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首页> 外文期刊>Lab on a chip >Chaotic mixing in microchannels via low frequency switching transverse electroosmotic flow generated on integrated microelectrodes
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Chaotic mixing in microchannels via low frequency switching transverse electroosmotic flow generated on integrated microelectrodes

机译:通过在集成微电极上产生的低频切换横向电渗流在微通道中进行混沌混合

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摘要

In this paper we present a numerical and experimental investigation of a chaotic mixer in a microchannel via low frequency switching transverse electroosmotic flow. By applying a low frequency, square-wave electric field to a pair of parallel electrodes placed at the bottom of the channel, a complex 3D spatial and time-dependence flow was generated to stretch and fold the fluid. This significantly enhanced the mixing effect. The mixing mechanism was first investigated by numerical and experimental analysis. The effects of operational parameters such as flow rate, frequency, and amplitude of the applied voltage have also been investigated. It is found that the best mixing performance is achieved when the frequency is around 1 Hz, and the required mixing length is about 1.5 mm for the case of applied electric potential 5 V peak-to-peak and flow rate 75 μL h~(-1). The mixing performance was significantly enhanced when the applied electric potential increased or the flow rate of fluids decreased.
机译:在本文中,我们通过低频切换横向电渗流,对微通道中的混沌混合器进行了数值和实验研究。通过向位于通道底部的一对平行电极施加低频方波电场,生成了复杂的3D空间和时间相关流,以拉伸和折叠流体。这显着增强了混合效果。首先通过数值和实验分析研究了混合机理。还已经研究了诸如流量,频率和施加电压幅度之类的操作参数的影响。结果发现,当频率约为1 Hz时,可获得最佳的混合性能,并且在施加5 V峰峰值和流速75μLh〜(-)的情况下,所需的混合长度约为1.5 mm。 1)。当施加的电势增加或流体的流速降低时,混合性能显着增强。

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