首页> 外文会议>ASME Fluids Engineering Division summer conference;FEDSM2009 >CFD MODELING OF TWO-PHASE GAS-LIQUID SLUG FLOW USING VOF METHOD IN MICROCHANNELS
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CFD MODELING OF TWO-PHASE GAS-LIQUID SLUG FLOW USING VOF METHOD IN MICROCHANNELS

机译:微通道中VOF法研究气液两相流的CFD模型

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摘要

Despite of the fact that numerical simulation of two-phase flows in microchannels has been attempted by many investigators, most efforts seem to have failed in correctly capturing the flow physics, especially the slug flow regime characteristics. The presence of a thin liquid film in the order of 10 μm around the bubble (sometimes called gas pocket or gas slug) may be a contributing factor to the above difficulty. Typically, liquid films have a significant effect on the flow field. Thus, there is a strong motivation to employ numerical simulation methods in order to avoid some of the experimental difficulties. In this paper, the characteristics of two-phase slug flows in microchannels are calculated with the help of the Volume-of-Fluid (VOF) method. Formation of the slugs for different superficial velocities, Capillary numbers, and gas volume fractions are investigated. The minimum mesh resolution required to capture the liquid film surrounding the gas bubble is reported employing a dynamic mesh adaption methodology with interface tracking. Results are shown to be in good agreement with experimental data and empirical correlations.
机译:尽管许多研究人员已尝试对微通道中的两相流进行数值模拟,但大多数努力似乎都未能正确地捕获流动物理特性,尤其是弹状流态特性。气泡周围(有时称为气穴或气团)约10μm的薄膜状液膜的存在可能是导致上述困难的一个因素。通常,液膜对流场具有重大影响。因此,强烈希望采用数值模拟方法来避免一些实验困难。本文利用流体体积(VOF)方法计算了微通道中两相段塞流的特征。研究了不同表观速度,毛细管数和气体体积分数下的团状形成。使用带有界面跟踪的动态网格自适应方法,报告了捕获气泡周围液膜所需的最小网格分辨率。结果显示与实验数据和经验相关性很好。

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