论文标题

纳米流体液滴中的违反直觉蒸发由于粘着滑移性质而引起的

Counter-intuitive evaporation in nanofluids droplets due to stick-slip nature

论文作者

A., Hari Govindha, Katre, Pallavi, Balusamy, Saravanan, Banerjee, Sayak, Sahu, Kirti Chandra

论文摘要

我们通过使用阴影和红外成像技术在加热的底物上,在实验中研究了含有Al $ _2 $ o $ _3 $和CU纳米颗粒的无连续乙醇液滴的蒸发特性。我们的结果表明,由于存在各种纳米颗粒而导致的液滴接触线动力学在蒸发过程中起主要作用。这与广泛持有的假设相反,即在静态纳米流体液滴中观察到的增强蒸发率是由于添加的纳米颗粒的导热率较高。我们观察到,即使Al $ _2 $ o $ _3 $的导热率比Cu低的订单,但含有25 nm尺寸的Al $ _2 $ o $ _3 $的液滴表现出固定的接触线动力学,并且蒸发得比包含Cu Nanoparts and $ $ y $ $ o的液滴蒸发得更快,并且蒸发得很快。粘滑行为。我们还发现,由于接触线行为的差异,带有不同纳米颗粒的液滴显示出不同的热图案,从而改变了液滴内部的热传递。我们通过分析底物上周长,自由表面积和沉积模式的时间变化来建立这种反直觉的观察。

We experimentally investigate the evaporation characteristics of a sessile ethanol droplet containing Al$_2$O$_3$ and Cu nanoparticles of sizes 25 nm and 75 nm on a heated substrate using shadowgraphy and infrared imaging techniques. Our results demonstrate that the droplet contact line dynamics resulting from the presence of various nanoparticles plays a dominant role in the evaporation process. This is in contrast to the widely-held assumption that the enhanced evaporation rate observed in sessile nanofluid droplets is due to the higher thermal conductivity of the added nanoparticles. We observe that even though the thermal conductivity of Al$_2$O$_3$ is an order of magnitude lower than that of Cu, droplets containing 25 nm-sized Al$_2$O$_3$ exhibit pinned contact line dynamics and evaporate much more rapidly than droplets containing Cu nanoparticles of both sizes and 75 nm Al$_2$O$_3$ nanoparticles that exhibit stick-slip behaviour. We also found that the droplets with different nanoparticles display distinct thermal patterns due to the difference in contact line behaviour, which alters the heat transfer inside the droplets. We establish this counter-intuitive observation by analysing the temporal variations of the perimeter, free surface area, and deposition patterns on the substrate.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源