3D micromixers-downscaling large scale industrial static mixers

A. Bertsch, S. Heimgartner, P. Cousseau, P. Renaud
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引用次数: 33

Abstract

Mixing liquids on the micro-scale is difficult because the low Reynolds numbers in microchannels and in microreactors prohibit the use of conventional mixing techniques based on mechanical stirring which induces turbulence. Static mixers can be used to solve this mixing problem. In this paper, micromixers having geometries very close to those of conventional large-scale static mixers used in the chemical and food-processing industry are presented. Two kind of geometries have been studied. The first type of mixers is composed of a series of stationary rigid elements that form intersecting channels to split, rearrange and combine component streams. The second type of geometry is composed of a series of short helix elements arranged in pairs; each pair comprised of a right-handed and left-handed element arranged alternately in a pipe. Micromixers of both types have been designed by CAD and manufactured with the integral microstereolithography process, a new microfabrication technique that enables the manufacturing of complex, three-dimensional objects in polymers. The realized structures have been tested experimentally. Numerical simulations of the micromixers with the CFD program Fluent/sup TM/ have been performed to evaluate their mixing efficiency.
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3D微型混合器-缩小规模的大型工业静态混合器
在微尺度上混合液体是困难的,因为微通道和微反应器中的低雷诺数禁止使用基于机械搅拌的传统混合技术,这会引起湍流。静态混合器可以用来解决这个混合问题。本文介绍了一种几何形状与化学和食品加工工业中使用的传统大型静态混合器非常接近的微型混合器。研究了两种几何形状。第一种混合器由一系列固定的刚性元件组成,这些元件形成相交的通道,以分裂、重新排列和组合组分流。第二类几何结构由一系列成对排列的短螺旋单元组成;每一对由一个在管子中交替排列的左手和右手元件组成。这两种类型的微混合器都是通过CAD设计和集成微立体光刻工艺制造的,这是一种新的微加工技术,可以制造复杂的聚合物三维物体。所实现的结构已经进行了实验测试。利用CFD软件Fluent/sup TM/对微混合器进行了数值模拟,以评价其混合效率。
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