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首页> 外文期刊>The Journal of Chemical Physics >Vapor-liquid equilibria of square-well spheres
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Vapor-liquid equilibria of square-well spheres

机译:方阱球体的汽液平衡

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Research of molecular dynamics (MD) simulations on square-well fluids with #lambda# = 1.25, 1.375, 1.5, 1.75, and 2.0 are presented. The calculation of vapor-liquid equilibrium was performed by isochoric integration of the liquid NVE data to obtain the free energy of the liquid and equating this to the vapor free energy from a modified virial equation. The saturation pressure was investigated and compared with that from Monte Carlo simulation and second-order analytical perturbation theory. The vapor pressures from the isochoric integration technique are shown to be smoother than previous results, permitting accurate estimation of the effect of the square-well width on acentric factor. With the saturated properties from molecular dynamics, the f value used in Kofke's Gibbs-Duhem integration was calculated and was found to be nearly constant. The related integration of the Clapeyron equation was implemented as a check on thermodynamic consistency. Vapor pressures presented here are consistent to within 2%.
机译:提出了在#lambda#= 1.25、1.375、1.5、1.75和2.0的方孔流体上进行分子动力学(MD)模拟的研究。气液平衡的计算是通过对液体NVE数据进行等时积分获得的,从而获得了液体的自由能,并将其等于修正的病毒方程式中的蒸汽自由能。对饱和压力进行了研究,并将其与蒙特卡罗模拟和二阶解析扰动理论的饱和压力进行了比较。已证明,等速积分技术产生的蒸气压比以前的结果更平滑,从而可以准确估计方孔宽度对无心率因素的影响。利用分子动力学的饱和特性,计算出了科夫克的Gibbs-Duhem积分中使用的f值,发现该值几乎恒定。 Clapeyron方程的相关积分用于检查热力学一致性。此处显示的蒸气压在2%以内。

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