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METHOD FOR MIXING FLUID STREAMS, MICROFLUIDIC MIXER AND MICROFLUIDIC CHIP UTILIZING SAME

机译:混合流体流,微流混合器和微流芯片的方法

摘要

A method for mixing fluid streams, microfluidic mixer and microfluidic chip utilizing same utilize a topological mixing scheme that exploits the laminarity of the flow to repeatedly fold the flow and exponentially increase the concentration gradients to obtain fast and efficient mixing by diffusion (Figure 1a). It is based on helical flow channels with opposite chiralities that split rotate and recombine the fluid stream in a topology reminiscent of a series of MÖBIUS bands. This geometry is realized in a simple six-stage, two-layer elastomer structure with a footprint of 400 µm x 300 µm per stage that mixes two solutions efficiently at Reynolds numbers between 0.1 and 2. This represents more than an order of magnitude reduction in the size of microfluid mixers that can be manufactured in standard multilayer soft lithography techniques.
机译:一种用于混合流体的方法,微流体混合器和利用其的微流体芯片利用一种拓扑混合方案,该拓扑混合方案利用流的层流来反复折叠流并以指数方式增加浓度梯度,从而通过扩散获得快速有效的混合(图1a)。它基于具有相反手性的螺旋形流动通道,它们以旋转的方式重组并重组流体流,其拓扑结构让人联想到一系列MÖBIUS谱带。这种几何形状是通过一个简单的六级,两层弹性体结构实现的,每级足迹为400 µm x 300 µm,可以在0.1和2之间的雷诺数下有效地混合两种溶液。可通过标准多层软光刻技术制造的微流体混合器的尺寸。

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