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Influence of surface tension-driven network parameters on backflow strength

机译:表面张力驱动网络参数对回流强度的影响

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摘要

Surface tension-driven flow is widely used, owing to its spontaneous motion, in microfluidic devices with single channel structures. However, when multiple channels are used, unwanted backflow often occurs. This prevents precise and sophisticated solution flow, but has been rarely characterized. We hypothesize that, with an analytical model, the parameters that influence backflow can be systematically characterized to minimize the backflow. In a microfluidic network, inlet menisci and channels are modeled as variable pressure sources and fluidic conductors, respectively. Through the model and experiment, the influence of each network element on the backflow strength is studied. Backflow strength is affected by the interplay of multiple inlet-channel elements. With the decrease (increase) of the fluidic channel conductance (inlet size), the backflow pressure of the corresponding inlet decreases. On the other hand, backflow volume reaches its peak value during the radius change of the corresponding inlet. In networks consisting of five inlet-channel elements, backflow pressure decreases with increasing step number. Our results provide the foundations for microfluidic networks driven by the Laplace pressure of inlet menisci.
机译:由于其自发运动,在具有单通道结构的微流体装置中,表面张力驱动的流动被广泛使用。但是,当使用多个通道时,通常会发生不需要的回流。这可以防止精确和复杂的解决方案流动,但很少表征。我们假设,通过分析模型,可以系统地表征影响回流的参数,以最小化回流。在微流体网络中,入口半月板和通道分别被设计为可变压力源和流体导体。通过模型和实验,研究了每个网络元件对回流强度的影响。回流强度受到多个入口元件的相互作用的影响。随着流体通道电导(入口尺寸)的降低(增加),相应入口的回流压力降低。另一方面,回流音量在相应入口的半径变化期间达到其峰值。在由五个入口元件组成的网络中,回流压力随着步数的增加而降低。我们的结果为来自入口半月板的拉普拉斯压力驱动的微流体网络基础提供了基础。

著录项

  • 来源
    《RSC Advances 》 |2019年第18期| 共7页
  • 作者单位

    Konkuk Univ Dept Mech Engn Seoul 05029 South Korea;

    Konkuk Univ Dept Mech Engn Seoul 05029 South Korea;

    Konkuk Univ Dept Mech Engn Seoul 05029 South Korea;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学 ;
  • 关键词

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