首页> 外文会议>International Conference on Nanochannels, Microchannels and Minichannels; 20070618-20; Puebla(MX) >Mechanism for Formation of Highly Monodisperse Droplet in a Microfluidic T-junction Device
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Mechanism for Formation of Highly Monodisperse Droplet in a Microfluidic T-junction Device

机译:微流控T型接头中高单分散液滴的形成机理

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Droplet formation in a microfluidic T-junction device which is high aspect ratio rectangular channel connected By a perpendicular channel were investigated experimentally. This geometry is quite similar to the classic T-junction device, however the perpendicular channel is a slightly narrower with respect to the dispersed phase inlet, leading to remarkably different result. The perfectly controllable droplets were found to be monodispersed with a less than 2% variation in micron size. Experimental results, including the relation between diameter and flow rates, the change of the velocity and pressure at drop break-up process, had been analyzed in detail. The single breakup process and the quasistatic character were described by evolution of the width and length of the liquid-liquid interface. Finally, in contrast to the capillary instability in an unbounded fluid, the breakup process was explained in term of absolute instabilities.
机译:实验研究了由垂直通道连接的高长宽比矩形通道的微流控T型接头中的液滴形成。这种几何形状与经典的T型结设备非常相似,但是垂直通道相对于分散相进口略窄,导致结果明显不同。发现完美可控的液滴是单分散的,微米尺寸变化小于2%。详细分析了实验结果,包括直径与流量之间的关系,液滴破裂过程中速度和压力的变化。通过液-液界面的宽度和长度的变化来描述单个破裂过程和准静态特性。最后,与无边界流体中的毛细管不稳定性相反,破裂过程是用绝对不稳定性来解释的。

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