作者
Fei Duan, CA Ward
发表日期
2005/11
期刊
Physical Review E—Statistical, Nonlinear, and Soft Matter Physics
卷号
72
期号
5
页码范围
056302
出版商
American Physical Society
简介
When water evaporates at high rates, recent studies indicate thermal conduction to the interface does not provide enough energy to evaporate water at the observed rate and that it is perhaps thermocapillary convection that transports the remaining energy. This possibility is examined by applying the Gibbs dividing-surface approximation to develop an expression for the energy transported along the interface. When this energy transport rate is compared with that required to evaporate the liquid at the observed rate, it is found that a Gibbs excess property, the “surface-thermal capacity,” can be evaluated. A series of 19 evaporation experiments has been conducted under conditions for which there was no buoyancy-driven convection and for which the evaporation rate was progressively increased. For Marangoni numbers, (Ma) less than , the interface was quiescent and thermal conduction (the Stefan condition) correctly …
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