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Thermal Radiation Heat Transfer

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  • 1016pages
  • 36 heures de lecture

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Explore the Radiative Exchange between Surfaces The sixth edition continues to emphasize the importance of thermal radiative transfer and delves into the development of the radiative transfer equation (RTE). It covers the fundamentals of radiative transfer, introduces energy and radiative transfer equations, and discusses various methods to measure radiative heat exchange between surfaces and structures, along with solution techniques for the RTE. This updated edition includes new information on surface properties, absorbing/emitting/scattering materials, and radiative transfer in participating media. It enhances the chapter on near-field effects and addresses applications like improved solar cell performance and self-regulating thermal control surfaces. Comprising 17 chapters, the text discusses the fundamental RTE and its simplified forms for various medium properties, presents an intuitive relationship between RTE formulations and configuration factor analyses, and explores the historical development and behavior of blackbodies. It defines the radiative properties of solid opaque surfaces and provides a detailed analysis and solution procedure for radiation exchange. Additionally, it includes methods for determining the radiative flux divergence, the radiative source term in the energy equation. This edition equips readers with the tools to assess and calculate energy exchange between objects

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Thermal Radiation Heat Transfer, Robert Siegel, M. Pınar Mengüç, John R. Howell

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Année de publication
2015
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Titre
Thermal Radiation Heat Transfer
Langue
Anglais
Éditeur
CRC Press
Publié
2015
Pages
1016
ISBN10
1466593261
ISBN13
9781466593268
Séries
Description
Explore the Radiative Exchange between Surfaces The sixth edition continues to emphasize the importance of thermal radiative transfer and delves into the development of the radiative transfer equation (RTE). It covers the fundamentals of radiative transfer, introduces energy and radiative transfer equations, and discusses various methods to measure radiative heat exchange between surfaces and structures, along with solution techniques for the RTE. This updated edition includes new information on surface properties, absorbing/emitting/scattering materials, and radiative transfer in participating media. It enhances the chapter on near-field effects and addresses applications like improved solar cell performance and self-regulating thermal control surfaces. Comprising 17 chapters, the text discusses the fundamental RTE and its simplified forms for various medium properties, presents an intuitive relationship between RTE formulations and configuration factor analyses, and explores the historical development and behavior of blackbodies. It defines the radiative properties of solid opaque surfaces and provides a detailed analysis and solution procedure for radiation exchange. Additionally, it includes methods for determining the radiative flux divergence, the radiative source term in the energy equation. This edition equips readers with the tools to assess and calculate energy exchange between objects