Thermal Radiation Heat Transfer
Autor John R. Howell, M. Pinar Mengüc, Kyle Daun, Robert Siegelen Limba Engleză Hardback – 10 dec 2020
Features:
- Offers full treatment of radiative transfer and radiation exchange in enclosures.
- Covers properties of surfaces and gaseous media, and radiative transfer equation development and solutions.
- Includes expanded coverage of inverse methods, electromagnetic theory, Monte Carlo methods, and scattering and absorption by particles.
- Features expanded coverage of near-field radiative transfer theory and applications.
- Discusses electromagnetic wave theory and how it is applied to thermal radiation transfer.
Over 350 surface configuration factors are available online, many with online calculation capability. Online appendices provide information on related areas such as combustion, radiation in porous media, numerical methods, and biographies of important figures in the history of the field. A Solutions Manual is available for instructors adopting the text.
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Specificații
ISBN-13: 9780367347079
ISBN-10: 0367347075
Pagini: 1040
Ilustrații: 68 Tables, black and white; 553 Illustrations, black and white
Dimensiuni: 178 x 254 x 60 mm
Greutate: 1.78 kg
Ediția:Nouă
Editura: CRC Press
Colecția CRC Press
Locul publicării:Boca Raton, United States
ISBN-10: 0367347075
Pagini: 1040
Ilustrații: 68 Tables, black and white; 553 Illustrations, black and white
Dimensiuni: 178 x 254 x 60 mm
Greutate: 1.78 kg
Ediția:Nouă
Editura: CRC Press
Colecția CRC Press
Locul publicării:Boca Raton, United States
Cuprins
1. Introduction to Radiative Transfer. 2. Radiative Properties at Interfaces. 3. Radiative Properties of Opaque Materials. 4. Configuration Factors for Diffuse Surfaces with Uniform Radiosity. 5. Radiation Exchange in Enclosures Composed of Black and/or Diffuse–Gray Surfaces. 6. Exchange of Thermal Radiation among Nondiffuse Nongray Surfaces. 7. Radiation Combined with Conduction and Convection at Boundaries. 8. Electromagnetic Wave Theory. 9. Properties of Participating Media. 10. Absorption and Scattering by Particles and Agglomerates. 11. Fundamental Radiative Transfer Relations and Approximate Solution Methods. 12. Participating Media in Simple Geometries. 13. Numerical Solution Methods for Radiative Transfer in Participating Media. 14. The Monte Carlo Method. Conjugate Heat Transfer in Participating Media. 15. Near-Field Thermal Radiation. 16. Radiative Effects in Translucent Solids, Windows, and Coatings. 17. Inverse Problems in Radiative Transfer. 18. Applications of Radiation Energy Transfer. Appendix A: Conversion Factors, Radiation Constants, and Blackbody Functions. Appendix B: Radiative Properties. Appendix C: Catalog of Selected Configuration Factors. Appendix D: Exponential Integral Relations and Two-Dimensional Radiation Functions.
Recenzii
"This book provides a comprehensive overview of the state-of-the-art practice of thermal radiative with historic retrospectives. It lays down the fundamental physics, along with engineering models and numerical approaches to solve practical problems."
Zhuomin Zhang, Georgia Institute of Technology, USA
Zhuomin Zhang, Georgia Institute of Technology, USA
Notă biografică
John R. Howell, M. Pinar Mengüc, Kyle Daun, Robert Siegel
Descriere
The Seventh Ediition of this classic text outlines the physics, analytical methods, numerical techniques, and radiative properties of materials and surfaces. New coverage of radiative heat transfer for manufacturing, renewable energy, and energy efficiency for buildings is added. Key concepts have been streamlined to better serve student readers.