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Gas-Liquid Two-Phase Flow Regimes in Microchannels

机译:微通道中的气液两相流型

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摘要

Recent experimental data dealing with gas-liquid two-phase flow regimes and their transitions in microchannels with circular and near-circular cross-sections are reviewed and compared. It is shown that, for microchannels with hydraulic diameters close to 1 mm, the available data are in good agreement. These data are used as the basis for the development of a simple Weber number-based flow regime map that divides the entire flow map into four zones: a surface tension dominated zone including bubbly and plug flow patterns; an inertia dominated zone representing the annular flow regime; a dispersed/churn flow zone; and a transition zone that consists of other intermittent flow patterns. Comparison is also made with the limited available data representing channels with slightly larger hydraulic diameters or different cross-sectional geometries, and the effects of channel cross-sectional geometry and size are examined and discussed. The areas in need of further systematic experimental investigation are identified.
机译:回顾和比较了有关气液两相流态及其在具有圆形和近圆形横截面的微通道中的转变的最新实验数据。结果表明,对于水力直径接近1 mm的微通道,可用数据非常吻合。这些数据被用作开发基于Weber数的简单流态图的基础,该流态图将整个流图分为四个区域:以表面张力为主的区域,包括气泡和活塞流模式;代表环形流动状态的惯性主导区;分散/搅动的流动区;过渡区域由其他间歇流动模式组成。还比较了有限的可用数据,这些数据代表具有较大液压直径或不同横截面几何形状的通道,并研究和讨论了通道横截面几何形状和尺寸的影响。确定了需要进一步系统实验研究的领域。

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