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Design and test of a passive planar labyrinth micromixer for rapid fluid mixing

机译:用于快速流体混合的无源平面迷宫式微型混合器的设计和测试

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摘要

In this paper, we explore the possibility of improving the efficiency of Dean vortex-based mixers by only employing smooth-walled simple two-dimensional (2D) geometries. Numerical simulation results reveal that the symmetries of Dean flows in the prevalent "S-shaped" mixers can be broken up by adding a simple 180° turn between two consecutive curved channels. A planar labyrinth micromixer that is composed of multiple such mixing units is designed for improved mixing. The mixer is fabricated in a single lithography step and the labyrinth has a footprint of 7.32 mm × 7.32 mm. Experiments using fluorescein isothiocyanate solutions and deionized water demonstrate that our design achieves fast and uniform mixing within 9.8 s to 32 ms for Reynolds numbers (Re) between 2.5 and 30. For the first time, multiple fluid bands are observed at Re = 5 in a simple 2D microchannel design without using obstructions or split-and-recombine features. An inverse relationship between mixing length and mass transfer Peclet number (Pe) is observed. Due to the simple planar structure, the micromixer can be easily integrated into lab-on-a-chip devices where passive mixing is needed.
机译:在本文中,我们探索仅通过使用光滑壁的简单二维(2D)几何形状来提高基于Dean涡流的混频器效率的可能性。数值模拟结果表明,通过在两个连续的弯曲通道之间添加简单的180°转角,可以打破普遍使用的“ S形”混合器中Dean流的对称性。由多个这样的混合单元组成的平面迷宫式微型混合器被设计用于改善混合。混合器是在单个光刻步骤中制造的,迷宫的占地面积为7.32 mm×7.32 mm。使用异硫氰酸荧光素溶液和去离子水进行的实验表明,对于2.5至30的雷诺数(Re),我们的设计可在9.8 s至32毫秒内实现快速且均匀的混合。首次在Re = 5的条件下观察到多个流体带简单的2D微通道设计,而无需使用障碍物或拆分重组功能。观察到混合长度与传质佩克利数(Pe)之间呈反比关系。由于简单的平面结构,微混合器可以轻松集成到需要被动混合的芯片实验室设备中。

著录项

  • 来源
    《Sensors and Actuators》 |2012年第2012期|126-132|共7页
  • 作者单位

    Rheonix, Inc., Ithaca, NY 14850, USA, 22 Thornwood Dr., Ithaca, NY 14850, USA;

    Department of Mechanical, Industrial and Systems Engineering, University of Rhode Island, Kingston, RI 02881, USA;

    Department of Mechanical, Industrial and Systems Engineering, University of Rhode Island, Kingston, RI 02881, USA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Micromixing; Dean flow; Lab-on-a-chip;

    机译:微混合;院长流芯片实验室;

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