论文标题

在优化的电动湍流微米物中混合和流动过渡

Mixing and flow transition in an optimized electrokinetic turbulent micromixer

论文作者

Nan, Keyi, Shi, Yanxia, Zhao, Tianyun, Tang, Xiaowei, Zhu, Yueqiang, Wang, Kaige, Bai, Jintao, Zhao, Wei

论文摘要

Micromixer是实验室的关键要素,用于在化学和工程的分析和测量中进行广泛应用。先前的研究报道,电动(EK)湍流可以在Y型微质子中实现,横截面尺寸为100 $ $ m $ m。尽管可以在O(1)的大量流量雷诺数下生成超快的湍流混合,但尚未优化微米物。在这项研究中,我们系统地研究了入口处电场强度,交流频率,电导率比和通道宽度对“ Y”型电动微弹器中混合效果和电动电动雷利数的影响。发现最佳混合在350 $ $ m宽的微米物中实现,低于100 kHz和1.14*10^5 v/m ac电场,电导率比为1:3000。在这种情况下,从入口和100 ms的84 $ $ m时,最大混合度为0.93。对关键电场和关键电动雷利数的进一步研究表明,EK流动不稳定性最不稳定的状况与EK湍流中最佳混合的情况不一致。为了预测高$ ra_ {e} $下EK流的演变,必须应用计算湍流模型,而不是线性不稳定性分析。

Micromixer is a key element in lab on a chip for broad applications in the analysis and measurement of chemistry and engineering. Previous investigations reported electrokinetic (EK) turbulence could be realized in a Y-type micromixer with a cross-sectional dimension of 100 $μ$m order. Although the ultrafast turbulent mixing can be generated at a bulk flow Reynolds number of O(1), the micromixer has not been optimized. In this investigation, we systematically investigated the influence of electric field intensity, AC frequency, electric conductivity ratio, and channel width at the entrance on the mixing effect and transition electric Rayleigh number in the "Y" type electrokinetic micromixer. It is found the optimal mixing is realized in a 350 $μ$m wide micromixer, under 100 kHz and 1.14*10^5 V/m AC electric field, with an electric conductivity ratio of 1:3000. Under the conditions, a maximum degree of mixedness of 0.93 can be achieved at 84 $μ$m from the entrance and 100 ms. A further investigation of the critical electric field and the critical electric Rayleigh number indicates the most unstable condition of EK flow instability is inconsistent with that of the optimal mixing in EK turbulence. To predict the evolution of EK flow under high $Ra_{e}$, it is necessary to apply a computational turbulence model, instead of linear instability analysis.

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