首页> 外文会议>ASME Fluids Engineering Division summer meeting >EFFECTS OF AMBIENT AIR RELATIVE HUMIDITY AND SURFACE TEMPERATURE ON WATER DROPLET SPREADING DYNAMICS
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EFFECTS OF AMBIENT AIR RELATIVE HUMIDITY AND SURFACE TEMPERATURE ON WATER DROPLET SPREADING DYNAMICS

机译:空气相对湿度和地表温度对水滴扩散动力学的影响

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Water droplet impact on horizontal glass, aluminum, and superhydrophobic surfaces is experimentally investigated using high speed imaging. Experiments are performed at three different relative humidities (i.e. 10, 20 and 30%) and three surface temperatures (i.e. 20,2 and -2?) to ascertain their effects on droplet spreading and recoil behaviors. In this study, the droplet Weber number, Reynolds number, and the ambient air temperature are fixed at 16.2, 1687, and 23?, respectively. The high-speed images of impact, spreading and recoil of the droplets as well as the temporal variations of droplet spreads are prepared. Results show that the ratio of surface temperature to dew point temperature (which depends on the air temperature and relative humidity) has a significant influence on droplet spreading, recoil, and contact angle. When this ratio is less than one, condensation and frost formation become important. Decreasing the mentioned ratio (it can be done by decreasing the surface temperature or increasing the relative humidity) causes the droplet spreading factor for hydrophilic surfaces to increase significantly. For superhydrophobic surface, decreasing this ratio (within the mentioned range) does not influence the maximum spreading. However, the recoiling phase is slowed down and the droplet detachment time form the superhydrophobic surface is increased noticeably. In addition, the equilibrium contact angle decreases as the mentioned ratio decreases.
机译:使用高速成像实验研究了水滴对水平玻璃,铝和超疏水表面的影响。实验是在三种不同的相对湿度(即10、20和30%)和三种表面温度(即20,2和-2?)下进行的,以确定它们对液滴散布和反冲行为的影响。在这项研究中,液滴的韦伯数,雷诺数和周围空气温度分别固定为16.2、1687和23?。准备了液滴的撞击,散布和反冲以及液滴散布的时间变化的高速图像。结果表明,表面温度与露点温度之比(取决于空气温度和相对湿度)对液滴散布,反冲力和接触角有很大影响。当该比率小于1时,凝结和结霜变得重要。降低上述比率(可以通过降低表面温度或增加相对湿度来完成),使亲水性表面的液滴散布系数显着增加。对于超疏水表面,减小该比例(在上述范围内)不会影响最大铺展。然而,回卷阶段变慢,并且从超疏水表面形成的液滴分离时间显着增加。另外,平衡接触角随着所述比率的减小而减小。

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