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在可移动和改性湿润状态表面之间,通过水滴实现灰尘减轻。

Dust mitigation by a water droplet in between movable and modified wetting states surfaces.

作者信息

Hassan Ghassan, Abubakar Abba Abdulhamid, Sami Yilbas Bekir, Al-Sharafi Abdullah, Al-Qahtani Hussain

机构信息

K.A.CARE Energy Research & Innovation Center, 31261, Dhahran, Saudi Arabia.

Mechanical Engineering Department, King Fahd University of Petroleum and Minerals (KFUPM), 31261, Dhahran, Saudi Arabia.

出版信息

Sci Rep. 2023 Sep 11;13(1):14927. doi: 10.1038/s41598-023-41695-0.

Abstract

A novel approach for mitigating environmental dust from hydrophobic surfaces using a water droplet is presented. A sessile droplet is sandwiched between two parallel plates, one of which is moveable and hydrophilic while the other is stationary and hydrophobic. Investigations are conducted into how plate spacing affects the dust mitigation rate and the droplet's level motion. The high-speed camera analyzes the droplet motion for various plate spacing, dusty regions, and droplet sizes. In a controlled laboratory setting, the movement of fluid and dust particles inside a droplet is simulated. The results showed that when a droplet is still, it effectively reduces dust. The droplet meniscus expands by decreasing the gap between the droplet and the surface, increasing the dust removal rate. While the Magdeburg force and surface tension influence the droplet's adhesion to a hydrophobic surface, surface tension remains the primary factor affecting droplet pinning on a hydrophilic plate, more so than pinning on a dusty hydrophobic surface. When compressing, a current is created in the droplet fluid, greatly accelerating the rate at which dust is removed from the hydrophobic surface. We also move a dangling droplet over a dirty surface to evaluate its cleaning effectiveness and find that a 60 µL droplet has a 97% cleaning effectiveness and can remove dust from up to 450 mm of surface area. Our study provides insight into the unique method of removing dust from active surfaces and sheds light on droplet pinning forces generated by the Magdeburg effect in nano-cavities during vertical and horizontal movement.

摘要

本文提出了一种利用水滴减轻疏水表面环境灰尘的新方法。一个静止的水滴夹在两个平行板之间,其中一个板是可移动的且亲水,另一个板是固定的且疏水。研究了板间距如何影响灰尘减轻率和水滴的水平运动。高速摄像机分析了不同板间距、多尘区域和水滴尺寸下的水滴运动。在可控的实验室环境中,模拟了水滴内部流体和灰尘颗粒的运动。结果表明,当水滴静止时,它能有效减少灰尘。通过减小水滴与表面之间的间隙,水滴弯月面会扩大,从而提高除尘率。虽然马格德堡力和表面张力会影响水滴在疏水表面的附着力,但表面张力仍然是影响水滴在亲水板上固定的主要因素,比在多尘疏水表面上的固定作用更大。压缩时,水滴流体中会产生电流,大大加快了从疏水表面去除灰尘的速度。我们还将一个悬垂的水滴在脏表面上移动,以评估其清洁效果,发现一个60微升的水滴具有97%的清洁效果,能够从多达450平方毫米的表面积上去除灰尘。我们的研究深入了解了从活性表面去除灰尘的独特方法,并揭示了在垂直和水平运动过程中纳米腔中马格德堡效应产生的水滴固定力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0c67/10495412/b6ccce155550/41598_2023_41695_Fig1_HTML.jpg

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