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Numerical and Experimental Study on Mixing Performances of Simple and Vortex Micro T-Mixers

机译:简易和涡旋微型T混合器混合性能的数值和实验研究

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摘要

Vortex flow increases the interface area of fluid streams by stretching along with providing continuous stirring action to the fluids in micromixers. In this study, experimental and numerical analyses on a design of micromixer that creates vortex flow were carried out, and the mixing performance was compared with a simple micro T-mixer. In the vortex micro T-mixer, the height of the inlet channels is half of the height of the main mixing channel. The inlet channel connects to the main mixing channel (micromixer) at the one end at an offset position in a fashion that creates vortex flow. In the simple micro T-mixer, the height of the inlet channels is equal to the height of the channel after connection (main mixing channel). Mixing of fluids and flow field have been analyzed for Reynolds numbers in a range from 1–80. The study has been further extended to planar serpentine microchannels, which were combined with a simple and a vortex T-junction, to evaluate and verify their mixing performances. The mixing performance of the vortex T-mixer is higher than the simple T-mixer and significantly increases with the Reynolds number. The design is promising for efficiently increasing mixing simply at the T-junction and can be applied to all micromixers.
机译:涡流通过拉伸以及为微混合器中的流体提供连续搅拌作用而增加了流体流的界面面积。在这项研究中,对产生涡流的微型混合器的设计进行了实验和数值分析,并将混合性能与简单的微型T混合器进行了比较。在涡旋微型T混合器中,入口通道的高度是主混合通道高度的一半。入口通道的一端在偏移位置处与主混合通道(微型混合器)相连,形成涡流。在简单的微型T型混合器中,入口通道的高度等于连接后的通道(主混合通道)的高度。分析了流体混合和流场的雷诺数,范围为1–80。该研究已进一步扩展至平面蛇形微通道,将其与简单的涡旋T型结相结合,以评估和验证其混合性能。涡旋T混合器的混合性能高于简单T混合器,并且随雷诺数显着提高。该设计有望简单地在T形结处有效地增加混合,并且可以应用于所有微型混合器。

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