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Observations of internal flow inside an evaporating nanofluid sessile droplet in the presence of an entrapped air bubble

机译:在存在气泡的情况下观察到的蒸发的纳米流体无蒂液滴内部的内部流动的观察

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摘要

Using a unique, near-field microscopy technique, fringe patterns and nanoparticle motions are visualized immediately following a nanofluid droplet deposition on a glass substrate in which an air bubble is entrapped. The nanofluid consists of DI-water, 0.10% Aluminum Oxide nanoparticles with an average diameter of 50 nm, and 0.0005% yellow-green polystyrene fluorescent particles of 1 μm diameter. High-speed, fluorescent-mode confocal imaging enables investigation of depth-wise sectioned particle movements in the nanofluid droplet inside which a bubble is entrapped. The static contact angle is increased when a bubble is applied. In the presence of the bubble in the droplet, the observed flow toward the center of the droplet is opposite to the flow observed in a droplet without the bubble. When the bubble is present, the evaporation process is retarded. Also, random motion is observed in the contact line region instead of the typical evaporation-driven flow toward the droplet edge. Once the bubble bursts, however, the total evaporation time decreases due to the change in the contact line characteristics. Moreover, the area of fringe patterns beneath the bubble increases with time. Discussed herein is a unique internal flow that has not been observed in nanofluid droplet evaporation.
机译:使用独特的近场显微镜技术,在纳米流体液滴沉积在其中截留了气泡的玻璃基板上之后,可以立即看到条纹图案和纳米粒子运动。纳米流体由去离子水,平均直径为50μm的0.10%氧化铝纳米颗粒和直径为1μm的0.0005%黄绿色聚苯乙烯荧光颗粒组成。高速荧光模式共聚焦成像可以研究截留气泡的纳米流体液滴中的深度截面颗粒运动。施加气泡时,静态接触角会增加。在液滴中存在气泡的情况下,观察到的朝向液滴中心的流动与在没有气泡的液滴中观察到的流动相反。当存在气泡时,蒸发过程被延迟。而且,在接触线区域观察到随机运动,而不是朝向液滴边缘的典型的蒸发驱动流。然而,一旦气泡破裂,由于接触线特性的改变,总蒸发时间减少。而且,气泡下方的条纹图案的面积随时间增加。本文讨论的是独特的内部流,在纳米流体液滴蒸发中尚未观察到。

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