Confined motion of a long bubble through a power-law fluid

A. Nadim, A. Borhan
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Abstract

Understanding the movement of drops and bubbles in microchannels is increasingly important in the design and operation of microfluidic devices that involve two-phase flows. Thus, Bretherton’s analysis of the motion of long bubbles in tubes and the associated profile of the wetting film around it are relevant. In this work, steady motion of a long bubble through a cylindrical tube is revisited in the case where the wetting film between the bubble interface and the capillary wall is non-Newtonian and described by the power-law constitutive relation. Using the standard lubrication analysis, the equation for the thickness of the wetting film as a function of axial distance is derived and integrated to find the film thickness. The film thickness and pressure drop across the bubble are found to scale with the capillary number as Ca 2/3 , with a proportionality fac
长气泡在幂律流体中的受限运动
在涉及两相流的微流体装置的设计和操作中,了解微通道中液滴和气泡的运动变得越来越重要。因此,Bretherton对长气泡在管道中的运动及其周围湿润膜的相关剖面的分析是相关的。在这项工作中,在气泡界面和毛细管壁之间的润湿膜是非牛顿的情况下,用幂律本构关系描述了一个长气泡通过圆柱管的稳定运动。利用标准润滑分析,导出了湿膜厚度随轴向距离的函数方程,并进行积分求出了湿膜厚度。发现气泡上的膜厚和压降与毛细管数成正比,为Ca 2/3,呈正比关系
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