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首页> 外文期刊>Journal of industrial and engineering chemistry >Formation characteristics of Taylor bubbles in power-law liquids flowing through a microfluidic co-flow device
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Formation characteristics of Taylor bubbles in power-law liquids flowing through a microfluidic co-flow device

机译:流过微流体流动装置流动的泰勒泡沫的形成特征

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摘要

Formation and dynamics of Taylor bubble in power-law liquids flowing through a circular co-flow microchannel are numerically investigated using coupled level set and volume-of-fluid method. Aqueous solutions of polyacrylamide (PAAm) are used as power-law liquids. Influences of PAAm concentration, gas–liquid velocities, and surface tension on bubble characteristics are explored. Various mechanisms of bubble breakup are observed in different concentration of PAAm. Based on the bubble length with respect to the channel diameter, two different flow regimes are identified. Flow pattern maps are constructed based on inlet velocities, and scaling laws are proposed to estimate the bubble length.
机译:使用耦合水平设定和流体体积法测定流过圆形循环微通道的动力法液中的泰勒泡沫的形成和动力学。 聚丙烯酰胺(Paam)的水溶液用作电力法液体。 探讨了PAAM浓度,气液速度和表面张力对气泡特征的影响。 在不同浓度的Paam中观察到各种泡泡分解机制。 基于相对于通道直径的气泡长度,鉴定了两个不同的流动制度。 流动模式图是基于入口速度构建的,并且提出了缩放规律来估计气泡长度。

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