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Research on Layout Optimization of Obstacles in a Passive Micromixer

机译:被动式微混合器障碍物布局优化研究

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摘要

The paper focuses on optimizing layout of obstacles for enhanced mixing in microchannels. The obstacles can hinder fluid flow and alter the flow direction. In this case, the mixing performance can be achieved further effectively. Three parameters including geometric configuration, layout, and number of obstacles have been studied for analyzing mixing in a 'T' channel. In order to facilitate the design, numerical simulations and orthogonal experiment were used to study the effect of three parameters on sensitivity of mixing. The degree of sensitivity using the Taguchi method can be ranked as: asymmetric layout > number of obstacles > geometric configuration. Placing obstacles in the microchannels is an effective method for enhancing mixing and the micromixer with obstacles is relatively easy to produce using standard microfabrication techniques. It can be demonstrated that the results should facilitate the design of microfluidic device.
机译:本文着重于优化障碍物的布局以增强微通道中的混合。障碍物会阻碍流体流动并改变流动方向。在这种情况下,可以进一步有效地实现混合性能。已经研究了三个参数,包括几何配置,布局和障碍物数量,以分析“ T”通道中的混合。为了方便设计,采用数值模拟和正交试验研究了三个参数对混合灵敏度的影响。使用Taguchi方法的敏感度可排名为:不对称布局>障碍物数量>几何形状。在微通道中放置障碍物是增强混合的有效方法,使用标准微细加工技术相对容易生产带有障碍物的微混合器。可以证明,该结果应有助于微流体装置的设计。

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