Superhydrophobic micro/nanostructured surfaces for dropwise condensation have recently received significant attention due to their potential to enhance heat transfer performance by shedding positively charged water droplets via coalescence-induced droplet jumping at length scales below the capillary length, and allowing the use of external electric fields to enhance droplet removal and heat transfer, in what has been termed electric-field-enhanced (EFE) jumping-droplet condensation. However, achieving optimal EFE conditions for enhanced heat transfer requires capturing the details of transport processes that is currently lacking. While a comprehensive model has been developed for condensation on micro/nanostructured surfaces, it cannot be a...
Dropwise condensation has superior heat transfer efficiency than filmwise condensation; however cond...
The process of droplets jumping, against adhesive forces, from a solid surface upon coalescence has ...
With the broad interest in and development of superhydrophobic surfaces for self-cleaning, condensat...
Superhydrophobic micro/nanostructured surfaces for dropwise condensation have recently received sign...
Superhydrophobic micro/nanostructured surfaces for dropwise condensation have recently received sign...
When condensed droplets coalesce on a superhydrophobic nanostructured surface, the resulting droplet...
When condensed droplets coalesce on a superhydrophobic nanostructured surface, the resulting droplet...
When condensed droplets coalesce on a superhydrophobic nanostructured surface, the resulting droplet...
When condensed droplets coalesce on a superhydrophobic nanostructured surface, the resulting droplet...
When condensed droplets coalesce on a superhydrophobic nanostructured surface, the resulting droplet...
Thesis: S.B., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2014.Cata...
Thesis: S.M., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2014.Cata...
Jumping droplet condensation, whereby microdroplets (ca. 1–100 μm) coalescing on suitably designed s...
Coalescence-induced jumping of condensate droplets has been studied as an emerging mode for enhanced...
Nanostructured coatings offer the potential to create substrates with specific wetting properties. O...
Dropwise condensation has superior heat transfer efficiency than filmwise condensation; however cond...
The process of droplets jumping, against adhesive forces, from a solid surface upon coalescence has ...
With the broad interest in and development of superhydrophobic surfaces for self-cleaning, condensat...
Superhydrophobic micro/nanostructured surfaces for dropwise condensation have recently received sign...
Superhydrophobic micro/nanostructured surfaces for dropwise condensation have recently received sign...
When condensed droplets coalesce on a superhydrophobic nanostructured surface, the resulting droplet...
When condensed droplets coalesce on a superhydrophobic nanostructured surface, the resulting droplet...
When condensed droplets coalesce on a superhydrophobic nanostructured surface, the resulting droplet...
When condensed droplets coalesce on a superhydrophobic nanostructured surface, the resulting droplet...
When condensed droplets coalesce on a superhydrophobic nanostructured surface, the resulting droplet...
Thesis: S.B., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2014.Cata...
Thesis: S.M., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2014.Cata...
Jumping droplet condensation, whereby microdroplets (ca. 1–100 μm) coalescing on suitably designed s...
Coalescence-induced jumping of condensate droplets has been studied as an emerging mode for enhanced...
Nanostructured coatings offer the potential to create substrates with specific wetting properties. O...
Dropwise condensation has superior heat transfer efficiency than filmwise condensation; however cond...
The process of droplets jumping, against adhesive forces, from a solid surface upon coalescence has ...
With the broad interest in and development of superhydrophobic surfaces for self-cleaning, condensat...