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Analysis on micro-mixing enhancement through a constriction under time periodic electroosmotic flow

机译:周期性电渗流通过收缩促进微混合的分析

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摘要

Numerical analyses of the recently proposed micro mixer based on periodic electroosmotic flow through a constriction were conducted. The validity and accuracy of the numerical model developed were verified experimentally. The model allows the prediction of operating parameters such as alternating current (AC) amplitude and frequency for optimum mixing. For accurate simulations of flow behavior such that optimum operating conditions could be determined, the electromigration effect of charged fluorescent dye added to the fluid stream must be considered. This effect, which is generally ignored, can be incorporated in the convection diffusion equation. Important factors that govern the mixing efficiency of the mixer, such as the contact area between the two fluids and the amplitude of fluid interface oscillation were quantified based on experimental and numerical results. Detailed error analyses were performed to investigate the sensitivity of simulation results to the variability of constriction width, diffusion coefficient, and fluorescein ion mobility. This also provides an understanding on the fabrication requirement for efficient mixing.
机译:对最近提出的微型混合器进行了数值分析,该混合器基于通过缩颈的周期性电渗流。实验验证了所建立数值模型的有效性和准确性。该模型允许预测操作参数,例如交流(AC)幅度和频率,以实现最佳混合。为了精确模拟流动行为,以便确定最佳操作条件,必须考虑添加到流体流中的带电荧光染料的电迁移效应。通常被忽略的这种效应可以纳入对流扩散方程中。基于实验和数值结果,量化了控制混合器混合效率的重要因素,例如两种流体之间的接触面积和流体界面振荡的幅度。进行了详细的误差分析,以调查模拟结果对收缩宽度,扩散系数和荧光素离子迁移率变异性的敏感性。这也提供了对有效混合的制造要求的理解。

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