Fatehifar Maryam, Revell Alistair, Jabbari Masoud
Department of Mechanical, Aerospace and Civil Engineering, The University of Manchester, Manchester M13 9PL, UK.
Polymers (Basel). 2021 Jun 9;13(12):1915. doi: 10.3390/polym13121915.
A two-dimensional CFD model based on volume-of-fluid (VOF) is introduced to examine droplet generation in a cross-junction microfluidic using an open-source software, together with an solver. Non-Newtonian power-law droplets in Newtonian liquid is numerically studied and its effect on droplet size and detachment time in three different regimes, i.e., squeezing, dripping and jetting, are investigated. To understand the droplet formation mechanism, the shear-thinning behaviour was enhanced by increasing the polymer concentrations in the dispersed phase. It is observed that by choosing a shear-dependent fluid, droplet size decreases compared to Newtonian fluids while detachment time increases due to higher apparent viscosity. Moreover, the rheological parameters- and in the power-law model-impose a considerable effect on the droplet size and detachment time, especially in the dripping and jetting regimes. Those parameters also have the potential to change the formation regime if the capillary number (Ca) is high enough. This work extends the understanding of non-Newtonian droplet formation in microfluidics to control the droplet characteristics in applications involving shear-thinning polymeric solutions.
引入了基于流体体积(VOF)的二维计算流体动力学(CFD)模型,以使用开源软件和求解器来研究交叉连接微流体中的液滴生成。对牛顿液体中的非牛顿幂律液滴进行了数值研究,并研究了其在三种不同状态(即挤压、滴落和喷射)下对液滴尺寸和脱离时间的影响。为了理解液滴形成机制,通过增加分散相中聚合物的浓度来增强剪切变稀行为。观察到,通过选择剪切依赖型流体,与牛顿流体相比,液滴尺寸减小,而由于表观粘度较高,脱离时间增加。此外,幂律模型中的流变参数 和 对液滴尺寸和脱离时间有相当大的影响,特别是在滴落和喷射状态下。如果毛细管数(Ca)足够高,这些参数也有可能改变形成状态。这项工作扩展了对微流体中非牛顿液滴形成的理解,以在涉及剪切变稀聚合物溶液的应用中控制液滴特性。