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Self-driven penetration of droplets into non-wetting capillaries

机译:将液滴的自驱动渗透到非润湿毛细血管中

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This is a successive study to our previous study published in this journal. In the present study, a further numerical study on the penetration of a droplet into non-wetting capillaries is carried out by using many-body dissipative particle dynamics (MDPD). The simulation results show the outer (outside of the capillary) and inner (inside of the capillary) curvatures of the droplet can cause two Laplace pressures. The difference between these two pressures forms a net pushing force which directly drives the droplet flowing into the non-wetting capillary. We give a detailed analysis on how the outer and inner curvatures change during the penetration process. To further show the effect of the Laplace pressure difference on the droplet movement, we also simulate a new droplet/capillary/film system. In this system, the droplet and liquid film are placed at both ends of a prefilled capillary. It is very interesting to find that the droplet penetrates even faster in lyophobic capillaries over lyophilic ones, and the spontaneous penetration does not pose any wettability restriction which is different from previous study in literatures. The present work is expected to provide new ideas for designing microfluidics or nanofluidics devices by utilizing the driving force from the droplet itself. (C) 2017 Elsevier Ltd. All rights reserved.
机译:这是我们在本杂志上发布的前一项研究的连续研究。在本研究中,通过使用许多体耗散粒子动态(MDPD)来进行关于液滴渗入非润湿毛细管的进一步数值研究。仿真结果显示外部(毛细管外侧)和内部(毛细管内侧)液滴的曲率可能导致两个拉普拉斯压力。这两个压力之间的差异形成净推动力,该净推动力直接驱动流入非润湿毛细管的液滴。我们详细分析了外部和内曲线在渗透过程中的变化。为了进一步显示拉普拉斯压差对液滴运动的影响,我们还模拟了新的液滴/毛细管/薄膜系统。在该系统中,将液滴和液体膜放置在预填充毛细管的两端。非常有趣的是发现液滴在冻干毛细血管中渗透甚至更快地穿透冻干,并且自发性渗透不会造成与先前文献中的研究不同的任何润湿性限制。预计目前的工作是通过利用来自液滴本身的驱动力来设计用于设计微流体或纳米流体装置的新思路。 (c)2017 Elsevier Ltd.保留所有权利。

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