English

Defining the pressures of a fluid in a nanoporous, heterogeneous medium

Chemical Physics 2022-02-01 v1 Mesoscale and Nanoscale Physics Fluid Dynamics

Abstract

We describe the thermodynamic state of a single-phase fluid confined to a porous medium with Hill's thermodynamics of small systems, also known as nanothermodynamics. This way of defining small system thermodynamics, with a separate set of control variables, may be useful for the study of transport in non-deformable porous media, where presently no consensus exists on pressure computations. For a confined fluid, we observe that there are two pressures, the integral and the differential pressures. We use molecular simulations to investigate and confirm the nanothermodynamic relations for a representative elementary volume (REV). For a model system of a single-phase fluid in a face-centered cubic lattice of solid spheres of varying porosity, we calculate the fluid density, fluid-solid surface tension, replica energy, integral pressure, entropy, and internal energy.

Keywords

Cite

@article{arxiv.2201.13060,
  title  = {Defining the pressures of a fluid in a nanoporous, heterogeneous medium},
  author = {Olav Galteland and Michael T. Rauter and Kevin K. Varughese and Dick Bedeaux and Signe Kjelstrup},
  journal= {arXiv preprint arXiv:2201.13060},
  year   = {2022}
}

Comments

20 pages, 11 figures