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On the computational analysis of short mixing length planar split and recombine micromixers for microfluidic applications

机译:关于微流体应用的短混合长度平面分裂和重组微混合的计算分析

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Micromixers are one of the prominent devices in applications like Lab-On-A-Chip (LOC), micro-total analysis system (mu TAS), etc. The performance of micromixer is governed by geometry of micromixer, type of obstructions like baffles, obstacles introduced in the fluid flow. In this paper, the mixing performance for three types of baffle-based split and recombination planar passive micromixers is analysed using numerical simulation. The three design configurations, namely, square baffle-based split and recombination (SB-SAR), circular baffle-based split and recombination (CB-SAR) and triangular baffle-based split and recombination (TB-SAR) micromixers are considered. In-depth flow physics analysis was carried out to assess and affirm the quantitative results of the mixing quality at Reynolds number in the range of 0.1-60. The mixing index is found to be 1.0 at Re = 0.1 for SB-SAR micromixer and 0.80 at Re = 10 for all the micromixer design configurations. Micromixers showed diffusion-dominated mixing mechanism at Re = 0.1, and chaotic advection dominated mixing mechanism at Re = 30. The advantages of rapid mixing, simple geometry and shortest mixing length make these micromixers more encouraging in chemical, biochemical and medical applications.
机译:Micromixers是实验室内芯片(LOC),微量分析系统(MU TAS)等应用程序中的突出设备之一。微混销器的性能由MicroMixer的几何形状,障碍物如挡板等障碍物所控制的流体流动引入的障碍物。本文使用数值模拟分析了三种类型的基于挡板分流和重组平面无源微混合物的混合性能。考虑了三种设计配置,即方形挡板的分流和重组(SB-SAR),圆形挡板的分裂和重组(CB-SAR)和三角形挡板基分裂和重组(TB-SAR)微混合物。进行了深入的流物理分析,以评估和肯定在0.1-60的雷诺数的混合质量的定量结果。在RE = 0.1对于SB-SAR Micromixer的Re = 0.1,混合指数在Re = 0.1处,Re&gt 0.80. = 10对于所有微混销器设计配置。 Micromixers在Re = 0.1中显示了扩散主导的混合机制,并在Re&GT的混沌平程主导混合机制。= 30.快速混合的优点,简单的几何和最短的混合长度使得这些微混合器在化学,生化和医疗应用中更令人鼓舞。

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