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Modeling of the pressure fluctuations induced by the process of droplet formation in a T-junction microdroplet generator

机译:T型结微型机发生器中液滴形成过程诱导的压力波动的建模

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To quantitatively study the pressure fluctuations induced by the process of droplet formation in a T-junction microdroplet generator, the mathematical model which can accurately predict the amplitude and the frequency of the pressure fluctuations is demonstrated. Different geometries of the T-junction microchannels are designed for the experiments of droplet formation, and the time-varying pressure difference between the upstream and downstream of each droplet is measured during the droplet production progress. From both theoretical and experimental study, it can be observed the pressure difference is a periodic function of time for the whole process of droplet generation. In particular, the frequency of the pressure fluctuations coincides with the production rate of droplets, and the amplitude of the pressure fluctuations varies with the geometrical parameters of the T-junctions. Additionally, good agreements are shown between the theoretical calculations and the experimental measurements of the magnitude of the pressure fluctuations. Therefore, our mathematical model is validated experimentally, and the magnitude of the pressure fluctuations can be drastically reduced by optimization of the geometrical parameters of the T-junction. (C) 2018 Elsevier B.V. All rights reserved.
机译:定量研究通过在T形接头的微滴发生器液滴形成过程中引起的压力波动,这可准确地预测振幅和压力波动的频率的数学模型被证明。丁字路口微通道不同的几何形状被设计用于液滴形成的实验中,与上游和每个液滴的下游之间的随时间变化的压力差过程中,液滴生产进度测量。从理论和实验研究,可以观察到的压力差的时间为液滴产生的整个过程的周期函数。特别地,与液滴的生产速率,和压力波动的幅值的压力波动一致的频率与T形接头的几何参数而变化。此外,良好的协议中示出了理论计算和压力波动的大小的实验测量值之间。因此,我们的数学模型实验验证,并可以通过丁字路口的几何参数的优化可以大大减少压力波动的幅度。 (c)2018年elestvier b.v.保留所有权利。

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