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SIMULATIONS OF FLOW AND MASS TRANSFER IN A PASSIVE MICROMIXER

机译:无源微混合器中的流动和传质模拟

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We present three-dimensional simulation results regarding performance of a novel planar passive micromixer functioning at low Reynolds numbers. A combination of folding and contracting of microchannels is the main idea for designing of an effective, easy-to-produce, and non-expensive micromixer. The simulation results show that, depend on Reynolds number, centrifugal forces can generate different secondary flows and Dean vortices after each bend. Consequently, the thickness and the form of the contact layer between fluids become strongly affected. The simulation process is repeated for different Reynolds numbers from 10 to 100, and we observe that the maximum and minimum mixing efficiencies at the output channel are related to Reynolds number 60 and 80, respectively.
机译:我们提出了关于在低雷诺数下运行的新型平面被动微混合器的性能的三维仿真结果。微通道的折叠和收缩的组合是设计有效,易于生产和非昂贵的微混合器的主要思想。仿真结果表明,取决于雷诺数,离心力可以在每个弯曲后产生不同的二次流动和Dean涡流。因此,流体之间的接触层的厚度和形式变得强烈影响。对于不同雷诺数的仿真过程,从10到100的不同雷诺数重复,并且我们观察到输出通道的最大和最小混合效率分别与雷诺数60和80相关。

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