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Effect of device geometry on droplet size in co-axial flow-focusing microfluidic droplet generation devices

机译:器件几何对共轴流聚焦微流体液滴生成装置液滴尺寸的影响

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摘要

The Co-axial Flow Focusing (CFF) technique is an established microfluidic method for the generation of microdroplets. It consists of a nozzle co-axially aligned in a (circular cross-section) channel with a downstream orifice. The continuous-phase (c-phase) fluid in the orifice is used to shear off droplets of the dispersed-phase (d-phase) fluid ejected from the nozzle. Circular cross-section CFF devices are preferred due to their simpler fluid hydrodynamics, but not studied extensively as compared to rectangular channels. Understanding the effect of various parameters such as the channel design and fluid properties in CFF requires the development of reliable computational models. In this paper, the effects of multiple local geometries on droplet formation in a microfluidic CFF device were investigated numerically with experimental validations. The geometries included the d-phase nozzle inner diameter, nozzle tip distance from the c-phase channel orifice, and the inner diameter and length of the flow-focusing orifice. Our model is able to successfully predict the effects of these geometrical parameters on the droplet size for a wide range of c-phase flow rates spanning both the dripping and the jetting flow regimes, with an error range of 3-6%. Based on the simulation results, the droplet size is strongly dependent on the c-phase flow rate and the sizes of both the dispensing nozzle and the flow-focusing orifice. The effects of nozzle-to-orifice distance and the length of the orifice on the droplet size were not as pronounced in the range of the simulated c-phase flow rates. Our model can be used for the design and fabrication of CFF devices which yield predetermined droplet sizes with high precision.
机译:共轴流聚焦(CFF)技术是一种用于产生微量滴的微流体方法。它包括在具有下游孔的(圆形横截面)通道中共轴向对准的喷嘴组成。孔口中的连续相(C相)流体用于剪切从喷嘴喷射的分散相(D相)流体的液滴。由于其更简单的流体流体动力学,但与矩形通道相比,圆形横截面CFF器件是优选的。了解各种参数的效果,例如CFF中的信道设计和流体特性需要开发可靠的计算模型。本文用实验验证对多种局部几何对微流体CFF器件中液滴形成的影响进行了实验验证。几何形状包括D相喷嘴内径,从C相沟道孔的喷嘴尖端,以及流动聚焦孔的内径和长度。我们的模型能够成功预测这些几何参数对跨越滴水和喷射流动调节的各种C相流量的液滴尺寸的影响,误差范围为3-6%。基于仿真结果,液滴尺寸强烈取决于分配喷嘴和流量聚焦孔的C相流量和尺寸。喷嘴到孔距离的影响和孔的长度在液滴尺寸上不是在模拟的C相流速率范围内发音。我们的模型可用于CFF器件的设计和制造,其高精度地产生预定的液滴尺寸。

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