Title of article :
Nonequilibrium Molecular Dynamics Simulations of Coupled Heat and Mass Transport in Binary Fluid Mixtures in Pores
Author/Authors :
I. Wold and B. Hafskjold ، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 1999
Pages :
10
From page :
847
To page :
856
Abstract :
Molecular dynamics simulations were carried out tor a binary fluid mixture in a slit pore. The fluid was an argon-like Lennard-Jones/spline model. The pore wall was represeInted by the Steele model for a layered graphite structure. The pore had a heat source in one end and a heat sink in the other, resulting in a lateral temperature gradient, a Soret effect, and a thermal creep flow along the pore wall. Potential models with various depths were used to examine the effect of wetting and adsorption on the thermal creep flow. The main results were as follows, (a) A relatively strong creep flow was generated parallel to the wall by the temperature gradient. For strongly attracting fluid-wall potentials, the flow occurred from the cold to the hot end of the pore near the wall I except for the very narrow pore) and oppositely in the ceInter of the pore. For a purely repulsive potential, the flow was weak and mostly in the opposite direction, (b) The thermal diffusion coefficient was comparable to that in bulk tluid at the same overall density, except when the creep flow was strong, in which case the thermal diffusion was blurred by the convective mixing.
Keywords :
Surface Tension , Thermal creep , thermal diffusion. , slit pore , microporous , Nonequilibrium molecular dynamics
Journal title :
International Journal of Thermophysics
Serial Year :
1999
Journal title :
International Journal of Thermophysics
Record number :
426521
Link To Document :
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