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Toward the Next Generation of Passive Micromixers: A Novel 3-D Design Approach

机译:朝着下一代被动微观镜:一种新颖的3-D设计方法

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摘要

Passive micromixers are miniaturized instruments that are used to mix fluids in microfluidic systems. In microchannels, combination of laminar flows and small diffusion constants of mixing liquids produce a difficult mixing environment. In particular, in very low Reynolds number flows, e.g., Re < 10, diffusive mixing cannot be promoted unless a large interfacial area is formed between the fluids to be mixed. Therefore, the mixing distance increases substantially due to a slow diffusion process that governs fluid mixing. In this article, a novel 3-D passive micromixer design is developed to improve fluid mixing over a short distance. Computational Fluid Dynamics (CFD) simulations are used to investigate the performance of the micromixer numerically. The circular-shaped fluid overlapping (CSFO) micromixer design proposed is examined in several fluid flow, diffusivity, and injection conditions. The outcomes show that the CSFO geometry develops a large interfacial area between the fluid bodies. Thus, fluid mixing is accelerated in vertical and/or horizontal directions depending on the injection type applied. For the smallest molecular diffusion constant tested, the CSFO micromixer design provides more than 90% mixing efficiency in a distance between 260 and 470 µm. The maximum pressure drop in the micromixer is found to be less than 1.4 kPa in the highest flow conditioned examined.
机译:被动微观仪是小型化仪器,用于混合微流体系统中的流体。在微通道中,混合液体的层流和小扩散常数的组合产生难以混合的环境。特别地,在非常低的雷诺数流动中,例如,除非在待混合的流体之间形成大的界面区域,否则不能促进扩散混合。因此,混合距离基本上增加,由于控制流体混合的慢的扩散过程。在本文中,开发了一种新颖的3-D被动微混合器设计,以改善短距离的流体混合。计算流体动力学(CFD)模拟用于在数值上研究微混合器的性能。提出的圆形流体重叠(CSFO)微混销器设计在几种流体流动,扩散性和注射条件下检查。结果表明,CSFO几何形状在流体体之间形成大的界面区域。因此,根据所施加的喷射型,在垂直和/或水平方向上加速流体混合。对于最小的分子扩散常数测试,CSFO微混合器设计在260至470μm的距离之间提供了超过90%的混合效率。在检测的最高流动条件下,发现微混合器中的最大压降小于1.4kPa。

著录项

  • 期刊名称 Micromachines
  • 作者单位
  • 年(卷),期 2021(12),4
  • 年度 2021
  • 页码 372
  • 总页数 20
  • 原文格式 PDF
  • 正文语种
  • 中图分类
  • 关键词

    机译:Micromixer;扩散混合;被动混合;流体重叠;顺序注射;分割;同心流;CFD;

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