Abubakar Abba Abdulhamid, Yilbas Bekir Sami, Al-Qahtani Hussain, Mohammed Anwaruddin Siddiqui
Mechanical Engineering Department, KFUPM, Dhahran 31261, Kingdom of Saudi Arabia.
Mechanical Engineering Department, KFUPM, Dhahran 31261, Kingdom of Saudi Arabia and Center of Research Excellence in Renewable Energy (CoRE-RE), KFUPM, Dhahran 31261, Kingdom of Saudi Arabia.
Soft Matter. 2021 Aug 11;17(31):7311-7321. doi: 10.1039/d1sm00746g.
Rolling liquid droplets are of great interest for various applications including self-cleaning of surfaces. Interfacial resistance, in terms of pinning and shear rate, has a critical role in droplet rolling dynamics on hydrophobic surfaces. Lowering the interfacial resistance requires reducing the droplet wetting length and droplet fluid contact area on hydrophobic surfaces. The present study examines droplet rolling behavior on inclined hydrophobized metallic meshes, which facilitate reduced wetting length and contact area of droplets. Experiments are carried out using a high-speed recording facility to evaluate droplet translational and rolling velocities over various sizes of hydrophobized meshes. The flow field inside the droplet fluid is simulated in 3-dimensional space mimicking the conditions of experiments. The findings reveal that droplet translational velocity attains significantly higher values for hydrophobized meshes than plain hydrophobized metallic surfaces. Increasing the mesh size enhances the droplet velocity and reduces the droplet kinetic energy dissipation created by interfacial surface tension and shear forces. Increasing the droplet volume enhances the droplet velocity despite the fact that pinning and frictional forces increase at the liquid-mesh interface. Hence, for rolling droplets on the mesh surface, the increase in the gravitational force component becomes larger than the increase in interfacial pinning and frictional forces.
滚动的液滴在包括表面自清洁在内的各种应用中具有重要意义。从钉扎和剪切速率方面来看,界面阻力在疏水表面上的液滴滚动动力学中起着关键作用。降低界面阻力需要减小疏水表面上液滴的润湿长度和液滴流体接触面积。本研究考察了倾斜疏水金属网上的液滴滚动行为,这有助于减小液滴的润湿长度和接触面积。使用高速记录设备进行实验,以评估不同尺寸疏水网面上液滴的平移速度和滚动速度。在模拟实验条件的三维空间中对液滴流体内部的流场进行模拟。研究结果表明,与普通疏水金属表面相比,疏水网面上液滴的平移速度明显更高。增大网孔尺寸可提高液滴速度,并减少由界面表面张力和剪切力产生的液滴动能耗散。尽管在液 - 网界面处钉扎力和摩擦力增加,但增大液滴体积仍可提高液滴速度。因此,对于网面上滚动的液滴,重力分量的增加大于界面钉扎力和摩擦力的增加。