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Analysis of Proportional Microfluidic Mixing in a Sequential Injection Micro-Mixer

机译:顺序注射微混合器中的微流混合比例分析

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In this study, external electric potentials with high (5 Hz) and low (0.5 Hz) switching frequencies are applied to induce electro-osmotic flow in micro-mixers to achieve sequential segment injection. A micro-mixer arranged in asterisk-patterns combined with an expansion chamber is designed to deliver a certain quantity of solution into the micro-mixer and achieve rapid proportional mixing. The main purpose of the expansion chamber is to achieve highly efficient mixing by increasing the contact area that produces the diffusion effect. The induced electro-osmitic flows in the microchannels were investigated by numerical simulations in the study. The asterisk-pattern micro-mixer can reduce the examination time by allowing the sequential segment injection of three solutions into the micro-channel. In this study, the micro-mixers are subjected to low and high switching frequencies to investigate the mixing efficiencies of the mixers. The simulation results show that suitable restraint electric field intensities are required to form the sequential segment solutions into approximate rectangular shapes in the micro-channel. Furthermore, the high switching frequency allows both patterns to achieve better mixing efficiencies than with the low switching frequency.
机译:在这项研究中,使用具有高(5 Hz)和低(0.5 Hz)开关频率的外部电势来诱导微型混合器中的电渗流,以实现顺序段注入。以星号模式排列的微型混合器与膨胀室相结合,旨在将一定量的溶液输送到微型混合器中,并实现快速的比例混合。膨胀室的主要目的是通过增加产生扩散作用的接触面积来实现高效混合。通过数值模拟研究了微通道中的感应电渗流。星号模式的微混合器可以通过将三种溶液依次注入到微通道中来减少检查时间。在这项研究中,微型混合器受到低和高开关频率的影响,以研究混合器的混合效率。仿真结果表明,在微通道中需要适当的约束电场强度才能将顺序段解形成近似矩形的形状。此外,与低开关频率相比,高开关频率允许两种模式都实现更好的混合效率。

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