Water vapor condensation on metallic surfaces is critical to a broad range of applications, ranging from power generation to the chemical and pharmaceutical industries. Enhancing simultaneously the heat transfer efficiency, scalability, and durability of a condenser surface remains a persistent challenge. Coalescence-induced condensing droplet jumping is a capillarity-driven mechanism of self-ejection of microscopic condensate droplets from a surface. This mechanism is highly desired due to the fact that it continuously frees up the surface for new condensate to form directly on the surface, enhancing heat transfer without requiring the presence of the gravitational field. However, this condensate ejection mechanism typically requires the f...
This report examines the dropwise condensation heat transfer performance on additively manufactured ...
Non-wetting surfaces engineered from intrinsically hydrophilic metallic materials are promising for ...
Abstract Dynamics of micro droplets, coalescence underneath an inclined hydrophobic surface is explo...
Water vapor condensation on metallic surfaces is critical to a broad range of applications, ranging ...
Coalescence-induced jumping of condensate droplets has been studied as an emerging mode for enhanced...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2014.Ca...
Nanotextured superhydrophobic surfaces have received significant attention due to their ability to e...
Condensation of water on metallic surfaces is critical for multiple energy conversion processes. Enh...
Enhancing the thermal efficiency of a broad range of condenser devices requires means of achieving s...
Superhydrophobic surfaces represent a promising strategy to consistently promote dropwise condensati...
The coalescence-induced condensate drop motion on some superhydrophobic surfaces (SHSs) has attracte...
Nanostructured superhydrophobic surfaces have been actively explored to promote favorable droplet dy...
ABSTRACT: Superhydrophobic surfaces have shown excellent ability to promote dropwise condensation wi...
Condensation of water vapor is an essential process in power generation, water collection, and therm...
Phase change heat transfer is an essential phenomenon occurring both in nature and in our daily live...
This report examines the dropwise condensation heat transfer performance on additively manufactured ...
Non-wetting surfaces engineered from intrinsically hydrophilic metallic materials are promising for ...
Abstract Dynamics of micro droplets, coalescence underneath an inclined hydrophobic surface is explo...
Water vapor condensation on metallic surfaces is critical to a broad range of applications, ranging ...
Coalescence-induced jumping of condensate droplets has been studied as an emerging mode for enhanced...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2014.Ca...
Nanotextured superhydrophobic surfaces have received significant attention due to their ability to e...
Condensation of water on metallic surfaces is critical for multiple energy conversion processes. Enh...
Enhancing the thermal efficiency of a broad range of condenser devices requires means of achieving s...
Superhydrophobic surfaces represent a promising strategy to consistently promote dropwise condensati...
The coalescence-induced condensate drop motion on some superhydrophobic surfaces (SHSs) has attracte...
Nanostructured superhydrophobic surfaces have been actively explored to promote favorable droplet dy...
ABSTRACT: Superhydrophobic surfaces have shown excellent ability to promote dropwise condensation wi...
Condensation of water vapor is an essential process in power generation, water collection, and therm...
Phase change heat transfer is an essential phenomenon occurring both in nature and in our daily live...
This report examines the dropwise condensation heat transfer performance on additively manufactured ...
Non-wetting surfaces engineered from intrinsically hydrophilic metallic materials are promising for ...
Abstract Dynamics of micro droplets, coalescence underneath an inclined hydrophobic surface is explo...