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Microfluidic parallel circuit for measurement of hydraulic resistance

机译:测量流体阻力的微流体并联回路

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摘要

We present a microfluidic parallel circuit that directly compares the test channel of an unknown hydraulic resistance with the reference channel with a known resistance, thereby measuring the unknown resistance without any measurement setup, such as standard pressure gauges. Many of microfluidic applications require the precise transport of fluid along a channel network with complex patterns. Therefore, it is important to accurately characterize and measure the hydraulic resistance of each channel segment, and determines whether the device principle works well. However, there is no fluidic device that includes features, such as the ability to diagnose microfluidic problems by measuring the hydraulic resistance of a microfluidic component in microscales. To address the above need, we demonstrate a simple strategy to measure an unknown hydraulic resistance, by characterizing the hydraulic resistance of microchannels with different widths and defining an equivalent linear channel of a microchannel with repeated patterns of a sudden contraction and expansion.
机译:我们提出了一种微流体并联电路,该电路可以直接比较未知液压阻力的测试通道与已知电阻的参考通道,从而无需任何测量设置(例如标准压力表)即可测量未知电阻。许多微流体应用需要沿着具有复杂模式的通道网络精确地传输流体。因此,准确地表征和测量每个通道段的水力阻力,并确定装置原理是否运作良好非常重要。然而,不存在包括特征的流体装置,例如通过以微尺度测量微流体部件的水力阻力来诊断微流体问题的能力。为了满足上述需求,我们通过表征具有不同宽度的微通道的水力阻力并定义具有重复的突然收缩和膨胀模式的微通道的等效线性通道,来演示一种测量未知水力阻力的简单策略。

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