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首页> 外文期刊>The Journal of Chemical Physics >Thermodynamic properties of van der Waals fluids from Monte Carlo simulations and perturbative Monte Carlo theory
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Thermodynamic properties of van der Waals fluids from Monte Carlo simulations and perturbative Monte Carlo theory

机译:基于蒙特卡洛模拟和微扰蒙特卡洛理论的范德华流体的热力学性质

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摘要

Computer simulations have been performed for fluids with van der Waals potential,that is,hard spheres with attractive inverse power tails,to determine the equation of state and the excess energy.On the other hand,the first-and second-order perturbative contributions to the energy and the zero-and first-order perturbative contributions to the compressibility factor have been determined too from Monte Carlo simulations performed on the reference hard-sphere system.The aim was to test the reliability of this "exact"perturbation theory.It has been found that the results obtained from the Monte Carlo perturbation theory for these two thermodynamic properties agree well with the direct Monte Carlo simulations.Moreover,it has been found that results from the Barker-Henderson [J.Chem.Phys.47,2856 (1967)]perturbation theory are in good agreement with those from the exact perturbation theory.
机译:已经对具有范德华势的流体(即具有有吸引力的逆幂尾的硬球体)进行了计算机模拟,以确定状态方程和多余的能量。另一方面,对流体的一阶和二阶扰动贡献还从参考硬球系统上进行的蒙特卡洛模拟确定了能量以及可压缩性因子的零阶和一阶微扰贡献。目的是测试这种“精确”微扰理论的可靠性。我们发现,从这两个热力学性质的蒙特卡洛摄动理论获得的结果与直接蒙特卡洛模拟非常吻合。此外,还发现了Barker-Henderson的结果[J.Chem.Phys.47,2856( 1967)]摄动理论与精确摄动理论的理论很好地吻合。

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