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STUDY OF RING FILM FORMATION AND MOTION IN GAS-LIQUID TWO-PHASE FLOW IN A MICROCHANNEL

机译:微通道中气液两相流中环膜的形成和运动的研究

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Gas-liquid two-phase flow in minichannels and microchannels display a unique flow pattern called ring film flow, in which stable waves of relatively large amplitudes appear at seemingly regular intervals and propagate in the flow direction. In this work, the behavior of ring films has been investigated experimentally in a 150 μm diameter silica tube experimentally to elucidate their generation mechanism and propagation behavior. High speed video images were taken at 6,000 frames per second and the formation of ring films and the relationship between the wave amplitude and velocity were determined. The results indicate an interfacial instability leading to the formation and growth of ring waves with both low and high wave amplitudes. The wave velocity is correlated to the wave amplitude with the large amplitude waves moving much faster than the low amplitude waves. As a result, coalescence of large and low amplitude waves has been observed.
机译:微型通道和微通道中的气液两相流显示出一种独特的流动模式,称为环膜流动,其中较大振幅的稳定波以看似规则的间隔出现并沿流动方向传播。在这项工作中,已经在直径150μm的硅胶管中对环形薄膜的行为进行了实验研究,以阐明其生成机理和传播行为。以每秒6,000帧的速度拍摄高速视频图像,并确定环膜的形成以及波幅与速度之间的关系。结果表明界面不稳定性会导致高低振幅的环形波的形成和增长。波速与波振幅相关,大振幅波比低振幅波移动得快得多。结果,已经观察到大振幅波和低振幅波的合并。

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