首页> 外文期刊>The Journal of Chemical Physics >THREE-BODY INTERACTIONS IN FLUIDS FROM MOLECULAR SIMULATION - VAPOR-LIQUID PHASE COEXISTENCE OF ARGON
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THREE-BODY INTERACTIONS IN FLUIDS FROM MOLECULAR SIMULATION - VAPOR-LIQUID PHASE COEXISTENCE OF ARGON

机译:分子模拟-氩气-液相共存中流体的三体相互作用

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Gibbs-ensemble molecular simulations are reported for the vapor-liquid phase coexistence of argon using the two-body Lennard-Jones potential. During the simulation, the possible effect of three-body interactions on the pressure and configurational energy of the vapor and liquid phases is estimated by performing calculations with three-body potentials. The intermolecular potentials used for the three-body calculations incorporate the influence of both three-body-dispersion and three-body-repulsion interactions. The results show that three-body repulsion makes a significant contribution to three-body interactions in the liquid phase. The effect of three-body dispersion is offset substantially by three-body repulsion. (C) 1996 American Institute of Physics. [References: 16]
机译:据报道,使用两体Lennard-Jones势能对氩气-液相共存进行了吉布斯-整体分子模拟。在模拟过程中,通过使用三体电位进行计算,可以估算出三体相互作用对气相和液相的压力和构型能量的可能影响。用于三体计算的分子间电势包含了三体分散和三体排斥相互作用的影响。结果表明,三体排斥力对液相中的三体相互作用做出了重要贡献。三体分散的作用基本上被三体排斥抵消了。 (C)1996年美国物理研究所。 [参考:16]

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