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Investigation of different geometrical configurations effect on mixing performance of passive split-and-recombine micromixer

机译:不同几何配置对无源分裂和重组微混合器混合性能的研究

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摘要

The current paper presents a three-dimensional study of the nitrogen and oxygen mixing process in a T-type micromixer. The micromixer with a height of 125 mu m and a width of 550 mu m has been considered for numerical investigation. Computations and solving governing equations have been done using the finite element method for Reynolds numbers of 26.9, 50.9, 78.4, and 109.3. The obtained mixing quality and pressure drop of a simple T-type micromixer have been validated against reference data which revealed admissible agreement. The main goal of this work is to enhance the mixing quality by presenting the novel design of the SAR (split-and-recombine) structures. SAR-type micromixers have attracted attention due to the low mixing ratio in simple T-type mixers. For this purpose, the mixing units and obstacles were added to the mixing channel of T-type micromixer and the comparative results have been reported in terms of mixing quality, concentration contours, and pressure drop. The results revealed that at low Reynolds numbers, due to the better molecular diffusion, the mixing quality is high for all simulated models. Besides, it is found that SAR micromixers improve the contact interface area of fluids, thus, the diffusion flux and consequently the mixing quality enhances. Furthermore, it has been concluded that by adding the obstacle before the mixing units, the mixing quality is higher than the state they have been added after the mixing units. On the other hand, the cross-section area of mixing units has been studied. The mixing quality is increasing by increasing the mentioned parameter. Finally, the most effective mixing efficiency (95%) and moderate dimensionless pressure drop (170) has been achieved at Re = 78.4 and b/D-H = 0.429.
机译:本文介绍了T型微混合器中氮气混合过程的三维研究。高度为125μm和宽度为550μm的微混合物已被认为是数值调查。已经使用26.9,50.9,78.4和109.3的雷诺数的有限元方法来完成计算和解决方程。获得简单的T型微混合器的所得混合质量和压降已经针对参考数据验证,该数据透露了可接受协议。这项工作的主要目标是通过呈现SAR(分裂和重组)结构的新颖设计来提高混合质量。由于简单的T型混合器中的较低混合比,SAR型微混合器引起了注意力。为此目的,将混合单元和障碍物加入到T型微混合器的混合通道中,并在混合质量,浓度轮廓和压降方面报道了对比结果。结果表明,在低雷诺数,由于较好的分子扩散,所有模拟模型的混合质量都很高。此外,发现SAR Micromixers改善了流体的接触界面面积,因此,扩散通量并因此增强了混合质量。此外,已经得出结论,通过在混合单元之前添加障碍物,混合质量高于混合单元后添加的状态。另一方面,已经研究了混合单元的横截面区域。通过增加提到的参数,混合质量正在增加。最后,在RE = 78.4和B / D-H = 0.429中已经实现了最有效的混合效率(95%)和中等无量纲压降(170)。

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