Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

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

View through CrossRef
AbstractA 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 mm2 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.
Title: Dust mitigation by a water droplet in between movable and modified wetting states surfaces
Description:
AbstractA 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 mm2 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.

Related Results

Linear polarization as a tool to characterize interplanetary, cometary, and extrasolar dust particles
Linear polarization as a tool to characterize interplanetary, cometary, and extrasolar dust particles
SummaryLinear polarization observations have suggested the presence of dust particles that scatter solar light within cometary comae and the interplanetary dust cloud. Recent progr...
Influence of Working Pressure and Pressure Difference on Static Droplet Evaporation Characteristics
Influence of Working Pressure and Pressure Difference on Static Droplet Evaporation Characteristics
The function of steam separator is to remove the small droplets carried by the vapor stream and to provide qualified saturated vapor for the steam turbine in the nuclear power stat...
A New Mathematical Model for EOR Displacements Honouring Oil Ganglia
A New Mathematical Model for EOR Displacements Honouring Oil Ganglia
Abstract During two-phase flow in porous media non-wetting phase is present simultaneously in states of mobile connected continuum and of trapped isolated ganglia...
Controlled production of double emulsion by microfluid technique
Controlled production of double emulsion by microfluid technique
All planned inertial confinement fusion (ICF) capsule targets except machined beryllium require plastic mandrels with tight requirements on which the ablator is built. In this pape...
Lattice Boltzmann simulation of droplet dynamics in a bifurcating micro-channel
Lattice Boltzmann simulation of droplet dynamics in a bifurcating micro-channel
The droplet dynamic in a bifurcating micro-channel, as one of the basic multiphase problems, is frequently encountered in the fields of science and engineering. Due to its great re...
Dust deposition and lifting at the Zhurong landing site
Dust deposition and lifting at the Zhurong landing site
IntroductionDust deposition poses the challenges to the survival of instruments and solar-powered missions on Mars [1, 2]. Zhurong in-situ observations provide an opportunity to st...
Water Droplet Can Mitigate Dust from Hydrophobized Micro-Post Array Surfaces
Water Droplet Can Mitigate Dust from Hydrophobized Micro-Post Array Surfaces
Abstract Water droplet rolling motion over the hydrophobized and optically transparent micro-post array surfaces is examined towards dust removal pertinent to self-cleaning...
The importance of lunar dust mitigation during future human led lunar missions
The importance of lunar dust mitigation during future human led lunar missions
<p>With the Artemis mission set to launch in 2024, returning humans to the lunar surface for the first time in over half a century, it is imperative to ensure human h...

Back to Top