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01-08-2024

A Nusselt number correlation for a superhydrophobic solid sphere encapsulated in a perfect plastron

Authors: Zavier Berti, M. R. Flynn

Published in: Journal of Engineering Mathematics | Issue 1/2024

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Abstract

The article explores the Nusselt number correlation for a superhydrophobic solid sphere encapsulated in a perfect plastron, focusing on the impact of a surface-attached air bubble on heat transfer. It begins by discussing the functional role of superhydrophobic surfaces in nature, such as self-cleaning and water repellency, and their relevance to engineering fields. The study then delves into the lubricating effect of a surface-attached air bubble, or 'plastron,' on drag reduction and heat transfer. The authors extend previous research by relaxing the isothermal condition and applying matched asymptotic expansions to link near- and far-field solutions. The results reveal the substantial complications that arise when considering the thermal insulatory nature of the air film. The article concludes by presenting a Nusselt number correlation and highlighting the importance of the perfect plastron limit in understanding heat transfer in real engineering systems.

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Metadata
Title
A Nusselt number correlation for a superhydrophobic solid sphere encapsulated in a perfect plastron
Authors
Zavier Berti
M. R. Flynn
Publication date
01-08-2024
Publisher
Springer Netherlands
Published in
Journal of Engineering Mathematics / Issue 1/2024
Print ISSN: 0022-0833
Electronic ISSN: 1573-2703
DOI
https://doi.org/10.1007/s10665-024-10377-9

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