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被动式带槽微混合器中流体混合的几何效应。

Geometric effects on fluid mixing in passive grooved micromixers.

作者信息

Yang Jing-Tang, Huang Ker-Jer, Lin Yu-Chun

机构信息

Department of Power Mechanical Engineering, National Tsing Hua University, Hsinchu, Taiwan 30013.

出版信息

Lab Chip. 2005 Oct;5(10):1140-7. doi: 10.1039/b500972c. Epub 2005 Aug 18.

Abstract

The effects of geometric parameters on the mixing performance of a staggered herringbone mixer (SHM) with patterned grooves are numerically investigated. Combining use of the software package CFD-ACE+ and the Taguchi method provides a powerful and systematic approach for research on microfluidics. An orthogonal array L9(3(4)) is established for parameters introduced by the groove geometry; in total 9 cases are simulated. Analyses of the mixing phenomena, geometric parameter, pressure loss and flow rate through grooves are conducted. The modes of fluid motion and dominant mechanisms of mixing within the SHM are observed and ascertained. Although the depth ratio and the asymmetry index of the groove are found to be dominant geometric parameters, the rate of flow within the groove is verified to be the most significant factor that affects the mixing performance of a SHM. To date, the effects of the parameters are evaluated within specified ranges, and the true optimum design has yet to be discovered.

摘要

数值研究了几何参数对带有图案化凹槽的交错式人字混合器(SHM)混合性能的影响。结合使用软件包CFD-ACE+和田口方法为微流体研究提供了一种强大而系统的方法。针对由凹槽几何形状引入的参数建立了正交阵列L9(3(4));总共模拟了9种情况。对混合现象、几何参数、压力损失和通过凹槽的流速进行了分析。观察并确定了SHM内流体运动的模式和混合的主要机制。尽管发现凹槽的深度比和不对称指数是主要的几何参数,但凹槽内的流速被证实是影响SHM混合性能的最重要因素。迄今为止,已在指定范围内评估了这些参数的影响,真正的最佳设计尚未发现。

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