CD-ROM contains: Student version of FELIX including full installation and related files -- Program UNO (FORTRAN source code) -- Bidirectional reflectivity data for Problem P 3.14. pt. I. Fundamentals of Thermal Radiation. 1. Introduction to Thermal Radiation. 2. Basic Concepts; The Blackbody. 3. Description of Real Surfaces; Surface Properties. 4. Radiation Behavior of Surfaces. 5. Wave Phenomena in Thermal Radiation. 6. Radiation in a Participating Medium -- pt. II. Traditional Methods of Radiation Heat Transfer Analysis. 7. Solution of the Equation of Radiative Transfer. 8. The Net Exchange Formulation for Diffuse, Gray Enclosures. 9. Evaluation of Configuration Factors. 10. Radiative Analysis of Nondiffuse, Nongray Enclosures Using the Net Exchange Formulation -- pt. III. The Monte Carlo Ray-Trace Method. 11. Introduction to the Monte Carlo Ray-Trace Method. 12. The MCRT Method for Diffuse-Specular, Gray Enclosures: An Extended Example. 13. The Distribution Factor for Nondiffuse, Nongray, Surface-to-Surface Radiation. 14. The MCRT Method Applied to Radiation in a Participating Medium. 15. Statistical Estimation of Uncertainty in the MCRT Method -- App. A. Radiation from an Atomic Dipole -- App. B. Mie Scattering by Homogeneous Spherical Particles: Program UNO -- App. C.A Functional Environment for Longwave Infrared Exchange (FELIX) -- App. D. Random Number Generators and Autoregression Analysis.
CITATION STYLE
Mahan, J., & Felske, J. (2003). Radiation Heat Transfer: A Statistical Approach. Applied Mechanics Reviews, 56(1), B15–B16. https://doi.org/10.1115/1.1523369
Mendeley helps you to discover research relevant for your work.