Suppr超能文献

被动式微混合器的优化:柱体结构和间隙对混合效率的影响。

Optimization of passive micromixers: effects of pillar configuration and gaps on mixing efficiency.

作者信息

Kheirkhah Barzoki Ali

机构信息

Department of Mechanical Engineering, Sharif University of Technology, Tehran, Iran.

出版信息

Sci Rep. 2024 Jul 15;14(1):16245. doi: 10.1038/s41598-024-66664-z.

Abstract

Chemical bioreactions play a significant role in many of the microfluidic devices, and their applications in biomedical science have seen substantial growth. Given that effective mixing is vital for initiating biochemical reactions in many applications, micromixers have become increasingly prevalent for high-throughput assays. In this research, a numerical study using the finite element method was conducted to examine the fluid flow and mass transfer characteristics in novel micromixers featuring an array of pillars. The study utilized two-dimensional geometries. The impact of pillar configuration on mixing performance was evaluated using concentration distribution and mixing index as key metrics. The study explores the effects of pillar array design on mixing performance and pressure drop, drawing from principles such as contraction-expansion and split-recombine. Two configurations of pillar arrays, slanted and arrowhead, are introduced, each undergoing investigation regarding parameters such as pillar diameter, gap size between pillar groups, distance between pillars, and vertical shift in pillar groups. Subsequently, optimal micromixers are identified, exhibiting mixing efficiency exceeding 99.7% at moderate Reynolds number (Re = 1), a level typically challenging for micromixers to attain high mixing efficiency. Notably, the pressure drop remains low at 1102 Pa. Furthermore, the variations in mixing index over time and across different positions along the channel are examined. Both configurations demonstrate short mixing lengths and times. At a distance of 4300 μm from the inlet, the slanted and arrowhead configurations yielded mixing indices of 97.2% and 98.9%, respectively. The micromixers could provide a mixing index of 99.5% at the channel's end within 8 s. Additionally, both configurations exceeded 90% mixing indices by the 3 s. The combination of rapid mixing, low pressure drop, and short mixing length positions the novel micromixers as highly promising for microfluidic applications.

摘要

化学生物反应在许多微流控设备中发挥着重要作用,并且它们在生物医学科学中的应用有了显著增长。鉴于有效混合对于许多应用中启动生化反应至关重要,微混合器在高通量分析中变得越来越普遍。在本研究中,进行了一项使用有限元方法的数值研究,以研究具有阵列柱体的新型微混合器中的流体流动和传质特性。该研究采用二维几何形状。使用浓度分布和混合指数作为关键指标来评估柱体配置对混合性能的影响。该研究借鉴收缩 - 扩张和分流 - 重组等原理,探讨柱阵列设计对混合性能和压降的影响。引入了两种柱阵列配置,即倾斜和箭头形,每种配置都针对柱直径、柱组之间的间隙尺寸、柱之间的距离以及柱组中的垂直位移等参数进行了研究。随后,确定了最佳微混合器,其在中等雷诺数(Re = 1)下表现出超过99.7%的混合效率,这一水平对于微混合器来说通常很难实现高混合效率。值得注意的是,压降保持在较低水平,为1102 Pa。此外,还研究了混合指数随时间以及沿通道不同位置的变化。两种配置都显示出较短的混合长度和时间。在距入口4300 μm处,倾斜和箭头形配置的混合指数分别为97.2%和98.9%。微混合器能够在8秒内在通道末端提供99.5%的混合指数。此外,两种配置在3秒时混合指数均超过90%。快速混合、低压降和短混合长度的结合使新型微混合器在微流控应用中极具前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3447/11251160/2aca9c10fdfa/41598_2024_66664_Fig1_HTML.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验