Numerical analysis of the thermal relaxation of the dense gas between two parallel plates: the free energy monotonicity for the Enskog equation

Fuente: arXiv
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Main Authors: Takata, Shigeru, Sakata, Soma, Takahashi, Aoto, Hattori, Masanari
Format: Preprint
Published: 2026
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author Takata, Shigeru
Sakata, Soma
Takahashi, Aoto
Hattori, Masanari
author_facet Takata, Shigeru
Sakata, Soma
Takahashi, Aoto
Hattori, Masanari
contents The thermal relaxation problem between two parallel plates with the same temperature is investigated, aiming to study the behavior of the free energy of the dense gas described by the Enskog equation. Two types of Enskog equation have been used: one is the Enskog equation with the original Enskog factor, while the other is that with a modified Enskog factor proposed recently in Takata & Takahashi, Phys. Rev. E 111, 065108 (2025). The evaluated free energy is a natural extension of the thermodynamic free energy to the non-equilibrium state. It is observed that this free energy monotonically decreases in time for the modified factor version, while it is not necessarily the case for the original version. Differences are also observed in other quantities in their time evolutions, most typically in the density profile.
format Preprint
id arxiv_https___arxiv_org_abs_2603_23839
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Numerical analysis of the thermal relaxation of the dense gas between two parallel plates: the free energy monotonicity for the Enskog equation
Takata, Shigeru
Sakata, Soma
Takahashi, Aoto
Hattori, Masanari
Mesoscale and Nanoscale Physics
82C40
The thermal relaxation problem between two parallel plates with the same temperature is investigated, aiming to study the behavior of the free energy of the dense gas described by the Enskog equation. Two types of Enskog equation have been used: one is the Enskog equation with the original Enskog factor, while the other is that with a modified Enskog factor proposed recently in Takata & Takahashi, Phys. Rev. E 111, 065108 (2025). The evaluated free energy is a natural extension of the thermodynamic free energy to the non-equilibrium state. It is observed that this free energy monotonically decreases in time for the modified factor version, while it is not necessarily the case for the original version. Differences are also observed in other quantities in their time evolutions, most typically in the density profile.
title Numerical analysis of the thermal relaxation of the dense gas between two parallel plates: the free energy monotonicity for the Enskog equation
topic Mesoscale and Nanoscale Physics
82C40
url https://arxiv.org/abs/2603.23839