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基于分裂与重组且带有涡旋生成混合单元的被动式微混合器的建模与仿真

Modeling and simulation of a split and recombination-based passive micromixer with vortex-generating mixing units.

作者信息

Nishu Israt Zahan, Samad Mst Fateha

机构信息

Department of Electronics & Telecommunication Engineering, Rajshahi University of Engineering & Technology, Rajshahi 6204, Bangladesh.

出版信息

Heliyon. 2023 Mar 24;9(4):e14745. doi: 10.1016/j.heliyon.2023.e14745. eCollection 2023 Apr.

Abstract

As a state-of-the-art technology, micromixers are being used in various chemical and biological processes, including polymerization, extraction, crystallization, organic synthesis, biological screening, drug development, drug delivery, etc. The ability of a micromixer to perform efficient mixing while consuming little power is one of its basic needs. In this paper, a passive micromixer having vortex-generating mixing units is proposed which shows effective mixing with a small pressure drop. The micromixer works on the split and recombination (SAR) flow principle. In this study, four micromixers are designed with different arrangements of mixing units, and the effect of the placement of connecting channels is evaluated in terms of mixing index, pressure drop, and mixing performance. The channel width of 200 μm, height of 300 μm, and size of mixing units are maintained constant for all the micromixers throughout the evaluation process. The numerical simulation is performed for the Reynolds number (Re) range of 0.1-100 using Comsol Multiphysics software. By categorizing the flow patterns into three regimes based on the range of Re, the fluid flow throughout the length of the micromixer is visualized. The micromixer with dislocated connecting channels provides a satisfactory result with the mixing index of 0.96 and 0.94, and the pressure drop of 2.5 Pa and 7.8 kPa at Re = 0.1 and Re = 100 respectively. It also outperformed the other models in terms of the mixing performance. The proposed micromixer might very well be used in microfluidic devices for a variety of analytical procedures due to its straightforward construction and outstanding performance.

摘要

作为一种先进技术,微混合器正被应用于各种化学和生物过程中,包括聚合反应、萃取、结晶、有机合成、生物筛选、药物研发、药物递送等。微混合器在消耗很少能量的情况下实现高效混合的能力是其基本要求之一。本文提出了一种具有涡旋产生混合单元的被动式微混合器,该微混合器在小压降情况下显示出有效的混合效果。该微混合器基于分流与重组(SAR)流动原理工作。在本研究中,设计了四种具有不同混合单元排列的微混合器,并从混合指数、压降和混合性能方面评估了连接通道位置的影响。在整个评估过程中,所有微混合器的通道宽度保持为200μm,高度保持为300μm,混合单元尺寸保持不变。使用Comsol Multiphysics软件对雷诺数(Re)范围为0.1 - 100进行了数值模拟。通过根据Re范围将流动模式分为三种状态,可视化了微混合器整个长度上的流体流动。连接通道错位的微混合器在Re = 0.1和Re = 100时分别具有0.96和0.94的混合指数以及2.5Pa和7.8kPa的压降,提供了令人满意的结果。在混合性能方面,它也优于其他模型。由于其结构简单且性能出色,所提出的微混合器很可能用于微流控设备中的各种分析程序。

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