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首页> 外文期刊>Journal of Mathematical Chemistry >Calculating the surface tension between a flat solid and a liquid: a theoretical and computer simulation study of three topologically different methods
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Calculating the surface tension between a flat solid and a liquid: a theoretical and computer simulation study of three topologically different methods

机译:计算扁平固体和液体之间的表面张力:三种拓扑不同方法的理论和计算机模拟研究

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摘要

We discuss three topologically different methods for calculating the surface tension between a flat solid and a liquid from theoretical and computer simulation viewpoints. The first method, commonly used in experiments, measures the contact angle at which a static droplet of liquid rests on a solid surface. We present a new analysis algorithm for this method and explore the effects of line tension on the contact angle. The second method, commonly used computer simulations, uses the pressure tensor through the virial in a system where a thick, infinitely extended slab of liquid rests on a solid surface. The third method, which is original to this paper and is closest to the thermodynamic definition of surface tension, applies to a spherical solid in contact with liquid in which the flat solid is recovered by extrapolating the sphere radius to infinity. We find that the second and third methods agree with each other, while the first method systematically underestimates surface tension values.
机译:我们从理论和计算机仿真的角度讨论了三种用于计算平面固体和液体之间的表面张力的拓扑方法。实验中常用的第一种方法是测量静态液滴在固体表面上停留的接触角。我们为这种方法提出了一种新的分析算法,并探讨了线张力对接触角的影响。第二种方法是常用的计算机模拟,它在整个系统中使用通过张量的压力张量,在该系统中,厚厚的,无限延伸的液体平板位于固体表面上。第三种方法是本文的独创方法,最接近于表面张力的热力学定义,它适用于与液体接触的球形固体,其中通过将球体半径外推到无穷大来回收扁平固体。我们发现第二种方法和第三种方法彼此一致,而第一种方法系统地低估了表面张力值。

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