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Prediction of Droplet Production Speed by Measuring the Droplet Spacing Fluctuations in a Flow-Focusing Microdroplet Generator

机译:通过测量流聚焦微滴发生器中的液滴间距波动来预测液滴的生产速度

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摘要

In a flow-focusing microdroplet generator, by changing the flow rates of the two immiscible fluids, production speed can be increased from tens to thousands of droplets per second. However, because of the nonlinearity of the flow-focusing microdroplet generator, the production speed of droplets is difficult to quantitatively study for the typical flow-focusing geometry. In this paper, we demonstrate an efficient method that can precisely predict the droplet production speed for a wide range of fluid flow rates. While monodisperse droplets are formed in the flow-focusing microchannel, droplet spacing as a function of time was measured experimentally. We discovered that droplet spacing changes periodically with time during each process of droplet generation. By comparing the frequency of droplet spacing fluctuations with the droplet production speed, precise predictions of droplet production speed can be obtained for different flow conditions in the flow-focusing microdroplet generator.
机译:在以流量为中心的微滴发生器中,通过更改两种不混溶的流体的流速,可以将生产速度从每秒的数十个液滴增加到数千个。然而,由于流动聚焦微滴发生器的非线性,对于典型的流动聚焦几何形状,很难对液滴的产生速度进行定量研究。在本文中,我们演示了一种有效的方法,该方法可以精确预测各种流体流速下的液滴产生速度。当在流动聚焦微通道中形成单分散液滴时,通过实验测量了液滴间距随时间的变化。我们发现在液滴产生的每个过程中,液滴间距会随着时间周期性变化。通过将液滴间距波动的频率与液滴产生速度进行比较,可以在聚焦聚流微滴发生器中针对不同的流动条件获得精确的液滴产生速度预测。

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