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Enhancement of Fluid Mixing with U-Shaped Channels on a Rotating Disc

机译:增强旋转盘上用U形通道的流体混合

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摘要

In this study, centrifugal microfluidics with a simple geometry of U-shaped structure was designed, fabricated and analyzed to attain rapid and efficient fluid mixing. Visualization experiments together with numerical simulations were carried out to investigate the mixing behavior for the microfluidics with single, double and triple U-shaped structures, where each of the U-structures consisted of four consecutive 90° bends. It is found that the U-shaped structure markedly enhances mixing by transverse secondary flow that is originated from the Coriolis-induced vortices and further intensified by the Dean force generated as the stream turns along the 90° bends. The secondary flow becomes stronger with increasing rotational speed and with more U-shaped structures, hence higher mixing performance. The mixing efficiency measured for the three types of mixers shows a sharp increase with increasing rotational speed in the lower range. As the rotational speed further increases, nearly complete mixing can be achieved at 600 rpm for the triple-U mixer and at 720 rpm for the double-U mixer, while a maximum efficiency level of 83–86% is reached for the single-U mixer. The simulation results that reveal detailed characteristics of the flow and concentration fields are in good agreement with the experiments.
机译:在本研究中,设计了具有U形结构简单几何形状的离心微流体,制造和分析,以获得快速高效的流体混合。进行了可视化实验与数值模拟一起,以研究具有单个,双和三维U形结构的微流体的混合行为,其中每个U形结构由四个连续的90°弯曲组成。结果发现U形结构明显增强了由横向二次流动的混合,该横向二次流动源自科里奥利诱导的涡流,并且通过当流沿90°弯曲时产生的院长进一步加强。次要流动随着旋转速度的增加和更具U形结构而变得更强,因此更高的混合性能。为三种类型的混合器测量的混合效率显示出较高范围内的旋转速度的急剧增加。随着旋转速度进一步增加,对于三重型混合器,可以在600rpm下实现几乎完全的混合,并为双U混合器为720rpm,而单个U达到最大效率水平为83-86%混合器。揭示流动和浓度场的详细特征的仿真结果与实验一致。

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