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首页> 外文期刊>Computers & Fluids >Mixing enhancement in a passive micromixer with convergent-divergent sinusoidal microchannels and different ratio of amplitude to wave length
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Mixing enhancement in a passive micromixer with convergent-divergent sinusoidal microchannels and different ratio of amplitude to wave length

机译:具有会聚-发散正弦微通道且振幅与波长之比不同的无源微混合器中的混合增强

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摘要

Experimental investigations and computational fluid dynamic on the characteristics of mixing inside the fabricated micromixers have been conducted. In order to study the mixing, several micromixer made by CO_2 laser ablation process with sinusoidal convergent-divergent cross section including the T-shape inlet have been employed. The fluid mixing is clearly observed using a digital microscope imaging system. Beside, computational fluid dynamics via finite element method is used for 3D modeling of single phase flow in a microchannel. Experimental results demonstrated the reasonable agreement with those obtained by CFD. The main purpose of this modeling is to extend the previous knowledge related to the Dean and separation vortices forming inside the convergent-divergent sinusoidal microchannels. Moreover, effects of designing parameters such as aspect ratio of cross section and ratio of amplitude to wave length (A/λ) and operational condition such as Reynolds number on pressure-drop and mixing index are also investigated. Therefore, based on the obtained results, best mixing condition at short mixing length is introduced and a new micromixer is suggested that may be considered as a proper case due to higher mixer index and ease of fabrication in comparison with previous ones used in biomedical and biochemical analysis.
机译:进行了关于制造的微混合器内部混合特性的实验研究和流体动力学计算。为了研究混合,已经使用了几种通过CO_2激光烧蚀工艺制成的具有T形入口的正弦收敛-发散横截面的微型混合器。使用数字显微镜成像系统可以清楚地观察到流体混合。此外,通过有限元方法的计算流体动力学用于微通道中单相流的3D建模。实验结果表明与CFD所获得的结果是合理的一致。该建模的主要目的是扩展与会聚-发散正弦微通道内部形成的迪安和分离涡旋有关的先前知识。此外,还研究了诸如横截面的纵横比和振幅与波长之比(A /λ)之类的设计参数以及诸如雷诺数之类的工作条件对压降和混合指数的影响。因此,根据获得的结果,介绍了在短混合时间下的最佳混合条件,并提出了一种新的微型混合器,由于与以前在生物医学和生物化学中使用的混合器相比,混合器指数更高且易于制造,因此可以认为是合适的情况分析。

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