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Amadeus project and microscopic simulation of boiling two-phase flow by the lattice-Boltzmann method

机译:Amadeus投影和沸腾两相流微观模拟的晶格-玻尔兹曼方法

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摘要

A two-dimensional lattice-Boltzmann model with a hexagonal lattice is developed to simulate a boiling two-phase flow microscopically. Liquid-gas phase transition and bubble dynamics, including bubble formation, growth and deformation, are modeled by using an interparticle potential based on the van der Waals equation of state. Thermohydrodynamics is incorporated into the model by adding extra velocities to define temperature. The lattice-Boltzmann model is solved by a finite difference scheme so that numerical stability can be ensured at large discontinuity across the liquid-gas phase boundary and the narrow phase interface thickness can be attained. It is shown from numerical simulations that the model has the ability to reproduce phase transition, bubble dynamics and thermohydrodynamics while assuring numerical instability and narrow phase interface.
机译:建立了具有六边形晶格的二维晶格-玻尔兹曼模型,以微观模拟沸腾两相流。通过使用基于范德华状态方程的粒子间电势,对液相-气相转变和气泡动力学(包括气泡形成,生长和变形)进行建模。通过增加额外的速度来定义温度,将热流体动力学合并到模型中。通过有限差分方案求解晶格-玻尔兹曼模型,从而可以确保在液-气相边界上的较大不连续性处的数值稳定性,并且可以获得较窄的相界面厚度。从数值模拟表明,该模型具有再现相变,气泡动力学和热流体动力学的能力,同时确保了数值不稳定和窄相界面。

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