首页> 外文期刊>Experimental Thermal and Fluid Science: International Journal of Experimental Heat Transfer, Thermodynamics, and Fluid Mechanics >Droplets containing large solid particle inside formation and breakup dynamics in a flow-focusing microfluidic device
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Droplets containing large solid particle inside formation and breakup dynamics in a flow-focusing microfluidic device

机译:在流动聚焦的微流体装置中包含大型固体粒子的液滴内部形成和分手动力学

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摘要

The breakup dynamics of compound droplets containing large particle inside (S/W/O) in a flow-focusing microfluidic device were systematically investigated, and four typical flow regimes, regarding multiple-encapsulation, slug, transition and cobble, are distinguished. At low flow rate of outer fluid, Q(c) < 140 mL/h, the neck breakup can be divided into squeezing stage (W-n/W-c >= 0.25), and rapid pinch-off stage (W-n/W-c <= 0.25) during the whole formation process. However, for Q(c) >= 140 mL/h, the neck rupture behavior appears various, in which only rapid pinch-off stage can be observed. Generally, the neck dimensionless width, W-n/W-c variation with remaining time usually obeys a power law function. Moreover, the liquid film thickness always obtains a critical value as the flow rate of outer fluid further increases. Specially, it suggests that the differences in the breakup dynamics are mainly caused by the existence of solid particles. Finally, the corresponding driving mechanisms were also discussed.
机译:系统地研究了在流动聚焦微流体装置中含有大颗粒内部(S / W / O)内的复合液滴的分解动力学,并有四种典型的流动制度,关于多重封装,SLUG,过渡和鹅卵石。在外流体的低流速下,Q(C)<140mL / h,颈部分解可以分为挤压阶段(Wn / Wc> = 0.25),快速夹紧阶段(Wn / Wc <= 0.25)在整个形成过程中。然而,对于Q(c)> = 140ml / h,颈部破裂行为看起来各种各样,其中可以观察到快速夹紧阶段。通常,颈部无量纲宽度,W-N / W-C与剩余时间的变化通常通常遵守电力法函数。此外,随着外部流体的流速进一步增加,液体膜厚度总是获得临界值。特别是,它表明分手动态的差异主要是由固体颗粒的存在引起的。最后,还讨论了相应的驱动机制。

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