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Modeling of Electrokinetically Driven Flow Mixing Enhancement in Microchannels with Patterned Heterogeneous Surface and Blocks

机译:具有模式异质表面和嵌段的微通道中电动驱动的流动混合增强的建模

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摘要

Mixing in microchannels is an important process since certain microfluidic applications require the rapid mixing of species. This paper investigates the mixing in the microchannels via the possibility of utilising the spatial zeta potential variations with the opposite sign to that of the homogeneous surface to create the circulation zones within the bulk flow. The effects of the number of heterogeneous patches, the strength of applied external voltage and zeta potential are analyzed to determine the mixing efficiency. In addition, the replacement of patches with heterogeneous surface blocks shows the improvement of mixing efficiency. The fluid flow is simulated via the single relaxation time lattice Boltzmann method (LBM) with a forcing term from the electric field. The concentration of species within the channel is governed by an advection-diffusion equation with Peclet number of the order 1000.
机译:在微通道中混合是重要的过程,因为某些微流体应用需要物种的快速混合。本文通过利用空间zeta电位变化与均质表面的符号相反的可能性来研究微通道中的混合,以在整体流中创建循环区。分析了异质贴片数量,施加的外部电压强度和zeta电位的影响,以确定混合效率。另外,用异质表面块代替贴剂显示出混合效率的提高。通过单弛豫时间晶格玻尔兹曼方法(LBM),利用电场的强迫项来模拟流体流动。通道内物质的浓度由对流扩散方程控制,派克雷特数为1000。

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