Phase-Field Model-Based Simulation of Motions of a Two-Phase Fluid on Solid Surface

N. Takada, J. Matsumoto, S. Matsumoto
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引用次数: 22

Abstract

A preliminary numerical simulation of the microscopic two-phase fluid motion on a solid surface was conducted using an interface-tracking method based on the phase-field model (PFM). Two variations of the lattice Boltzmann method (LBM) based on fictitious particle kinematics are proposed for solving diffuse-interface advection equations which were revised to improve volume-of-fluid conservation in the PFM simulations. The major findings are as follows: (1) the interface-tracking method accurately predicted the capillary force effect on dynamic two-phase fluid systems with a high density ratio between parallel plates; (2) the initial shape and volume of the two-phase fluid were retained adequately in linear translation with the use of the LBMs. These results proved that the PFM-based method and the LBM-based advection schemes can be used for simulating two-phase fluid motions in various macroand microfluidics problems for devices, machineries and higher-throughput microdevice fabrication processes.
基于相场模型的两相流体在固体表面上的运动仿真
采用基于相场模型(PFM)的界面跟踪方法,对固体表面微观两相流体运动进行了初步数值模拟。提出了基于虚拟粒子运动学的晶格玻尔兹曼方法的两种变体,用于求解扩散界面平流方程,并对其进行了修正,以提高PFM模拟中的流体体积守恒性。主要研究结果如下:(1)界面跟踪方法准确预测了平行板间高密度比动态两相流体体系的毛细力效应;(2)使用lbm时,两相流体的初始形状和体积在线性平移中得到充分保留。这些结果证明,基于pfm的方法和基于lbm的平流方案可以用于模拟器件、机械和高通量微器件制造过程中各种宏观和微流体问题中的两相流体运动。
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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