Global ETD Search
Search theses and dissertations gathered from participating repositories worldwide. Every result links back to the library that holds it. No account is needed.
Results
Showing 1 to 12 of 12 for “"Non-wetting surfaces"”.
-
Experimental Investigations on Non-Wetting Surfaces
Superhydrophobic (SHS) and lubricant-infused surfaces (LIS) exhibit exceptional non-wetting characteristics that make them attractive for energy production applications including steam condensation and fouling mitigation. The dissertation work focuses on application of non-wetting surfaces to …
-
Analysis of Interfacial Processes on Non-Wetting Surfaces
Non-wetting surfaces mainly categorized into superhydrophobic (SHS), lubricant-infused (LIS) and solid-infused surfaces (SIS), by virtue of their superior water repellant properties have wide applications in several energy and environmental systems. In this dissertation, the role of non-wetting …
-
A Study of Dew Harvesting and Freezing Performance of Non-Wetting Surfaces
Non-wetting surfaces offer enhanced capabilities over bare metal substrates for condensation with or without phase change. This trait can be utilized to broaden strategies in combating water scarcity in water stressed areas. Slippery lubricant infused surfaces have the ability to shed water …
-
Exploring plastron stability and fluid friction reduction on robust micro-textured non-wetting surfaces
Non-wetting surfaces are characterized by the presence of stable pockets of vapor trapped within the asperities of the surface morphology. The utility of these surfaces in reducing skin friction in viscous laminar and turbulent flows is experimentally and theoretically investigated and is the main …
-
Heat transfer through a condensate droplet on hydrophobic and nanostructured superhydrophobic surfaces
… mechanisms governing vapor condensation on non-wetting surfaces is crucial to a wide range of energy and water applications. In this thesis, we reconcile classical droplet growth modeling barriers by utilizing two-dimensional axisymmetric numerical simulations to study individual droplet …
-
Studies on Corrosion, Fouling and Durability of Advanced Functional Nonwetting Surfaces
Superhydrophobic and lubricant-infused porous surfaces are two classes of non-wetting surfaces that are inspired by the adaptation of natural surfaces such as lotus leaves, pond skater legs, butterfly wings, and Nepenthes pitcher plant. This dissertation focuses on fabrication and in depth study of …
-
Dropwise condensation on hydrophilic surfaces
… has shown dropwise condensation heat transfer on non-wetting surfaces to be an order of magnitude higher than filmwise condensation heat transfer on wetting substrates. However, the necessity for non-wetting to achieve dropwise condensation is unclear. Here we report stable dropwise condensation …
-
Condensation heat flux measurements in ambient conditions on superhydrophobic nanostructured surfaces
Water vapor condensation is a natural phenomenon experienced in everyday life which can be combined with non-wetting surfaces to enhance heat transfer, desalination, anti-icing and self-cleaning. Recently, superhydrophobic coatings have gathered attention with jumping droplets with the potential …
-
Active lubricant-impregnated surfaces
… of actively controlled lubricant-impregnated surfaces for enhanced droplet mobility and manipulation. Droplet manipulation and mobility on non-wetting surfaces is of practical importance for diverse applications ranging from micro-fluidic devices, anti-icing, drop-wise condensation and …
-
The Effects of Surface Topography on Droplet Evaporation and Condensation
… the rapid development of the nature-inspired non-wetting surfaces has promoted the applications of droplet-based phase change phenomena in various scenarios. However, most previous studies focused on the sessile droplets on one flat surface in the open space, and the effects of surface …
-
Intricate Dynamics of Droplet-Substrate Interactions Beyond Conventional Limitations
… on heated microstructured superhydrophobic surfaces is experimentally and theoretically explored across a temperature range of 20 °C to 120 °C. A thermal circuit model is developed to decouple heat and mass transfer contributions from the droplet cap and base. The findings reveal that …
-
Droplet-based Two-phase Thermal Management
… as droplet evaporation, droplet impact on heated surfaces, and molten droplet impact. In this dissertation, four research projects are completed to explore the insights of these fundamental processes. For droplet evaporation, I introduce an investigation of diffusion confinement of droplets …