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Modelling mass transfer in liquid-liquid slug flow in a microchannel

机译:微通道液 - 液体块流中的造型传质

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Liquid-liquid slug flow regime is characterised by the presence of strong internal circulation which enhances mass transfer. In this work, we develop a mathematical model for conjugate mass transfer in the liquid-liquid slug flow regime in a microchannel. A Lagrangian approach is adopted where the behaviour of a unit cell in the channel is analysed in a moving reference frame. The system is analysed for two cases when (I) the slug is in direct contact with the channel wall and (II) there is a thin film of continuous fluid surrounding the slug. A novel contribution of this work is the extension of the stream function formulation to determine the flow structures in multiply connected domains made up of two liquids in a pressure driven flow. The primary objective of the work is to understand the influence of the flow patterns (which is determined by fluid properties and operating conditions) on the mass transfer of a solute from the slug to the continuous phase. Towards this, the species transport equation is solved numerically using the velocity field obtained. The reliability of the model developed is validated with experiments reported in the literature. This study gives us insights on the influence of the film on the hydrodynamics and its contribution to mass transfer. A key finding of this study is that the rate of mass transfer can be enhanced if the continuous phase has higher viscosity than the slug phase.
机译:液体液体块流动状态的特征在于存在强大的内循环,其增强了传质。在这项工作中,我们在微通道中的液体液体块流动状态中开发了一种用于缀合物的缀合物的数学模型。采用拉格朗日方法,其中在移动参考帧中分析信道中的单位单元的行为。当(i)块与通道壁直接接触时,分析了两个情况的两个情况,并且(ii)存在薄膜围绕块的连续流体薄膜。这项工作的新贡献是流函数配方的延伸,以确定由压力驱动流动的两个液体组成的乘以连接结构域中的流动结构。该工作的主要目的是了解流动模式(通过流体性质和操作条件确定的影响)对来自溶液的溶质到连续相的溶质的传质。朝向此,使用所获得的速度场在数值上进行数字传输方程。开发的模型的可靠性通过文献中报道的实验验证。本研究为我们提供了对薄膜对流体动力学的影响及其对传质的影响。本研究的一个关键发现是,如果连续相比粘度高于粘合阶段,可以提高质量传递速率。

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