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Numerical studies of double emulsions in a coaxial flow-focusing microfluidic device

机译:同轴流动聚焦微流体装置中双乳液的数值研究

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A simplified two dimensional coaxial flow-focusing geometry model was developed for computation domain, and then a volume of fluid based on continuum surface force model was carried out to study the influence of flow parameters on the droplet formation in a coaxial flow-focusing microfluidic device. The effects of flow rates, viscosities and the surface tensions of the three phases which are called the outer fluid, middle fluid and inner fluid on the size and morphology of the droplets were investigated. The results reveal that if the velocity and viscosity of the outer fluid are increased, the sizes of outer and inner droplets become smaller. By increasing the velocity of the middle fluid, the outer droplets become bigger, while the inner droplet size decreases. As the velocity of inner fluid increases, more inner fluid is injected, which leads to an increment with both outer and inner droplet size. Both of the outer and inner droplet sizes become bigger as the outer surface tension coefficients increase, and for the same reason, the increment with the outer surface tension result in an increase with the outer droplet size, but has no effect on the inner droplet size. Similarly, the droplets morphology almost does not vary with the viscosity of both middle and inner fluid. In fact, the principles revealed above are related with the interaction between the viscosity shear stress and the surface tension.
机译:开发了一种简化的二维同轴流量聚焦几何模型,用于计算域,然后进行了基于连续表面力模型的一体积流体,以研究流动参数对同轴流动聚焦微流体装置的液滴形成的影响。研究了流动速率,粘度和表面张力的影响,所述三相称为外部流体,中间流体和内部流体对液滴的尺寸和形貌的影响。结果表明,如果外部流体的速度和粘度增加,外部和内液滴的尺寸变小。通过增加中间流体的速度,外液滴变得更大,而内液滴尺寸减小。随着内部流体的速度增加,注入更多内流体,这导致外部和内液滴尺寸的增量。由于外表面张力系数增加,两个外部和内液滴尺寸变得更大,并且出于同样的原因,具有外表面张力的增量导致外液滴尺寸的增加,但对内液滴尺寸没有影响。同样,液滴形态几乎不随来自中间流体和内部流体的粘度而变化。实际上,上面揭示的原理与粘度剪切应力和表面张力之间的相互作用有关。

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