Thermodynamic Variational Principle Unifying Gravity and Heat Flow
Abstract
Predicting the stable phase configuration in a liquid-gas system becomes a fundamental challenge when the stratification favored by gravity conflicts with arrangements induced by heat flow, particularly because standard equilibrium thermodynamics is insufficient in such non-equilibrium steady states. We propose a variational principle based on an extended thermodynamics, called global thermodynamics, to address this state selection problem. Our key finding is that gravity and heat flow effects are unified into a single parameter, ``effective gravity'' (), within this framework. Crucially, the sign of determines the stable configuration: liquid is at the bottom if , and floats above the gas if . This provides a quantitative tool for the configuration prediction under competing drives.
Cite
@article{arxiv.2505.10380,
title = {Thermodynamic Variational Principle Unifying Gravity and Heat Flow},
author = {Naoko Nakagawa and Shin-ichi Sasa},
journal= {arXiv preprint arXiv:2505.10380},
year = {2025}
}
Comments
7 pages, 4 figures