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首页> 外文期刊>Journal of Molecular Liquids >Computation of some thermodynamics, transport, structural properties, and new equation of state for fluid methane using two-body and three-body intermolecular potentials from molecular dynamics simulation
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Computation of some thermodynamics, transport, structural properties, and new equation of state for fluid methane using two-body and three-body intermolecular potentials from molecular dynamics simulation

机译:利用分子动力学模拟中的两体和三体分子间电势计算流体甲烷的一些热力学,输运,结构性质和新的状态方程

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摘要

Molecular dynamics simulation has been performed to obtain pressure, radial distribution function, and self-diffusion coefficient of fluid methane using one site OPLS (optimized potentials for liquid simulations), five sites OPLS-SITE, and two-body HFD (Hartree-Fock dispersion)-like potentials. To take higher-body forces into account, three-body potential of Hauschild and Prausnitz (1993) has been used with the two-body HFD-like potential. The significance of this work is that the three-body potential of Hauschild and Prausnitz extended as a function of density and temperature and used with the HFD-like potential to improve the prediction of the results of pressure of fluid methane without requiring an expensive three-body calculation. The molecular dynamics simulation of methane has been also used to determine a new equation of state. The results are in a good agreement with experimental and theoretical values.
机译:使用一个位置的OPLS(液体模拟的最佳电位),五个位置的OPLS-SITE和两体HFD(Hartree-Fock扩散)进行了分子动力学模拟,以获取压力,径向分布函数和甲烷的自扩散系数。 )的潜力。为了考虑高体力,Hauschild and Prausnitz(1993)的三体势已与类似HFD的两体势一起使用。这项工作的意义在于,豪斯柴尔德和普劳斯尼茨的三体电势随着密度和温度的变化而扩展,并与类似HFD的电势一起使用,以改进对液态甲烷压力结果的预测,而无需使用昂贵的三气态。身体计算。甲烷的分子动力学模拟也已用于确定新的状态方程。结果与实验和理论值良好吻合。

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