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High-speed pulsed mixing in a short distance with high-frequency switching of pumping from three inlets

机译:短距离高速脉冲混合,并通过高频切换从三个入口进行泵送

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摘要

In this study, we propose a mixing method using alternate pulsed flows from three inlets with flow direction control. In conventional pulsed mixing, a residual flow near the sidewalls inhibits the rapid mixing of two solutions at high switching frequency. In this study, we addressed this issue in order to perform rapid mixing in a short distance with a low Reynolds number. We fabricated a microfluidic mixing device consisting of a cross-shaped mixing channel with three inlet microchannels and three valveless micropumps. In conventional T-shaped or Y-shaped mixing channels, a residual flow is observed because of the incomplete switching of solutions. The three inlet configuration enabled us to split the residual flow at a switching frequency of pumping of up to 200 Hz, thus resulting in rapid mixing. Furthermore, by controlling the flow direction at the confluent area using the reverse flow of the micropump, the mixing speed was dramatically increased because of the complete switching of the two solutions. As a result, we achieved the mixing time of 3.6 ms and the mixing length of 20.7 mu m, which were necessary to achieve a 90% mixing ratio at a high micropump switching frequency of 400 Hz and reverse flow ratio of 1/4.
机译:在这项研究中,我们提出了一种混合方法,该方法使用来自三个入口的交替脉冲流以及流向控制。在传统的脉冲混合中,侧壁附近的残留流会抑制两种溶液在高开关频率下的快速混合。在这项研究中,我们解决了这个问题,以便在短距离内以低雷诺数进行快速混合。我们制造了一种微流体混合装置,该装置由带有三个入口微通道和三个无阀微型泵的十字形混合通道组成。在常规的T形或Y形混合通道中,由于溶液交换不完全,会观察到残余流量。三个入口配置使我们能够以高达200 Hz的泵浦切换频率分配剩余流量,从而实现快速混合。此外,通过使用微型泵的逆流控制汇合区域的流动方向,由于两种溶液的完全切换,混合速度得到了显着提高。结果,我们实现了3.6 ms的混合时间和20.7μm的混合长度,这对于在400 Hz的高微型泵切换频率和1/4的逆流比下实现90%的混合比是必不可少的。

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