Reprint

Heat Transfer and Fluid Dynamics in Boiling Systems

Edited by
March 2024
168 pages
  • ISBN978-3-7258-0717-8 (Hardback)
  • ISBN978-3-7258-0718-5 (PDF)

This book is a reprint of the Special Issue Heat Transfer and Fluid Dynamics in Boiling Systems that was published in

Chemistry & Materials Science
Engineering
Environmental & Earth Sciences
Physical Sciences
Summary

Boiling is one of the most effective heat removal regimes, and is thus widely used in various industries and technologies, including, but not limited to, heat and nuclear energies, thermal desalination, heat pipes, heat exchangers, etc. Moreover, boiling is generally recognized as the best method for the thermal management of high-heat-flux devices, such as high-power electronics. Efforts to understand pool and flow boiling mechanisms and discover and develop methods to improve boiling efficiency are ongoing. This Special Issue presents a collection of carefully selected papers that delve into heat transfer and fluid dynamics during boiling phenomena. The Special Issue comprises state-of-the-art experimental and numerical research contributions, with a specific emphasis on recent advancements in enhancing heat transfer during boiling under different conditions, especially through novel approaches for surface modification for heating purposes.

Format
  • Hardback
License
© 2022 by the authors; CC BY-NC-ND license
Keywords
heat transfer; droplets evaporation; turbulence; droplet-laden flow; confuser; diffuser; pipe; sudden expansion; RANS; wettability; biphilic; surface modification; boiling; heat transfer enhancement; pool boiling; heat transfer enhancement; biphilic surface; lattice Boltzmann method; nucleate boiling; combined coating; deformational cutting; mesh covering; falling films; refrigerant mixture; droplet evaporation; heated wall; surfactant; heat transfer; free convection; convective boiling; two-phase flow; pin fin geometry; heat transfer coefficient; pressure drop; boiling; heat transfer; microlayer; infrared thermography; subatmospheric pressures; immiscible liquids; extraction; mass transfer; micro-LIF; microchannel; coal particle; drop impact; maximum spreading; PIV; slurry; velocity field; pump-probe; superheated liquid; n-pentane; activation boiling-up; laser pulse