首页> 外文会议>International conference on nanochannels, microchannels and minichannels;ICNMM2009 >BUBBLE DYNAMICS AND PRESSURE DROP OF A SINGLE BUBBLE IN A RECTANGULAR MICROCHANNEL
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BUBBLE DYNAMICS AND PRESSURE DROP OF A SINGLE BUBBLE IN A RECTANGULAR MICROCHANNEL

机译:矩形微通道中单个气泡的气泡动力学和压降

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摘要

Most correlations of pressure drop in microchannel have been developed based on modifying of C-value in Lockhart and Martinelli's correlation for various flow regimes. However, the pressure drop is highly related with flow pattern. And the elongated bubble flow is major flow regime in microchannel. To study behaviors and pressure drop of bubble flow regime in microchannel, a glass rectangular microchannel was fabricated using a photosensitive glass. Experiments of adiabatic two-phase flow in rectangular microchannels were conducted with hydraulic diameters of 503 and 322 μm. Moreover, the visualization of bubble flow patterns was achieved with a highspeed camera and a long-distance microscope. The bubble velocity, lengths of liquid slug and bubble and void fraction were evaluated based on a unit cell model using image processing. The pressure drop of single bubble in a rectangular microchannel was extracted from measured total pressure drop. Especially, pressure drop correlation of a single elongated bubble was achieved for Capillary number and diameter.
机译:微通道中压降的大多数相关性是根据Lockhart中C值的修改和马丁内利针对各种流动状态的相关性开发的。但是,压降与流型高度相关。而细长的气泡流动是微通道中的主要流动形式。为了研究微通道中气泡流动状态的行为和压降,使用光敏玻璃制造了矩形的玻璃微通道。在水力直径为503和322μm的矩形微通道中进行绝热两相流实验。此外,使用高速相机和长距离显微镜可以实现气泡流动模式的可视化。使用图像处理,基于晶胞模型评估气泡速度,液塞的长度以及气泡和空隙率。从测量的总压降中提取矩形微通道中单个气泡的压降。特别地,对于毛细管数目和直径,实现了单个细长气泡的压降相关性。

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