Interparticle interactions between water molecules

M. Yasutomi
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引用次数: 3

Abstract

We determined many functional representations of interparticle interactions between water molecules, all of which reproduce the experimentally measured density-temperature relation at 1 bar with an accuracy better than obtained by previous models. Numerous similar descriptions of pair interactions will be discovered increasingly in the coming years, which will help us to understand why solid water has polymorphic structures and why liquid water has a large number of anomalies. We used a self-consistent Ornstein-Zernike approximation (SCOZA) with a potential given by multi-Yukawa terms. Because any smooth potential function can be fitted by multi-Yukawa terms, the method can be applied to various types of fluids. We also present a new simple fitting technique that makes the application of the SCOZA to any type of liquid much easier compared to a conventional Yukawa fit. Our new SCOZA fitting technique is among the most useful methods for determining the pair interaction between molecules of any liquid, and the potential will be helpful in improving realistic models.
水分子之间的粒子间相互作用
我们确定了水分子之间粒子间相互作用的许多功能表征,所有这些表征都再现了实验测量的密度-温度关系,其精度优于以前的模型。在未来的几年里,将会发现越来越多的类似的对相互作用的描述,这将有助于我们理解为什么固体水具有多态结构,为什么液态水具有大量的异常。我们使用了一个由多汤川项给出的势的自洽Ornstein-Zernike近似(SCOZA)。由于任何光滑势函数都可以用多汤川项拟合,因此该方法可以应用于各种类型的流体。我们还提出了一种新的简单的装配技术,与传统的Yukawa装配相比,使SCOZA更容易应用于任何类型的液体。我们的新SCOZA拟合技术是确定任何液体分子之间对相互作用的最有用的方法之一,并且有可能有助于改进现实模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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