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A novel micromixer with multimixing mechanisms for high mixing efficiency at low Reynolds number

机译:一种具有多重混合机制的新型微混合器,可在低雷诺数下实现高混合效率

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摘要

In this paper, we propose a novel passive micromixer structure for high mixing efficiency based on the combination of multimixing principles. With a special structure, our proposed micromixer can create vortices, transversal flows and chaotic advections to provide high mixing efficiency event at low Reynolds number. Moreover, two narrow slits at two ends of each mixing unit remarkably reduce pressure drop, making it easy to be built into micro-devices. We conduct intensive simulation to evaluate the performance of our proposed micromixer by numerically solving the governing Navier-Stokes equation and convection-diffusion equation using COMSOL Multiphysics package. The simulation results indicate that our proposed micromixer may achieve stable mixing efficiency of 80% or above for a wide Reynolds number range from 0.5 to 100. Especially, at Reynolds number (Re) > 30, mixing efficiency is less dependent on Reynolds number. The mixing efficiency of our micromixer is two times higher than mixing efficiency of micromixer based on unbalanced splits and collisions of fluid at the same mixing channel length of 5mm. At Re = 30, our proposed micromixer has high mixing efficiency of 85% with moderate pressure drop ΔP = 12,600Pa.
机译:在本文中,我们提出了一种基于混合原理的新型无源微混合器结构,可实现高混合效率。我们提出的微混合器具有特殊的结构,可以产生涡旋,横向流动和混沌对流,从而在低雷诺数下提供高混合效率。此外,每个混合单元两端的两个窄缝大大降低了压降,使其易于内置在微型设备中。通过使用COMSOL Multiphysics软件包对控制的Navier-Stokes方程和对流扩散方程进行数值求解,我们进行了深入的仿真以评估我们提出的微混合器的性能。仿真结果表明,我们提出的微混合器在0.5至100的雷诺数范围内均可达到80%或更高的稳定混合效率。尤其是,在雷诺数(Re)> 30时,混合效率对雷诺数的依赖性较小。在相同的5mm混合通道长度下,由于流体的不平衡分流和碰撞,我们的微型混合器的混合效率是微型混合器的混合效率的两倍。在Re = 30时,我们建议的微型混合器具有85%的高混合效率,且压降ΔP= 12,600Pa。

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