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Virtual vortex gear: Unique flow patterns driven by microfluidic inertia leading to pinpoint injection

机译:虚拟涡流齿轮:由微流体惯性驱动的独特流型导致精确注入

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摘要

An interesting phenomenon that vortices are sequentially generated on a microfluidic chip is investigated in this paper. The direction of every two adjacent vortices is opposite to each other, like a set of gears, and thus is named virtual vortex gear (VVG). Both experiments and computational simulations were conducted in order to make clear the mechanism of VVG. The experimental results show that only the flow from a particular point would form vortices and enter the target chamber. A technique of inverse mapping is proposed based on the phenomenon and it demonstrates that only a pinpoint injection is sufficient to control the contents of a microfluidic chamber. VVG can significantly reduce the volume of chemical usage in biological research and has potential for other on-chip applications, such as mixing and valving.
机译:本文研究了一种有趣的现象,即在微流体芯片上依次产生涡流。每两个相邻涡流的方向彼此相反,就像一组齿轮一样,因此被称为虚拟涡流齿轮(VVG)。为了明确VVG的机理,进行了实验和计算仿真。实验结果表明,只有来自特定点的流动会形成涡流并进入目标腔室。提出了一种基于这种现象的逆映射技术,该技术表明仅精确注入就足以控制微流体腔的内容。 VVG可以大大减少生物学研究中化学药品的使用量,并且对于其他片上应用(例如混合和阀控)具有潜力。

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