Radiative Heat Transfer

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Academic Press, 20.02.2013 - 904 Seiten

The third edition of Radiative Heat Transfer describes the basic physics of radiation heat transfer. The book provides models, methodologies, and calculations essential in solving research problems in a variety of industries, including solar and nuclear energy, nanotechnology, biomedical, and environmental.

Every chapter of Radiative Heat Transfer offers uncluttered nomenclature, numerous worked examples, and a large number of problems—many based on real world situations—making it ideal for classroom use as well as for self-study. The book's 24 chapters cover the four major areas in the field: surface properties; surface transport; properties of participating media; and transfer through participating media. Within each chapter, all analytical methods are developed in substantial detail, and a number of examples show how the developed relations may be applied to practical problems.

  • Extensive solution manual for adopting instructors
  • Most complete text in the field of radiative heat transfer
  • Many worked examples and end-of-chapter problems
  • Large number of computer codes (in Fortran and C++), ranging from basic problem solving aids to sophisticated research tools
  • Covers experimental methods
 

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Inhalt

Fundamentals of Thermal Radiation
1
Radiative Property Predictions From Electromagnetic Wave Theory
31
Radiative Properties of Real Surfaces
61
View Factors
129
Radiative Exchange Between Gray Diffuse Surfaces
160
Radiative Exchange Between Partially Specular Gray Surfaces
197
Radiative Exchange Between Nonideal Surfaces
229
The Monte Carlo Method for Surface Exchange
247
The Zonal Method
585
Collimated Irradiation and Transient Phenomena
610
Solution Methods for Nongray Extinction Coefficients
626
The Monte Carlo Method for Participating Media
694
Radiation Combined With Conduction and Convection
724
Inverse Radiative Heat Transfer
779
Nanoscale Radiative Transfer
803
Constants and Conversion Factors
818

Surface Radiative Exchange in the Presence of Conduction and Convection
267
The Radiative Transfer Equation In Participating Media RTE
279
Radiative Properties Of Molecular Gases
303
Radiative Properties of Particulate Media
387
Radiative Properties of Semitransparent Media
440
Exact Solutions for Onedimensional Gray Media
454
Approximate Solution Methods for Onedimensional Media
480
The Method of Spherical Harmonics PNApproximation
495
The Method of Discrete Ordinates SNApproximation
541
Tables For Radiative Properties of Opaque Surfaces
820
Blackbody Emissive Power Table
833
View Factor Catalogue
836
Exponential Integral Functions
852
Computer Codes
855
Acknowledgments
863
Index
867
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Über den Autor (2013)

Shaffer and George Professor of Engineering

School of Engineering

University of California, Merced

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