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水平和垂直双疏图案化表面上静态水滴的蒸发

Evaporation of Sessile Water Droplets on Horizontal and Vertical Biphobic Patterned Surfaces.

作者信息

Qi Wenliang, Li Junhui, Weisensee Patricia B

机构信息

College of Power and Energy Engineering , Harbin Engineering University , Harbin 150001 , China.

出版信息

Langmuir. 2019 Dec 31;35(52):17185-17192. doi: 10.1021/acs.langmuir.9b02853. Epub 2019 Dec 20.

Abstract

This paper presents an experimental study on thermal transport to single water droplets evaporating on heated biphobic surfaces consisting of a superhydrophobic matrix with a circular hydrophobic pattern with strong contact line pinning. A single water droplet of 8 μL volume is placed on a preheated surface and allowed to evaporate in an open laboratory environment. We investigate the influence of substrate orientation (horizontal and vertical) on evaporation dynamics. Using optical and infrared imaging, we report droplet fluid dynamics and heat transfer characteristics of the evaporating droplet. Overall, evaporation is more efficient on the vertical surface, exhibiting higher total heat transfer rates and up to 10% shorter evaporation times. Counterintuitively, on the vertical surface, the substrate-droplet interfacial heat flux was higher near the lower contact line than in the upper region, despite a high contact angle and an expected wedge effect at the bottom. At the same time, the temperature is colder in the lower part of the droplet. We attribute this apparent anomaly to the competition between sensible heating and evaporation, and a modified convective flow signature (both within the droplet and the gas phase) compared to a horizontal surface. We also show that the thermal signature becomes uniform once the contact angles at the upper and lower contact lines become equal toward the end of the evaporation process. Insights from this work can guide the design of spray cooling devices or be used to alter particle deposition patterns during evaporation-based fabrication techniques and ink-jet printing.

摘要

本文介绍了一项关于热传输的实验研究,该研究针对的是在具有强接触线钉扎的圆形疏水图案的超疏水基质构成的加热双疏表面上蒸发的单个水滴。将一个体积为8 μL的单个水滴放置在预热表面上,并使其在开放的实验室环境中蒸发。我们研究了基底取向(水平和垂直)对蒸发动力学的影响。通过光学和红外成像,我们报告了蒸发水滴的流体动力学和传热特性。总体而言,垂直表面上的蒸发效率更高,表现出更高的总传热速率,蒸发时间缩短了多达10%。与直觉相反,在垂直表面上,尽管底部具有高接触角和预期的楔形效应,但基底-水滴界面热通量在较低接触线附近比上部区域更高。同时,水滴下部的温度更低。我们将这种明显的异常归因于显热加热和蒸发之间的竞争,以及与水平表面相比,(液滴内部和气相中的)对流流动特征的改变。我们还表明,在蒸发过程接近尾声时,当上、下接触线处的接触角变得相等时,热特征会变得均匀。这项工作的见解可指导喷雾冷却装置的设计,或用于改变基于蒸发的制造技术和喷墨打印过程中的颗粒沉积模式。

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