Article ID Journal Published Year Pages File Type
1560567 Computational Materials Science 2014 7 Pages PDF
Abstract

•L–J potential and EAM potential were used in liquid films simulation.•Interfacial thermal conductance increased with the increase in the binding strength.•Interfacial binding strength has an important role in forming the absorption layers.•The absorbed layers strongly affect heat transfer performance of liquid films.

Molecular dynamics (MD) simulations were carried out in this study to investigate the effect of solid–gas binding strength and surface coverage on the interfacial thermal conductance and thermal accommodation coefficient of evaporating liquid films. Simple Lennard–Jones fluids were simulated in a cubic domain, which consisted of an upper platinum wall and a lower platinum wall, with argon fluid in between. Both the equilibrium molecular dynamics (EMD) and the non-equilibrium molecular dynamics (NEMD) simulated the evaporation and condensation of the liquid films properly. In addition, the thermal conductance and accommodation coefficient increased with the increase in the binding strength. To further analyze the effects of inter-molecular forces and movements on heat transfer, the surface coverage and interaction time of the absorbed liquid atoms were measured with respect to various binding strengths. It is found that binding strength has an important role in forming the absorption layers that reduces the temperature jump and enhances the heat transfer performance.

Related Topics
Physical Sciences and Engineering Engineering Computational Mechanics
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