The phenomenon of combined forced and free convection heat transfer in laminar boundary layer flows, in which the momentum equation is coupled with the energy equation on account of the presence of the gravitational term, is analyzed theoretically. It is shown that for large values of the Prandtl nu
Note on the effect of thermal radiation in the linearized Rosseland approximation on the heat transfer characteristics of various boundary layer flows
β Scribed by Eugen Magyari; Asterios Pantokratoras
- Publisher
- Elsevier Science
- Year
- 2011
- Tongue
- English
- Weight
- 141 KB
- Volume
- 38
- Category
- Article
- ISSN
- 0735-1933
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β¦ Synopsis
Boundary layers
In the latter years the title problem has been examined in a large number of research papers. The present Note emphasizes, however, that the effect of thermal radiation in the linearized Rosseland approximation is quite trivial, both physically and computationally. Namely, it always reduces to a simple rescaling of the Prandtl number by a factor involving the radiation parameter. This implies that a comprehensive study of the Prandtlnumber dependence without thermal radiation effects represents per se a detailed study of the radiation effects, too. In other words, the solution of the radiation problem for optically thick media in the linearized Rosseland approximation does not require any additional numerical or analytical effort compared to the same problem without radiation, making in this respect dozens of papers superfluous.
π SIMILAR VOLUMES
## SUMMARY Effect of ionβslip current on the thermal instability in a boundary layer is studied. The criterion on the position marking the onset of longitudinal vortices is defined in the present paper. The results show that the onset position characterized by the Grashof number depends on the Pran