Nongray gas radiation in a plane parallel slab bounded by gray, diffusely reflecting walls is studied using the discrete ordinates method. The spectral equation of transfer is averaged over a narrow wavenumber interval preserving the spectral correlation effect. The governing equations are derived by considering the history of multiple reflections between two reflecting walls. A closure approximation is applied so that only a finite number of reflections have to be explicitly included. The closure solutions express the physics of the problem to a very high degree and show relatively little error. Numerical solutions are obtained by applying a statistical narrow-band model for gas properties and a discrete ordinates code. The net radiative wall heat fluxes and the radiative source distributions are obtained for different temperature profiles. A zeroth-degree formulation, where no wall reflection is handled explicitly, is sufficient to predict the radiative transfer accurately for most cases considered, when compared with increasingly accurate solutions based on explicitly tracing a larger number of wall reflections without any closure approximation applied.
Discrete Ordinates Solutions of Nongray Radiative Transfer With Diffusely Reflecting Walls
- Views Icon Views
- Share Icon Share
- Search Site
Menart, J. A., Lee, H. S., and Kim, T. (February 1, 1993). "Discrete Ordinates Solutions of Nongray Radiative Transfer With Diffusely Reflecting Walls." ASME. J. Heat Transfer. February 1993; 115(1): 184–193. https://doi.org/10.1115/1.2910647
Download citation file: