冷凝
蒸发
材料科学
热力学
边值问题
动能
分布函数
玻尔兹曼常数
边界(拓扑)
热流密度
机械
物理
经典力学
传热
数学分析
量子力学
数学
作者
Tatsuya Ishiyama,Takeru Yano,Shigeo FUJIKAWA
标识
DOI:10.1103/physrevlett.95.084504
摘要
By molecular dynamics simulations, the boundary condition for the Boltzmann equation at a vapor-liquid interface is found to be the product of three one-dimensional Maxwellian distributions for the three velocity components of vapor molecules and a factor including a well-defined condensation coefficient. The Maxwellian distribution for the velocity component normal to the interface is characterized by the liquid temperature, as in a conventional model boundary condition, while those for the tangential components are prescribed by a different temperature, which is a linear function of energy flux across the interface. The condensation coefficient is found to be constant and equal to the evaporation coefficient determined by the liquid temperature only.
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