Thermal Radiation An Introduction, 1st Edition

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“Thermal Radiation: An Introduction” offers a comprehensive textbook for a one-semester introductory graduate course on radiative energy transfer. This book is designed to bridge the gap between basic introduction and in-depth coverage of thermal radiation, focusing on providing insights into radiative transfer as it is practiced by engineers. From discussing radiative transfer among surfaces to exploring the impacts of participating media between surfaces, this book covers surface and medium property characteristics, along with solutions to the radiative transfer equation in simple geometries.

About the Authors:

John R. (Jack) Howell: With an illustrious career spanning over 60 years, Jack Howell is recognized for his pioneering work in applying the Monte Carlo method to analyze radiative heat transfer in complex systems. He has made significant contributions to computational methods for radiative transfer and mixed-mode problems and has received numerous prestigious awards in the field of heat transfer.

M. Pinar Mengüç: With a background in mechanical engineering, Pinar Mengüç has made significant contributions to the field of thermal radiation. He has played a key role in establishing research centers and has held prominent academic positions, contributing to the advancement of knowledge in energy, environment, and economy.

Kyle Daun: Kyle Daun is a prominent figure in the field of thermal radiation, with expertise in areas such as inverse problems in radiative transfer, laser-based combustion diagnostics, and nanoscale transport phenomena. His research contributions have been widely recognized through publications and prestigious awards.

FAQs

1. Who is the target audience for “Thermal Radiation: An Introduction 1st Edition”?

The book is tailored for students and professionals looking to gain insights into radiative energy transfer, particularly in the context of engineering applications.

2. What are some key topics covered in the book?

The book covers radiative transfer among surfaces, the effects of participating media on energy transfer, surface and medium property characteristics, and solutions to the radiative transfer equation in simple geometries.

3. What distinguishes this book from other resources on thermal radiation?

This book provides a balanced mix of theoretical insights and practical engineering applications, making it a valuable resource for students and professionals alike.

Conclusion

“Thermal Radiation: An Introduction 1st Edition” offers a comprehensive overview of radiative energy transfer, focusing on practical insights that are relevant to engineers. With contributions from renowned experts in the field, this book serves as a valuable resource for those looking to deepen their understanding of thermal radiation and its applications in various industries.

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