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首页> 外文期刊>International Journal of Heat and Mass Transfer >A comprehensive geometrical study on an induced-charge electrokinetic micromixer equipped with electrically conductive plates
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A comprehensive geometrical study on an induced-charge electrokinetic micromixer equipped with electrically conductive plates

机译:配备导电板的感应电荷电动微混合器的综合几何研究

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摘要

In this paper, a numerical study is performed on an induced-charge electrokinetic micromixer. The electrically conductive plates are installed inside the micromixer to induce vortices that improve the mixing index of the system. A comprehensive geometrical study is performed on this micromixer and the effects of various parameters are investigated. These parameters include the mounting, length, orientation, position, arrangement and number of the conductive plates, and the intensity of the external electric field. To benchmark the accuracy of the numerical model, the simulated results are compared and agree well with existing experimental and numerical data in the literature. The results show that a mixing efficiency of 99.6% can be achieved by placing two 5 degrees angle conductive plates near the upper and lower walls and one 5 degrees angle conductive plate at the center of the micromixer. It is also observed that the mixing performance increases with increasing conductive plate length. The mixing efficiency can be improved from 67.2% to 94.3% by increasing the plate angle from 0 degrees to 40 degrees. Combining these optimizations, close to 100% mixing efficiency can be achieved by placing three staggered and tilted conductive plates at an angle of 5 degrees. (C) 2019 Elsevier Ltd. All rights reserved.
机译:在本文中,对感应电荷电动微混合器进行了数值研究。导电板安装在微型混合器内部,以产生涡旋,从而改善系统的混合指数。在此微型混合器上进行了全面的几何研究,并研究了各种参数的影响。这些参数包括导电板的安装,长度,方向,位置,布置和数量,以及外部电场的强度。为了验证数值模型的准确性,对模拟结果进行了比较,并与文献中现有的实验和数值数据很好地吻合。结果表明,通过在上,下壁附近放置两个5度角导电板,在微型混合器的中央放置一个5度角导电板,可以达到99.6%的混合效率。还观察到,混合性能随着导电板长度的增加而增加。通过将板角从0度增加到40度,可以将混合效率从67.2%提高到94.3%。结合这些优化,可以通过以5度角放置三个交错且倾斜的导电板来实现接近100%的混合效率。 (C)2019 Elsevier Ltd.保留所有权利。

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