter's two-fluid theory, which happens to coincide with Öttinger's GENERIC theory for relativistic heat conduction. This is a natural framework, as it should correctly describe the relativistic "inertia of heat" as well as the subtle interplay between reversible and irreversible couplings. We provide two concrete applications of our procedure, where the constitutive relations are evaluated, respectively, from maximum entropy hydrodynamics and Chapman-Enskog theory.
我们提出了一种直接从微观物理学评估大热量通量状态下导热流体本构关系的通用程序。我们选择的流体动力学形式是卡特的双流体理论,它恰好与奥廷格的相对论热传导通用理论一致。这是一个自然的框架,因为它应该正确描述相对论性的“热惯性”以及可逆和不可逆耦合之间的微妙相互作用。我们给出了该程序的两个具体应用,其中本构关系分别从最大熵流体动力学和查普曼 - 恩斯科格理论进行评估。