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首页> 外文期刊>FDMP: Fluid Dynamics & Materials Processing >Numerical Simulation of Droplet Breakup, Splitting and Sorting in a Microfluidic Device
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Numerical Simulation of Droplet Breakup, Splitting and Sorting in a Microfluidic Device

机译:微流控装置中液滴破碎,分裂和分选的数值模拟

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Droplet generation, splitting and sorting are investigated numerically in the framework of a VOF technique for interface tracking and a finite-volume numerical method using the commercial code FLUENT. Droplets of water-in-oil are produced by a flow focusing technique relying on the use of a microchannell equipped with an obstacle to split the droplets. The influence of several parameters potentially affecting this process is investigated parametrically towards the end of identifying "optimal" conditions for droplet breakup. Such parameters include surface tension, the capillary number and the main channel width. We show that the capillary number plays a crucial role in determining droplet properties and the efficiency of the related generation process. An obstacle configuration can be effectively used to split a droplet, with the droplets being naturally sorted at the end of the main channel. Larger values of the capillary number generally lead to an increase in the droplet frequency and a decrease in its typical size.
机译:在用于界面跟踪的VOF技术和使用商业代码FLUENT的有限体积数值方法的框架内,对液滴的产生,分裂和分类进行了数值研究。油包水的液滴是通过流动聚焦技术产生的,该技术依赖于使用装有障碍物的微通道来分裂液滴。在确定液滴破裂的“最佳”条件时,将对可能影响该过程的几个参数的影响进行参数研究。这些参数包括表面张力,毛细管数和主通道宽度。我们表明,毛细管数在确定液滴特性和相关生成过程的效率中起着至关重要的作用。可以有效地使用障碍物配置来分裂液滴,并使液滴自然地在主通道的末端进行分类。较大的毛细管数通常会导致液滴频率增加,并且其典型尺寸减小。

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