Hassan Ghassan, Yilbas Bekir Sami, Al-Sharafi Abdullah, Al-Qahtani Hussain
Department of Mechanical Engineering, King Fahd University of Petroleum and Minerals (KFUPM), Dhahran, 31261, Saudi Arabia.
Center of Research Excellence in Renewable Energy (CoRE-RE), King Fahd University of Petroleum and Minerals (KFUPM), Dhahran, 31261, Saudi Arabia.
Sci Rep. 2019 Apr 5;9(1):5744. doi: 10.1038/s41598-019-42318-3.
A water droplet behavior on a hydrophobic surface is examined relevant to the dust particles removal from the surface. Surface crystallization of polycarbonate is realized in acetone bath and the resulting surface is coated by the functionalized nano-size silica particles towards reducing contact angle hysteresis. This arrangement provides droplet rolling/sliding on the hydrophobic surface. Droplet translational velocity is formulated and predictions are compared with those resulted from the high speed recorded data. Influence of surface inclination angle on droplet dynamics is investigated and the dust removal mechanism on the inclined surface is analyzed. It is found that predictions of droplet translational velocity agree well with those obtained from the experiment. Droplet rolling dominates over sliding on the inclined surface and droplet sliding velocity remains almost 10% of the droplet translational velocity. The main mechanism for the dust particles removal is associated with the droplet fluid cloaking of the dust particles during its transition on the hydrophobic surface. Droplet acceleration, due to increased surface inclination angle, has effect on the rate of dust particles removal from the surface, which is more apparent for large droplet volumes. Increasing droplet acceleration improves the coverage area of the clean surface.
研究了疏水性表面上的水滴行为与从该表面去除灰尘颗粒的相关性。聚碳酸酯在丙酮浴中实现表面结晶,然后用功能化的纳米级二氧化硅颗粒对所得表面进行涂层处理,以减小接触角滞后。这种设置使水滴在疏水表面上滚动/滑动。建立了水滴平移速度公式,并将预测结果与高速记录数据的结果进行了比较。研究了表面倾斜角度对水滴动力学的影响,并分析了倾斜表面上的除尘机制。发现水滴平移速度的预测结果与实验结果吻合良好。在倾斜表面上,水滴滚动比滑动更占主导地位,水滴滑动速度几乎保持在水滴平移速度的10%。去除灰尘颗粒的主要机制与水滴在疏水表面过渡期间对灰尘颗粒的流体包裹有关。由于表面倾斜角度增加导致的水滴加速,对从表面去除灰尘颗粒的速率有影响,对于大体积水滴来说这种影响更明显。增加水滴加速度可提高清洁表面的覆盖面积。