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The Surface Wettability Effect on Phase Change - Joel De Coninck - Bog

Bag om The Surface Wettability Effect on Phase Change

The Surface Wettability Effect on Phase Change collects high level contributions from internationally recognised scientists in the field. It thoroughly explores surface wettability, with topics spanning from the physics of phase change, physics of nucleation, mesoscale modeling, analysis of phenomena such drop evaporation, boiling, local heat flux at triple line, Leidenfrost, dropwise condensation, heat transfer enhancement, freezing, icing. All the topics are treated by discussing experimental results, mathematical modeling and numerical simulations. In particular, the numerical methods look at direct numerical simulations in the framework of VOF simulations, phase-field simulations and molecular dynamics. An introduction to equilibrium and non-equilibrium thermodynamics of phase change, wetting phenomena, liquid interfaces, numerical simulation of wetting phenomena and phase change is offered for readers who are less familiar in the field. This book will beof interest to researchers, academics, engineers, and postgraduate students working in the area of thermofluids, thermal management, and surface technology.

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  • Sprog:
  • Engelsk
  • ISBN:
  • 9783030829940
  • Indbinding:
  • Paperback
  • Sideantal:
  • 400
  • Udgivet:
  • 30. oktober 2022
  • Udgave:
  • 22001
  • Størrelse:
  • 155x22x235 mm.
  • Vægt:
  • 604 g.
  • 8-11 hverdage.
  • 9. december 2024
På lager

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  • BLACK WEEK

Medlemspris

Prøv i 30 dage for 45 kr.
Herefter fra 79 kr./md. Ingen binding.

Beskrivelse af The Surface Wettability Effect on Phase Change

The Surface Wettability Effect on Phase Change collects high level contributions from internationally recognised scientists in the field. It thoroughly explores surface wettability, with topics spanning from the physics of phase change, physics of nucleation, mesoscale modeling, analysis of phenomena such drop evaporation, boiling, local heat flux at triple line, Leidenfrost, dropwise condensation, heat transfer enhancement, freezing, icing.

All the topics are treated by discussing experimental results, mathematical modeling and numerical simulations. In particular, the numerical methods look at direct numerical simulations in the framework of VOF simulations, phase-field simulations and molecular dynamics. An introduction to equilibrium and non-equilibrium thermodynamics of phase change, wetting phenomena, liquid interfaces, numerical simulation of wetting phenomena and phase change is offered for readers who are less familiar in the field.
This book will beof interest to researchers, academics, engineers, and postgraduate students working in the area of thermofluids, thermal management, and surface technology.

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