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Dynamical Analysis of Non-Fourier Heat Conduction and Its Application in Nanosystems (Softcover Reprint of the Original 1st 2016)

Dynamical Analysis of Non-Fourier Heat Conduction and Its Application in Nanosystems

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"Dynamical Analysis of Non-Fourier Heat Conduction and Its Application in Nanosystems" by Yuan Dong is a physics book focused on Thermal Effects. Best for students, educators, and scientifically curious readers.

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.

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Best For: Researchers and students in environmental physics, thermodynamics, and nanotechnology.
Focus: Non-Fourier heat conduction, irreversible thermodynamics, and thermal conductivity size effects in nanosystems.
Covers: Thermomass theory, phonon Boltzmann equation, entropy production, Onsager reciprocal relation, and phonon gas dynamics.
Why It Matters: Provides a theoretical framework linking microscopic and macroscopic heat conduction phenomena, enabling prediction of thermal conductivity in nanoscale systems.

"Dynamical Analysis of Non-Fourier Heat Conduction and Its Application in Nanosystems" by Yuan Dong is a physics book focused on Thermal Effects. Best for students, educators, and scientifically curious readers.

Topic: Thermal Effects

Author: Yuan Dong

Who this is for:

  • Physics students
  • Science-minded readers
  • Readers building technical understanding

Why this book matters: It provides structured coverage of physics concepts in a way that supports deeper understanding and continued study.

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.

AuthorYuan Dong
PublisherSpringer
Published2016-08-23
ISBN-139783662517208
BindingPaperback
Pages134
LanguageEnglish
SubjectsScience
TopicThermal Effects
SeriesSpringer Theses

Format: Paperback

Length: 134 pages

Language: English

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