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基于挡板和通道曲率的多向涡流的高效微混合器。

An efficient micromixer based on multidirectional vortices due to baffles and channel curvature.

机构信息

Department of Mechanical Engineering, National Cheng Kung University, Tainan, Taiwan 70101, Republic of China.

出版信息

Biomicrofluidics. 2011 Feb 16;5(1):14103. doi: 10.1063/1.3552992.

Abstract

An efficient planar micromixer based on multidirectional vortices in a curved channel with radial baffles is proposed and examined in this work. The curvature of the microchannel and the radial baffles induce vortices in different directions. The multidirectional vortices and the converging-diverging flow caused by the baffles contribute together to the enhancement of mixing. The micromixer is fabricated with polydimethylsiloxane by a single planar microlithography process and the mixing behaviors are observed by a confocal spectral microscope imaging system to validate the simulation obtained by a commercial code. The simulation and experimental results are in reasonable agreement. The concentration distributions and flow patterns obtained reveal the following trends. (i) The mixing efficiency of the basic C-shaped micromixer with the first baffle attached to the internal cylinder and the second attached to the external cylinder is better than that of the C-shaped micromixer with inverted arrangement of baffles. (ii) When the radius of the curved channel and the width of the passage between the baffle and the cylindrical wall are small enough and the Reynolds number (Re) is large enough, an extra separation vortex develops in the downstream of the second baffle. This phenomenon is one of the reasons of trend (i). (iii) A micromixer consisting of a few basic C-shaped micromixers connected by straight channels may generate a high degree of mixing for the case with a large Re.

摘要

本文提出并研究了一种基于带有径向挡板的弯曲通道中多向涡流的高效平面微混合器。微通道的曲率和径向挡板诱导了不同方向的涡流。多向涡流和挡板引起的收敛-发散流动共同促进了混合。微混合器采用聚二甲基硅氧烷通过单一平面微光刻工艺制造,通过共焦光谱显微镜成像系统观察混合行为,以验证商业代码获得的模拟结果。模拟和实验结果吻合较好。获得的浓度分布和流动模式揭示了以下趋势。(i)带有第一个挡板附接到内圆柱和第二个挡板附接到外圆柱的基本 C 形微混合器的混合效率优于具有反向挡板布置的 C 形微混合器。(ii)当弯曲通道的半径和挡板与圆柱壁之间的通道宽度足够小且雷诺数(Re)足够大时,第二个挡板的下游会产生额外的分离涡流。这种现象是趋势(i)的原因之一。(iii)由通过直通道连接的几个基本 C 形微混合器组成的微混合器在 Re 较大的情况下可能会产生高度混合。

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