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Heat transfer physics

This graduate textbook describes atomic-level kinetics (mechanisms and rates) of thermal energy storage, transport (conduction, convection, and radiation), and transformation (various energy conversions) by principal energy carriers. The approach combines the fundamentals of molecular orbitals-poten...

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Detalles Bibliográficos
Autor principal: Kaviany, Massoud
Lenguaje:eng
Publicado: Cambridge University Press 2014
Materias:
Acceso en línea:http://cds.cern.ch/record/1632432
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author Kaviany, Massoud
author_facet Kaviany, Massoud
author_sort Kaviany, Massoud
collection CERN
description This graduate textbook describes atomic-level kinetics (mechanisms and rates) of thermal energy storage, transport (conduction, convection, and radiation), and transformation (various energy conversions) by principal energy carriers. The approach combines the fundamentals of molecular orbitals-potentials, statistical thermodynamics, computational molecular dynamics, quantum energy states, transport theories, solid-state and fluid-state physics, and quantum optics. The textbook presents a unified theory, over fine-structure/molecular-dynamics/Boltzmann/macroscopic length and time scales, of heat transfer kinetics in terms of transition rates and relaxation times, and its modern applications, including nano- and microscale size effects. Numerous examples, illustrations, and homework problems with answers that enhance learning are included. This new edition includes applications in energy conversion (including chemical bond, nuclear, and solar), expanded examples of size effects, inclusion of junction quantum transport, and discussion of graphene and its phonon and electronic conductances. New appendix coverage of Phonon Contributions Seebeck Coefficient and Monte Carlo Methods are also included.
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spelling cern-16324322021-04-21T21:32:19Zhttp://cds.cern.ch/record/1632432engKaviany, MassoudHeat transfer physicsOther Fields of PhysicsThis graduate textbook describes atomic-level kinetics (mechanisms and rates) of thermal energy storage, transport (conduction, convection, and radiation), and transformation (various energy conversions) by principal energy carriers. The approach combines the fundamentals of molecular orbitals-potentials, statistical thermodynamics, computational molecular dynamics, quantum energy states, transport theories, solid-state and fluid-state physics, and quantum optics. The textbook presents a unified theory, over fine-structure/molecular-dynamics/Boltzmann/macroscopic length and time scales, of heat transfer kinetics in terms of transition rates and relaxation times, and its modern applications, including nano- and microscale size effects. Numerous examples, illustrations, and homework problems with answers that enhance learning are included. This new edition includes applications in energy conversion (including chemical bond, nuclear, and solar), expanded examples of size effects, inclusion of junction quantum transport, and discussion of graphene and its phonon and electronic conductances. New appendix coverage of Phonon Contributions Seebeck Coefficient and Monte Carlo Methods are also included.Cambridge University Pressoai:cds.cern.ch:16324322014
spellingShingle Other Fields of Physics
Kaviany, Massoud
Heat transfer physics
title Heat transfer physics
title_full Heat transfer physics
title_fullStr Heat transfer physics
title_full_unstemmed Heat transfer physics
title_short Heat transfer physics
title_sort heat transfer physics
topic Other Fields of Physics
url http://cds.cern.ch/record/1632432
work_keys_str_mv AT kavianymassoud heattransferphysics