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A micromixer with two-layer serpentine crossing channels having excellent mixing performance at low Reynolds numbers

机译:具有双层蛇形交叉通道的微混合器,在低雷诺数下具有优异的混合性能

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Highlights ? Experimental and numerical analyses of a novel micromixer with two-layer crossing channels were performed. ? The micromixer showed at least 96% mixing throughout a Reynolds number range (0.2–120). ? At low Reynolds numbers (0.2–10), the micromixer showed about 99% mixing at the exit. ? The proposed micromixer showed lower pressure drop than TLCCM for Re larger than 10. Abstract A novel design is presented for a chaotic micromixer using two-layer serpentine crossing microchannels. The performance of the micromixer was analyzed both numerically and experimentally. The numerical analysis was performed using three-dimensional Navier-Stokes equations with a convection–diffusion model for the species concentration in a Reynolds number range of 0.2–120. An experimental model of the micromixer was fabricated by soft lithography with polydimethylsiloxane (PDMS). Two working fluids, water and dye-water mixture were used for numerical analysis except for the experimental validation of numerical results. Both the numerical and experimental analyses confirm that the micromixer achieves a high level of mixing over a wide range of Reynolds numbers through splitting, enlarging, recombination, and folding mechanisms. The micromixer showed over 95% mixing throughout the tested range of Reynolds number. Especially, about 99% mixing was achieved at Reynolds numbers less than ten. Thus, the proposed micromixer can be used in microfluidic systems which require fast mixing at low Reynolds numbers. ]]>
机译:<![cdata [ 亮点 进行了一种具有双层交叉通道的新型微混合器的实验和数值分析。 MicroMixer在雷诺数范围内(0.2-120),在整个雷诺数(0.2-120)中混合至少96%。 ?< / ce:标签> 在低雷诺数(0.2-10),微混合器显示出在出口处混合约99%。 所提出的Micromixer显示比TLCCM更大的压力,对于RE大于10。 抽象 使用两层的混沌微混合器呈现一种新颖的设计蛇形交叉微通道。在数值和实验上分析了微混合器的性能。使用具有与对流扩散模型的三维Navier-Stokes方程进行数值分析,用于0.2-120的雷诺数范围内的物种浓度。通过柔软的光刻用聚二甲基硅氧烷(PDMS)制造微混合物的实验模型。除了对数值效果的实验验证之外,使用两个工作流体,水和染料 - 水混合物进行数值分析。数值和实验分析都证实,微混合器通过分裂,扩大,重组和折叠机构实现了在各种雷诺数上的高水平混合。微混合器在整个测试范围的雷诺数范围内显示出95%的混合。特别是,在雷诺数小于十的雷诺数达到约99%的混合。因此,所提出的微混合物可用于微流体系统,其需要在低雷诺数处快速混合。 ]]>

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