An integral solution procedure for radiative transfer in concentric cylindrical media
Abstract
A complete integral formulation is developed for radiative transfer in emitting and absorbing media contained between infinitely long, concentric cylinders with black surfaces. The resulting flux equation is used to state both the gray and nongray radiative equilibrium problems that are solved numerically with controlled error. The results are compared with those from other approaches, both approximate and geometrically limiting, to check and put into perspective the present and prior work. The nongray solution is unique for concentric cylindrical media. The independent parameters of optical thickness and radius ratio are varied to study the emissive power (temperature) distribution, total heat flux, and the required computational time.
- Publication:
-
American Society of Mechanical Engineers
- Pub Date:
- November 1983
- Bibcode:
- 1983asme.meet.....P
- Keywords:
-
- Concentric Cylinders;
- Heat Flux;
- Numerical Integration;
- Optical Thickness;
- Radiative Transfer;
- Thermal Emission;
- Monte Carlo Method;
- Fluid Mechanics and Heat Transfer