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首页> 外文期刊>Physics of fluids >Circulation within confined droplets in Hele-Shaw channels
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Circulation within confined droplets in Hele-Shaw channels

机译:Hele-Shaw通道中的受限液滴内的循环

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Liquid droplets flowing through a rectangular microfluidic channel develop a vortical flow field due to the presence of shear forces from the surrounding fluid. In this paper, we present an experimental and computational study of droplet velocities and internal flow patterns in a rectangular pressure-driven flow for droplet diameters ranging from 0.1 to 2 times the channel height. Our study shows excellent agreement with asymptotic predictions of droplet and interfacial velocities for infinitesimally small droplets. As the droplet diameter nears the size of the channel height, the droplet velocity slows significantly, and the changing external flow field causes a qualitative change in the location of internal vortices. This behavior is relevant for future studies of mass transfer in microfluidic devices.
机译:由于存在来自周围流体的剪切力,流过矩形微流体通道的液滴会形成涡流场。在本文中,我们对矩形压力驱动流中的液滴速度和内部流型进行了实验和计算研究,液滴直径范围为通道高度的0.1至2倍。我们的研究表明,与无限大的小液滴的液滴渐近线预测和界面速度非常吻合。随着液滴直径接近通道高度的大小,液滴速度会显着降低,并且不断变化的外部流场会导致内部涡旋的位置发生质的变化。此行为与微流体设备中传质的未来研究有关。

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