首页> 外文会议>International Conference on Micro/Nanoscale Heat and Mass Transfer >A NUMERICAL STUDY OF ELECTRODE ARRANGEMENTS FOR PRECISE MICRODROP GENERATION IN AN ELECTROWETTING-BASED DIGITAL MICROFLUIDIC PLATFORM
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A NUMERICAL STUDY OF ELECTRODE ARRANGEMENTS FOR PRECISE MICRODROP GENERATION IN AN ELECTROWETTING-BASED DIGITAL MICROFLUIDIC PLATFORM

机译:基于电泳的数字微流控平台中精确微液滴产生的电极排列的数值研究

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Owing to the wide applications in a large variety of multi-disciplinary areas, electrowetting-based digital microfluidics (DMF) has received considerable attention in the last decade. However, because of the complexity involved in the droplet generation process, the techniques and configurations for precise and controllable microdrop generation are still unclear. In this paper, a numerical study has been performed to investigate the impact of electrode arrangements on microdrop generation in an electrowetting-based DMF Platform proposed by a previously published experimental work. The governing equations for the microfluidic flow are solved by a finite volume formulation with a two-step projection method on a fixed numerical domain. The free surface of the microdrop is tracked by a coupled level-set and volume-of-fluid (CLSVOF) method, and the surface tension at the free surface is computed by the continuum surface force (CSF) scheme. A simplified viscous force scheme based on the 'Hele-Shaw cell' model is adopted to evaluate the viscous force exerted by the parallel plates. The generation process has been simulated with three different electrode arrangements, namely, 'SL', 'SW, and 'SQ'. The effect of electrode arrangement on microdrop volume has been investigated. Besides, the influences of the initial microdrop location and volume on the generation process for the 'SL' design have been studied. The results can be used to advance microdrop generation techniques for various electrowetting-based DMF applications.
机译:由于在众多的多学科领域中的广泛应用,基于电润湿的数字微流体技术(DMF)在过去十年中受到了相当大的关注。然而,由于液滴产生过程中涉及的复杂性,用于精确和可控制的微滴产生的技术和配置仍不清楚。在本文中,已进行了一项数值研究,以研究由先前发表的实验工作提出的基于电润湿的DMF平台中电极布置对微滴产生的影响。微流体流动的控制方程通过有限体积公式在固定数值域上采用两步投影法求解。通过耦合的水平集和流体体积(CLSVOF)方法跟踪微滴的自由表面,并通过连续表面力(CSF)方案计算自由表面的表面张力。采用简化的基于“ Hele-Shaw单元”模型的粘性力方案来评估平行板施加的粘性力。已经使用三种不同的电极布置(即“ SL”,“ SW”和“ SQ”)模拟了生成过程。已经研究了电极布置对微滴体积的影响。此外,还研究了初始微滴位置和体积对“ SL”设计生成过程的影响。该结果可用于推进微滴生成技术,以用于各种基于电润湿的DMF应用。

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