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首页> 外文期刊>Journal of Micromechanics and Microengineering >Performance and implementation of centrifugal serpentine micromixers with non-rectangular cross-section
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Performance and implementation of centrifugal serpentine micromixers with non-rectangular cross-section

机译:非矩形横截面离心蛇形微混合器的性能和实施

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The fluid flow and mixing characteristics of planar serpentine microchannels consisting of repeating S-shaped units was characterized both computationally and experimentally for Reynolds numbers Re < 100. In particular, it was found that using non-rectangular cross-sections with changing orientation for the geometrical units greatly enhances their mixing performance relative to standard rectangular profile serpentine channels. The optimization of the cross-section enables efficient mixing of two-fluid components at Reynolds numbers as low as 20, making these designs practical for chemical reaction engineering and biological assays platforms. A computational analysis of the cross-sectional flow structures present in this type of channels indicates that their enhanced performance is correlated with the formation of secondary transversal vortexes. In the optimal designs, their presence increases the mass transfer in the microchannel by both stretching the interface between the fluid components to be mixed, as well as by promoting chaotic advection.
机译:由重复的S形单元组成的平面蛇形微通道的流体流动和混合特性在计算上和实验上表征,用于雷诺数Re <100.特别地,发现使用非矩形横截面与几何方向改变的横截面单位极大地提高了它们相对于标准矩形轮廓蛇形通道的混合性能。横截面的优化使得在雷诺数的双流体部件可以高达20的高效混合,使得这些设计用于化学反应工程和生物测定平台。在这种类型的通道中存在的横截面流动结构的计算分析表明它们的增强性能与次级横向涡旋的形成相关。在最佳设计中,它们的存在通过拉伸流体部件之间的界面来增加微通道中的质量传递,以及通过促进混沌平流。

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