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Molecular dynamics simulation of the liquid-vapor interface: Binary mixtures of Lennard-Jones fluids

机译:液-气界面的分子动力学模拟:Lennard-Jones流体的二元混合物

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We have performed molecular dynamics simulations to study structure and equilibrium properties of liquid-vapor interfaces of binary mixtures containing argon and methane over the entire range of compositions. The phase equilibrium data obtained from our simulations are compared with those from NpT + test particle calculations of an analogous system. Values of the surface tension were computed and extrapolated to the full Lennard-Jones potential using a new ansatz to determine tail contributions to the surface tension directly within the simulation run. This new method uses the actual partial density profiles obtained within the simulation and, therefore, does not require any prescribed functional form. From both the surface tension results and the partial density profiles the relative enrichment of argon at the interface was estimated.
机译:我们已经进行了分子动力学模拟,以研究在整个组成范围内含氩和甲烷的二元混合物的液-气界面的结构和平衡特性。从我们的模拟获得的相平衡数据与类似系统的NpT +测试粒子计算得到的相平衡数据进行了比较。计算表面张力的值,并使用新的ansatz外推到整个Lennard-Jones势,以确定直接在模拟过程中尾部对表面张力的贡献。这种新方法使用了在模拟中获得的实际部分密度分布,因此不需要任何规定的功能形式。根据表面张力结果和部分密度分布图,可以估算界面处氩气的相对富集程度。

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