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Micro-droplet formation in non-Newtonian fluid in a microchannel

机译:微通道内非牛顿流体中的微滴形成

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Micro-droplet formation from an aperture with a diameter of micrometers is numerically investigated under the cross-flow conditions of an experimental microchannel emulsification process. The process involves dispersing an oil phase into continuous phase fluid through a microchannel wall made of apertured substrate. Cross-flow in the microchannel is of non-Newtonian nature, which is included in the simulations. Micro-droplets of diameter 0.76-30 μm are obtained from the simulations for the apertures of diameter 0.1-10.0 μm. The simulation results show that rheology of the bulk liquid flow greatly affects the formation and size of droplets and that dispersed micro-droplets are formed by two different breakup mechanisms: in dripping regime and in jetting regime characterized by capillary number Ca. Relations between droplet size, aperture opening size, interfacial tension, bulk flow rheology, and disperse phase flow rate are discussed based on the simulation and the experimental results. Data and models from literature on membrane emulsification and T-junction droplet formation processes are discussed and compared with the present results. Detailed force balance models are discussed. Scaling factor for predicting droplet size is suggested.
机译:在实验微通道乳化过程的错流条件下,对直径为微米的孔的微滴形成进行了数值研究。该方法涉及通过由带孔的基材制成的微通道壁将油相分散到连续相流体中。微通道中的错流是非牛顿性的,包括在模拟中。从直径为0.1-10.0μm的孔的模拟中获得了直径为0.76-30μm的微滴。模拟结果表明,整体液体流的流变性极大地影响了液滴的形成和大小,并且分散的微滴是由两种不同的破碎机理形成的:在滴注状态下和在以毛细管数Ca为特征的喷射状态下。在模拟和实验结果的基础上,讨论了液滴尺寸,孔径尺寸,界面张力,整体流变学和分散相流速之间的关系。讨论了有关膜乳化和T型结液滴形成过程的文献数据和模型,并将其与当前结果进行了比较。讨论了详细的力平衡模型。建议使用比例因子来预测液滴大小。

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