To main content

Heat transport through a solid-solid junction: the interface as an autonomous thermodynamic system

Abstract

We perform computational experiments using nonequilibrium molecular dynamics simulations, showing that the interface between two solid materials can be described as an autonomous thermodynamic system. We verify the local equilibrium and give support to the Gibbs description of the interface also away from the global equilibrium. In doing so, we reconcile the common formulation of the thermal boundary resistance as the ratio between the temperature discontinuity at the interface and the heat flux with a more rigorous derivation from nonequilibrium thermodynamics. We also show that thermal boundary resistance of a junction between two pure solid materials can be regarded as an interface property, depending solely on the interface temperature, as implicitly assumed in some widely used continuum models, such as the acoustic mismatch model. Thermal rectification can be understood on the basis of different interface temperatures for the two flow directions.
Read the publication

Category

Academic article

Language

English

Author(s)

  • Riccardo Rurali
  • Luciano Colombo
  • Xavier Cartoixà
  • Øivind Wilhelmsen
  • Thuat Trinh
  • Dick Bedeaux
  • Signe Kjelstrup

Affiliation

  • SINTEF Energy Research / Gassteknologi
  • University of Cagliari
  • Autonomous University of Barcelona
  • Spanish National Research Council
  • Norwegian University of Science and Technology

Year

2016

Published in

Physical Chemistry, Chemical Physics - PCCP

ISSN

1463-9076

Volume

18

Issue

20

Page(s)

13741 - 13745

View this publication at Norwegian Research Information Repository