Non-Fourier Heat Conduction From Phase-Lag Models to Relativistic and Quantum Transport
Auteur:
Edition:
enBroché978303125975303 juillet 2024422 pages
Résumé
This book presents a broad and well-structured overview of various non-Fourier heat conduction models. e.g., during ultrafast heating, heat transfer at the nanoscale, in granular and porous materials, at extremely high values of the heat flux, or in heat transfer in biological tissues.
This book presents a broad and well-structured overview of various non-Fourier heat conduction models. The classical Fourier heat conduction model is valid for most macroscopic problems. However, it fails when the wave nature of the heat propagation becomes dominant and memory or non-local spatial effects become significant; e.g., during ultrafast heating, heat transfer at the nanoscale, in granular and porous materials, at extremely high values of the heat flux, or in heat transfer in biological tissues. The book looks at numerous non-Fourier heat conduction models that incorporate time non-locality for materials with memory, such as hereditary materials, including fractional hereditary materials, and/or spatial non-locality, i.e. materials with a non-homogeneous inner structure. Beginning with an introduction to classical transport theory, including phase-lag, phonon, and thermomass models, the book then looks at various aspects of relativistic and quantum transport, including approaches based on the Landauer formalism as well as the Green-Kubo theory of linear response. Featuring an appendix that provides an introduction to methods in fractional calculus, this book is a valuable resource for any researcher interested in theoretical and numerical aspects of complex, non-trivial heat conduction problems.
Spécifications produit
Contenu
Langue
en
Version
Broché
Date de sortie initiale
03 juillet 2024
Nombre de pages
422
Illustrations
Avec illustrations
Informations sur le fabricant
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Autres spécifications
Hauteur de l'emballage
24 mm
Largeur d'emballage
155 mm
Largeur du produit
155 mm
Livre d‘étude
Non
Longueur d'emballage
235 mm
Longueur du produit
235 mm
Poids de l'emballage
657 g
EAN
EAN
9783031259753
Sécurité des produits
Opérateur économique responsable dans l’UE
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