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首页> 外文期刊>Chemical Engineering Research & Design: Transactions of the Institution of Chemical Engineers >Design and performance of a three-dimensional micromixer with curved ribs
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Design and performance of a three-dimensional micromixer with curved ribs

机译:具有弯曲肋的三维微混合器的设计与性能

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The present work elucidates the design and performance analysis of a three-dimensional microchannel for its capability in mixing two different liquids. Present studies are based on cross-T micromixer in which obstacles are introduced in the form of three-dimensional curved ribs. The mixing efficiency, quantified by the mixing index (M), has been calculated for the present micromixer. Results are also compared with those having straight ribs and found an enhancement of about 15% in mixing efficiency for obstacles with curved surfaces. However, this superior mixing has been achieved with a lower pressure drop, which provides an added advantage not traditionally realized for passive micromixers. Moreover, extensive parametric studies are also conducted to understand the effect of several geometrical parameters that can influence the mixing which include the height of obstacles (h), number of modules (Nn,), angle of inclination (9) and size of the obstacles and also the inlet Re. However, there has been seen to have certain optimum values of some of the parameters for achieving maximum degree of mixing. The use of the curved ribs is found to provide superior mixing for a wide range of Re. (C) 2018 Institution of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:本工作阐明了三维微通道的设计和性能分析,以其混合两种不同液体的能力。目前的研究基于交叉T微混合器,其中障碍物以三维弯曲肋的形式引入。通过混合指数(M)量化的混合效率已经计算出本发明的微混合器。结果也与具有直肋的诸如具有直肋的结果进行比较,并且在弯曲表面的障碍物的混合效率中发现增加了约15%的增强。然而,通过较低的压降已经实现了这种卓越的混合,这提供了用于无源微混合器的不传统实现的添加优势。此外,还进行了广泛的参数研究以了解几何参数的效果,该几何参数可以影响包括障碍物(H)的高度,模块数(NN,),倾斜角(9)和障碍物的尺寸的效果还有入口。然而,已经看到有一些参数的最佳值,以实现最大的混合程度。发现弯曲肋的使用提供了各种RE的优异混合。 (c)2018化学工程师机构。 elsevier b.v出版。保留所有权利。

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