Yilbas Bekir Sami, Yakubu Mubarak, Abubakar Abba Abdulhamid, Al-Qahtani Hussain, Sahin Ahmet, Al-Sharafi Abdullah
Mechanical Engineering Department, King Fahd University of Petroleum and Minerals, Dhahran, 31261, Saudi Arabia.
Center of Research Excellence in Renewable Energy (CoRE-RE), KFUPM, Dhahran, 31261, Saudi Arabia.
Sci Rep. 2021 Jul 23;11(1):15086. doi: 10.1038/s41598-021-94523-8.
A water droplet rolling and spinning in an inclined hydrophobic wedge with different wetting states of wedge plates is examined pertinent to self-cleaning applications. The droplet motion in the hydrophobic wedge is simulated in 3D space incorporating the experimental data. A high-speed recording system is used to store the motion of droplets in 3D space and a tracker program is utilized to quantify the recorded data in terms of droplet translational, rotational, spinning, and slipping velocities. The predictions of flow velocity in the droplet fluid are compared with those of experimental results. The findings revealed that velocity predictions agree with those of the experimental results. Tangential momentum generated, via droplet adhesion along the three-phase contact line on the hydrophobic plate surfaces, creates the spinning motion on the rolling droplet in the wedge. The flow field generated in the droplet fluid is considerably influenced by the shear rate created at the interface between the droplet fluid and hydrophobic plate surfaces. Besides, droplet wobbling under the influence of gravity contributes to the flow inside the rolling and spinning droplet. The parallel-sided droplet path is resulted for droplet emerging from the wedge over the dusty surface.
研究了在具有不同润湿状态楔形板的倾斜疏水楔形物中滚动和旋转的水滴,这与自清洁应用相关。结合实验数据,在三维空间中模拟了疏水楔形物中的水滴运动。使用高速记录系统存储水滴在三维空间中的运动,并利用跟踪程序根据水滴的平移、旋转、自旋和滑动速度对记录的数据进行量化。将水滴流体中的流速预测结果与实验结果进行比较。研究结果表明,流速预测与实验结果一致。通过水滴在疏水板表面三相接触线上的粘附产生的切向动量,使楔形物中滚动的水滴产生自旋运动。水滴流体中产生的流场受到水滴流体与疏水板表面之间界面处产生的剪切速率的显著影响。此外,在重力影响下水滴的摆动有助于滚动和自旋水滴内部的流动。水滴从楔形物中出来落在灰尘表面上时会形成平行边的水滴轨迹。