Publication Cover
Numerical Heat Transfer, Part A: Applications
An International Journal of Computation and Methodology
Volume 16, 1989 - Issue 2
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Original Articles

NUMERICAL ANALYSIS OF NATURAL CONVECTION IN LIQUID DROPLETS BY PHASE CHANGE

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Pages 129-154 | Received 15 Nov 1988, Accepted 14 Mar 1989, Published online: 27 Apr 2007
 

Abstract

A numerical analysis is performed on thermocapillary buoyancy convection induced by phase change in a liquid droplet. A finite-difference code is developed using an alternating-direction implicit (ADI) scheme. The intercoupling relation between thermocapillary force, buoyancy force, fluid property, heat transfer, and phase change, along with their effects on the induced flow patterns, are disclosed. The flow is classified into three types: thermocapillary, buoyancy, and combined convection. Among the three mechanisms, the combined convection simulates the experimental observations quite well, and the basic mechanism of the observed convection inside evaporating sessile drops is thus identified. It is disclosed that evaporation initiates unstable convection, while condensation always brings about a stable density distribution which eventually damps out all fluid disturbances. Another numerical model is presented to study the effect of boundary recession due to evaporation, and the “peeling-off” effect (the removal of the surface layer of fluid by evaporation) is shown to be relevant.

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