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米氏(14,7)流体热力学和结构性质的蒙特卡罗模拟。

Monte Carlo simulations of thermodynamic and structural properties of Mie(14,7) fluids.

作者信息

Nasrabad Afshin Eskandari

机构信息

Department of Physical Chemistry, School of Chemistry, University of Tehran, Tehran, Iran.

出版信息

J Chem Phys. 2008 Apr 21;128(15):154514. doi: 10.1063/1.2901164.

Abstract

The vapor-liquid phase envelope of Mie(14,7) fluids is determined by the Gibbs ensemble Monte Carlo (MC) simulation technique. The NVT-MC simulation method is then utilized to compute the equation of state and the pair correlation function over a wide range of densities and temperatures. The effective diameters are calculated via the virial minimization method and the results are applied as the repulsion-attraction splitting distance within the generic van der Waals (GvdW) theory to compute the mean free volume. The density and temperature dependence of these parameters are studied and discussed. The results for the effective diameter, and the GvdW parameters are fitted to analytical functions of density and temperature. An examination of the results for the fluid phase equilibria of argon shows excellent agreement with empirical data for the densities of the coexisting phases, the vapor pressure, and the critical point. The computed free volumes are used to compute the diffusion coefficient of argon and the results are compared with experimental data.

摘要

通过吉布斯系综蒙特卡罗(MC)模拟技术确定了Mie(14,7)流体的气液相平衡包络线。然后利用NVT-MC模拟方法在广泛的密度和温度范围内计算状态方程和对关联函数。通过维里最小化方法计算有效直径,并将结果用作通用范德华(GvdW)理论中的排斥-吸引分裂距离来计算平均自由体积。研究并讨论了这些参数的密度和温度依赖性。将有效直径和GvdW参数的结果拟合为密度和温度的解析函数。对氩气的流体相平衡结果进行检验,结果表明其与共存相密度、蒸气压和临界点的实验数据具有极好的一致性。计算得到的自由体积用于计算氩气的扩散系数,并将结果与实验数据进行比较。

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