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Bubble generation rules in microfluidic devices with microsieve array as dispersion medium

机译:微筛阵列为分散介质的微流控装置中气泡的产生规律

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Microfluidic devices with microsieve array as the dispersion medium have been well recognized. However, few studies have been made on gas-liquid two-phase flow in microsieve dispersion devices. The bubble generation rules with single-pore, radial-array pores, axial-array pores, and square-array pores were systematically investigated. The rules of pore activation have been suggested by considering the capillary force, flow resistances of both dispersed phase and continuous phase. An empirical equation and a theoretical equation to predict the activation of pores in microfluidic devices were developed. An equation to correlate the average bubble diameter with parameter of channel structure, phase ratio, and Ca number of continuous phase was also developed. The strategy of design and scaling up for microsieve devices is proposed. Meanwhile, a device with dual-size pores according to the rules derived is designed. This device achieved much better dispersion performance. (c) 2015 American Institute of Chemical Engineers AIChE J, 61: 1663-1676, 2015
机译:具有微筛阵列作为分散介质的微流体装置已得到广泛认可。然而,关于微筛分散装置中的气液两相流的研究很少。系统地研究了具有单孔,径向阵列孔,轴向阵列孔和方形阵列孔的气泡产生规律。通过考虑毛细作用力,分散相和连续相的流动阻力,已经提出了孔隙活化的规则。建立了预测微流体装置中孔隙活化的经验方程和理论方程。还建立了使平均气泡直径与通道结构,相比和连续相的Ca数相关的方程。提出了微筛器件的设计和放大策略。同时,根据推导的规则设计了具有双重孔径的装置。该器件实现了更好的分散性能。 (c)2015美国化学工程师学会AIChE J,61:1663-1676,2015

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