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Dynamical Analysis of Non-Fourier Heat Conduction and Its Application in Nanosystems / by Yuan Dong.

SpringerLink Books Physics and Astronomy eBooks 2016 Available online

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Format:
Book
Author/Creator:
Roṅ-bo Gaṅs-dkar, Author.
Series:
Springer Theses, Recognizing Outstanding Ph.D. Research, 2190-5053
Language:
English
Subjects (All):
Thermodynamics.
Heat engineering.
Heat--Transmission.
Heat.
Mass transfer.
Nanotechnology.
Statistical physics.
Dynamics.
Nanoscience.
Nanostructures.
Engineering Thermodynamics, Heat and Mass Transfer.
Complex Systems.
Nanotechnology and Microengineering.
Nanoscale Science and Technology.
Local Subjects:
Thermodynamics.
Engineering Thermodynamics, Heat and Mass Transfer.
Nanotechnology.
Complex Systems.
Nanotechnology and Microengineering.
Nanoscale Science and Technology.
Physical Description:
1 online resource (145 p.)
Edition:
1st ed. 2016.
Place of Publication:
Berlin, Heidelberg : Springer Berlin Heidelberg : Imprint: Springer, 2016.
Language Note:
English
Summary:
This thesis studies the general heat conduction law, irreversible thermodynamics and the size effect of thermal conductivity exhibited in nanosystems from the perspective of recently developed thermomass theory. The derivation bridges the microscopic phonon Boltzmann equation and macroscopic continuum mechanics. Key concepts such as entropy production, temperature and the Onsager reciprocal relation are revisited in the case of non-Fourier heat conduction. Lastly, useful expressions are extracted from the picture of phonon gas dynamics and are used to successfully predict effective thermal conductivity in nanosystems.
Contents:
Introduction
Dynamical governing equation of Non-Fourier Heat Conduction
General Entropy Production based on Dynamic Analysis
Non-Equilibrium Temperature in Non-Fourier Heat Conduction
Dynamic Analysis of Onsager Reciprocal Relations (ORR)
Dynamical Analysis of Heat Conduction in Nanosystems and Its Application
Conclusion.
Notes:
"Doctoral Thesis accepted by Tsinghua University, Beijing, China."
Includes bibliographical references at the end of each chapters.
ISBN:
3-662-48485-4

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