In the present study, a three-dimensional algorithm for the treatment of radiative heat transfer in emitting, absorbing and scattering media is developed. The approach is based on the utilization of control volume finite element method (CVFEM) which, to the knowledge of the authors, is applied at th
Three-dimensional transient radiative transfer modeling using the finite-volume method
β Scribed by John C. Chai; P-f Hsu; Y.C. Lam
- Publisher
- Elsevier Science
- Year
- 2004
- Tongue
- English
- Weight
- 844 KB
- Volume
- 86
- Category
- Article
- ISSN
- 0022-4073
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β¦ Synopsis
This article presents a ΓΏnite-volume method to calculate transient radiative transfer in a three-dimensional enclosure. The fully implicit scheme is used to discretize the transient term. The step and CLAM spatial di erencing schemes are used in this study. The procedure is validated using available published results. The ability of the present formulation in modeling an absorbing, emitting and isotropically scattering medium is examined using heat uxes and incident radiation. Ray e ect and false scattering are discussed.
π SIMILAR VOLUMES
The finite element method is applied to the solution of the two-dimensional atmospheric radiative transfer. The analysis is mainly focussed on the derivation of the cell or element equation. The Galerkin method and several hybrid methods using the integral and finite difference form of the radiative
With the finite volume formulation (FVM) approach applied to the collapsed dimension method (CDM), this article deals with the application of the CDM to analyze radiative heat transfer problems in a participating medium subjected to a continuous diffuse or a continuous/short-pulse collimated boundar