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二维奔驰水的相图和渗流线的液相部分。

Liquid part of the phase diagram and percolation line for two-dimensional Mercedes-Benz water.

机构信息

Faculty of Chemistry and Chemical Technology, University of Ljubljana, Vecna Pot 113, 1000 Ljubljana, Slovenia.

出版信息

Phys Rev E. 2017 Sep;96(3-1):032122. doi: 10.1103/PhysRevE.96.032122. Epub 2017 Sep 15.

Abstract

Monte Carlo simulations and Wertheim's thermodynamic perturbation theory (TPT) are used to predict the phase diagram and percolation curve for the simple two-dimensional Mercedes-Benz (MB) model of water. The MB model of water is quite popular for explaining water properties, but the phase diagram has not been reported till now. In the MB model, water molecules are modeled as two-dimensional Lennard-Jones disks, with three orientation-dependent hydrogen-bonding arms, arranged as in the MB logo. The liquid part of the phase space is explored using grand canonical Monte Carlo simulations and two versions of Wertheim's TPT for associative fluids, which have been used before to predict the properties of the simple MB model. We find that the theory reproduces well the physical properties of hot water but is less successful at capturing the more structured hydrogen bonding that occurs in cold water. In addition to reporting the phase diagram and percolation curve of the model, it is shown that the improved TPT predicts the phase diagram rather well, while the standard one predicts a phase transition at lower temperatures. For the percolation line, both versions have problems predicting the correct position of the line at high temperatures.

摘要

蒙特卡罗模拟和 Wertheim 的热力学摄动理论(TPT)被用于预测简单二维奔驰(MB)模型水的相图和渗流曲线。MB 模型水非常流行,用于解释水的性质,但到目前为止还没有报道相图。在 MB 模型中,水分子被建模为二维 Lennard-Jones 圆盘,带有三个依赖于取向的氢键臂,排列方式与 MB 徽标相同。使用巨正则蒙特卡罗模拟和 Wertheim 的两种关联流体 TPT 版本来探索相空间的液相,这两种版本以前曾用于预测简单 MB 模型的性质。我们发现该理论很好地再现了热水的物理性质,但在捕捉冷水时发生的更结构化的氢键方面不太成功。除了报告模型的相图和渗流曲线外,还表明改进的 TPT 很好地预测了相图,而标准 TPT 则预测了较低温度下的相变。对于渗流线,两种版本都存在在高温下预测线正确位置的问题。

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