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基于三维马蹄形变换的混沌微混合器。

Chaotic Micromixer Based on 3D Horseshoe Transformation.

作者信息

Zhang He, Li Xin, Chuai Rongyan, Zhang Yingjie

机构信息

School of Information Science and Engineering, Shenyang University of Technology, Shenyang 110870, China.

出版信息

Micromachines (Basel). 2019 Jun 14;10(6):398. doi: 10.3390/mi10060398.

Abstract

To improve the efficiency of mixing under laminar flow with a low Reynolds number (Re), a novel three-dimensional Horseshoe Transformation (3D HT) was proposed as the basis for the design of a micromixer. Compared with the classical HT, the Lyapunov exponent of the 3D HT, which was calculated based on a symbolic dynamic system, proved the chaotic enhancement. Based on the 3D HT, a micromixer with a mixing length of 12 mm containing six mixing units was obtained by sequentially applying "squeeze", "stretch", "twice fold", "inverse transformation", and "intersection" operations. Numerical simulation and Peclet Number (Pe) calculations indicated that when the squeeze amplitude 0 < α < 1/2, 0 < β < 1/2, the stretch amplitude γ > 4, and Re ≥ 1, the mass transfer in the mixer was dominated by convective diffusion induced by chaotic flow. When Re = 10, at the outlet of the mixing chamber, the simulated mixing index was 96.4%, which was far less than the value at Re = 0.1 (σ = 0.041). Microscope images of the mixing chamber and the curve trend of pH buffer solutions obtained from a mixing experiment were both consistent with the results of the simulation. When Re = 10, the average mixing index of the pH buffer solutions was 91.75%, which proved the excellent mixing efficiency of the mixer based on the 3D HT.

摘要

为了提高低雷诺数(Re)层流下的混合效率,提出了一种新颖的三维马蹄形变换(3D HT)作为微混合器设计的基础。与经典的HT相比,基于符号动力学系统计算的3D HT的李雅普诺夫指数证明了混沌增强。基于3D HT,通过依次应用“挤压”“拉伸”“两次折叠”“逆变换”和“相交”操作,获得了一个混合长度为12 mm、包含六个混合单元的微混合器。数值模拟和佩克莱数(Pe)计算表明,当挤压幅度0 < α < 1/2,0 < β < 1/2,拉伸幅度γ > 4且Re≥1时,混合器中的传质由混沌流引起的对流扩散主导。当Re = 10时,在混合腔室出口处,模拟的混合指数为96.4%,远低于Re = 0.1时的值(σ = 0.041)。混合腔室的显微镜图像以及混合实验获得的pH缓冲溶液的曲线趋势均与模拟结果一致。当Re = 10时,pH缓冲溶液的平均混合指数为91.75%,证明了基于3D HT的混合器具有出色的混合效率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4db5/6631957/88f875c526a2/micromachines-10-00398-g001.jpg

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