Heat transfer by radiation and natural convection through a vertical annulus embedded in porous medium
β Scribed by Irfan Anjum Badruddin; Z.A. Zainal; P.A. Aswatha Narayana; K.N. Seetharamu
- Publisher
- Elsevier Science
- Year
- 2006
- Tongue
- English
- Weight
- 207 KB
- Volume
- 33
- Category
- Article
- ISSN
- 0735-1933
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β¦ Synopsis
The effect of radiation and natural convection in a saturated porous medium embedded in a vertical annular cylinder has been investigated. Finite element method has been used to solve the governing equations. Influence of aspect ratio (A) and radius ratio (R) on Nusselt number is presented. The effect of radiation on heat transfer behavior is discussed. Results for two limiting cases of vertical cylinder and vertical plate embedded in saturated porous medium are presented. It is seen that average Nusselt number (N Β―u) increases significantly with radiation parameter (Rd). N Β―u attains maximum value at an aspect ratio of around one. N Β―u always decreases with decrease in radius ratio.
π SIMILAR VOLUMES
## Abstract Steady twoβdimensional free convection flow due to combined effect of radiation and convection through a porous medium bounded by a vertical infinite plate is considered. The behaviour of Darcy and nonβDarcy flow is investigated. The flow of water through different porous media under di
## Abstract A numerical solution for the transient twoβdimensional free convection flow of viscous dissipative fluid over an infinite vertical plate through a porous medium bounded, taking into account the thermal radiation, is analysed. The fluid is grey, and acts as a radiation emitting and absor