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Mesoscopic model for binary fluids

机译:二元流体的介观模型

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摘要

We propose a model for studying binary fluids based on the mesoscopic molecular simulation technique known as multiparticle collision, where the space and state variables are continuous, and time is discrete. We include a repulsion rule to simulate segregation processes that does not require calculation of the interaction forces between particles, so binary fluids can be described on a mesoscopic scale. The model is conceptually simple and computationally efficient; it maintains Galilean invariance and conserves the mass and energy in the system at the micro- and macro-scale, whereas momentum is conserved globally. For a wide range of temperatures and densities, the model yields results in good agreement with the known properties of binary fluids, such as the density profile, interface width, phase separation, and phase growth. We also apply the model to the study of binary fluids in crowded environments with consistent results.
机译:我们提出了一种基于介观分子模拟技术(称为多粒子碰撞)的用于研究二元流体的模型,其中空间和状态变量是连续的,时间是离散的。我们提供了一个排斥规则来模拟分离过程,该过程不需要计算粒子之间的相互作用力,因此可以在介观尺度上描述二元流体。该模型在概念上简单且计算效率高;它在微观和宏观尺度上保持伽利略不变性,并在系统中保留质量和能量,而在全球范围内则保持动量。对于宽范围的温度和密度,该模型得出的结果与二元流体的已知特性(例如密度分布,界面宽度,相分离和相生长)具有很好的一致性。我们还将模型应用于拥挤环境中的二元流体研究,并获得一致的结果。

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