Title of article
Molecular dynamics simulations of droplet evaporation Original Research Article
Author/Authors
Lyle N. Long، نويسنده , , Michael M. Micci، نويسنده , , Brian C. Wong، نويسنده ,
Issue Information
دوهفته نامه با شماره پیاپی سال 1996
Pages
6
From page
167
To page
172
Abstract
The complete evaporation of a three-dimensional submicron droplet under subcritical conditions has been modeled using molecular dynamics. The two-phase system consisted of 2048 argon atoms modeled using a Lennard-Jones 12-6 potential distributed between a single droplet and its surrounding vapor. The system was first allowed to relax to equilibrium, then the droplet was evaporated by increasing the temperature of the vapor phase atoms at the boundaries of the system until only the vapor phase remained. The computed evaporation rate agrees with that predicted by the Knudsen aerosol theory.
Keywords
molecular dynamics , Droplet , Evaporation
Journal title
Computer Physics Communications
Serial Year
1996
Journal title
Computer Physics Communications
Record number
1134072
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