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Numerical study of enhancing the mixing effect in microchannels via transverse electroosmotic flow by placing electrodes on top and bottom of the channel

机译:通过在通道的顶部和底部放置电极,通过横向电渗流增强微通道中混合效果的数值研究

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This paper reports the enhancement of the mixing effect via the transverse electroosmotic flow by using a 3D microelectrode system, which is structured by aligning two layers of electrodes face-to-face placed on both the top and bottom sides of the channel. The fluid was stretched and folded due to the transverse electroosmotic flow generated by applying an electric field on the electrodes. In this paper, two type of electrode designs (a parallel type electrode design and squarewave type electrode design) were chosen and six design patterns with different combinations of these two types of electrode designs were investigated by using the numerical method. The mixing effect at different design patterns was investigated via comparing the flow structure, mixing mechanism, Poincare map, and the index of mixing performance. An optimum pattern was obtained when squarewave type electrodes were placed on both top and bottom of the channel. A minimum mixing length of 1.6 mm is required for the optimum pattern when the flow velocity is 1.5 mm/s, and the amplitude of the applied electric potential is 1.2 Volts. The effects of the geometric size and flow rate for the optimum pattern are discussed.
机译:本文报告了通过使用3D微电极系统通过横向电渗流来增强混合效果的方法,该系统是通过将面对面放置在通道顶侧和底侧的两层电极对齐而构成的。由于通过在电极上施加电场而产生的横向电渗流,流体被拉伸和折叠。在本文中,选择了两种类型的电极设计(平行型电极设计和方波型电极设计),并使用数值方法研究了这两种类型的电极设计不同组合的六个设计模式。通过比较流动结构,混合机理,庞加莱图和混合性能指标,研究了不同设计模式下的混合效果。当方波型电极放置在通道的顶部和底部时,可获得最佳图案。当流速为1.5 mm / s,施加电势的振幅为1.2 V时,最佳图案的最小混合长度为1.6 mm。讨论了几何尺寸和流速对最佳图案的影响。

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