首页> 外文会议>International Conference on Nanochannels, Microchannels, and Minichannels >NUMERICAL AND EXPERIMENTAL INVESTIGATION ON EVAPORATION OF WATER DROPLET ON SURFACES WITH MIXED WETTABILITY
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NUMERICAL AND EXPERIMENTAL INVESTIGATION ON EVAPORATION OF WATER DROPLET ON SURFACES WITH MIXED WETTABILITY

机译:混合润湿性曲面蒸发的数值和实验研究

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Droplet evaporation is one of the most commonly observed phenomena and plays an important role in many applications such as in spray cooling, coating, and inkjet printing. Mechanisms such as dynamics of the contact line, evaporation-induced phase transitions, and formation of patterns on the substrate interact with each other in the evaporation of droplets. In this study, we investigated the effect of surface mixed wettability on water sessile droplet evaporation. The transient contact angle, center-height, contact radius, surface area, and droplet volume were experimentally measured and numerically estimated. Surfaces with mixed wettability consisting of hydrophilic islands surrounded by less hydrophilic area were fabricated Visualization was conducted to capture droplet dynamics during evaporation using two high-speed cameras. According to the obtained results, there were three distinct stages in the water evaporation process: a constant contact radius mode, a constant contact angle mode, and a mixed-mode. The COMSOL 5.4 software was used for numerical analysis. According to the results, the receding contact angle and Marangoni instability in the droplet are two main factors that alter droplet dynamics and droplet evaporation.
机译:液滴蒸发是最常见的现象之一,并且在许多应用中起重要作用,例如喷雾冷却,涂层和喷墨印刷。诸如接触线的动态,蒸发诱导的相变的机制,以及衬底上的图案的形成在滴液体中彼此相互作用。在这项研究中,我们研究了表面混合润湿性对水无牙液滴蒸发的影响。经过实验测量和数量估计瞬态接触角,中心高度,接触半径,表面积和液滴体积。在使用两种高速摄像机蒸发过程中,制造具有较少亲水区域包围的亲水性潜水岛的混合润湿性的表面进行了制作可视化,以捕获液滴动力学。根据所得的结果,水蒸发过程中存在三个不同的阶段:恒定的接触半径模式,恒定接触角模式和混合模式。 COMSOL 5.4软件用于数值分析。根据结果​​,液滴中的后退接触角和Marangoni不稳定性是改变液滴动力学和液滴蒸发的两个主要因素。

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