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首页> 外文期刊>Journal of Advanced Manufacturing Systems >Design and Analysis of Passive Y-Type Micromixers for Enhanced Mixing Performance for Biomedical and Microreactor Application
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Design and Analysis of Passive Y-Type Micromixers for Enhanced Mixing Performance for Biomedical and Microreactor Application

机译:用于生物医学和微反应器应用的增强混合性能的无源Y型微混合器的设计和分析

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摘要

In this paper, endeavor has been made to design and analyze different Y-type micromixers by characterizing the mixing and flow behavior in ultra-low Reynolds number region. The effects of different geometric and flow parameters on the mixing and pressure drop are studied through computational fluid dynamics (CFD) simulations using COMSOL Multiphysics software. The parameters investigated are obstacle geometry, obstacle arrangement, obstacle depth, aspect ratio (AR), entrance angle (E_θ), Reynolds number (Re) and obstacle packing factor (OPF). The simulation results reveal that rectangular shaped obstacles in staggered arrangement gives the best mixing. Increasing obstacle depth and OPF increases both mixing and pressure drop whereas increasing entrance angle enhances mixing but has negligible effect on pressure drop. Also both the mixing and pressure drop performance enhances with decreasing AR and lower Reynolds number gives better mixing in the lower laminar flow region.
机译:本文通过表征超低雷诺数区域的混合和流动行为,努力设计和分析不同的Y型微混合器。使用COMSOL Multiphysics软件通过计算流体动力学(CFD)模拟研究了不同几何参数和流量参数对混合和压降的影响。研究的参数为障碍物几何形状,障碍物布置,障碍物深度,纵横比(AR),入射角(E_θ),雷诺数(Re)和障碍物堆积系数(OPF)。仿真结果表明,交错布置的矩形障碍物可实现最佳混合效果。障碍物深度和OPF的增加会增加混合和压降,而入口角的增加会增强混合,但对压降的影响可忽略不计。而且,随着AR的降低,混合和压降性能都增强,并且较低的雷诺数在较低的层流区域中提供更好的混合。

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