The Optimal Branch Width Convergence Ratio to Maximize the Transport Efficiency of the Combined Electroosmotic and Pressure-Driven Flow within a Fractal Tree-like Convergent Microchannel

IF 4.3 3区 材料科学 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC
Dalei Jing, Peng Qi
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引用次数: 0

Abstract

Building upon the efficient transport capabilities observed in the fractal tree-like convergent structures found in nature, this paper numerically studies the transport process of the combined electroosmotic and pressure-driven flow within a fractal tree-like convergent microchannel (FTCMC) with uniform channel height. The present work finds that the flow rate of the combined flow first increases and then decreases with the increasing branch width convergence ratio under the fixed voltage difference and pressure gradient along the FTCMC, which means that there is an optimal branch width convergence ratio to maximize the transport efficiency of the combined flow within the FTCMC. The value of the optimal branch convergence ratio is highly dependent on the ratio of the voltage difference and pressure gradient to drive the combined flow. By adjusting the structural and dimensional parameters of the FTCMC, the dependencies of the optimal branch convergence ratio of the FTCMC on the branching level convergence ratio, the length ratio, the branching number, and the branching level are also investigated. The findings in the present work can be used for the optimization of FTCMC with high transport efficiency for combined electroosmotic and pressure-driven flow.
使分形树状聚合微通道内电渗和压力驱动联合流的传输效率最大化的最佳分支宽度聚合比
基于在自然界分形树状汇聚结构中观察到的高效传输能力,本文对通道高度均匀的分形树状汇聚微通道(FTCMC)内电渗流和压力驱动流的联合传输过程进行了数值研究。研究发现,在固定的电压差和压力梯度条件下,随着分枝宽度收敛比的增大,联合流的流速先增大后减小,这意味着存在一个最佳的分枝宽度收敛比,以最大限度地提高联合流在分形树状收敛微通道内的传输效率。最佳分支收敛比的值在很大程度上取决于驱动合流的电压差和压力梯度比。通过调整 FTCMC 的结构和尺寸参数,还研究了 FTCMC 最佳分支汇聚比与分支水平汇聚比、长度比、分支数和分支水平的关系。本研究成果可用于优化电渗流和压力驱动流相结合的高传输效率 FTCMC。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
7.20
自引率
4.30%
发文量
567
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