The problem of laminar natural convection from a vertical circular cone maintained at either a uniform surface temperature or a uniform surface heat flux, and placed in a thermally stratified medium is considered. The governing non‐similarity boundary layer equation for uniform surface temperature are analyzed by using two distinct solution methodologies; namely, (i) a finite difference method and (ii) a local non‐similarity method. For uniform surface heat flux case, the solutions of the governing non‐similarity boundary layer equations are obtained by using three distinct solution methodologies, namely, (i) a finite difference method, (ii) a series solution method and (iii) an asymptotic solution method. The solutions are presented in terms of local skin‐friction and local Nusselt number for different values of Prandtl number and are displayed graphically. Effects of variations in the Prandtl number and stratification parameter on the velocity and temperature profiles are also shown graphically. Solutions obtained by finite difference method are compared with the other methods and found to be in excellent agreement.
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1 May 2002
Research Article|
May 01 2002
Natural convection flow along a vertical circular cone with uniform surface temperature and surface heat flux in a thermally stratified medium
M.A. Hossain;
M.A. Hossain
Department of Mathematics, University of Dhaka, Bangladesh
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S.C. Paul;
S.C. Paul
Department of Mathematics, University of Dhaka, Bangladesh
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A.C. Mandal
A.C. Mandal
Department of Mathematics, University of Dhaka, Bangladesh
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Publisher: Emerald Publishing
Online ISSN: 1758-6585
Print ISSN: 0961-5539
© MCB UP Limited
2002
International Journal of Numerical Methods for Heat & Fluid Flow (2002) 12 (3): 290–305.
Citation
Hossain M, Paul S, Mandal A (2002), "Natural convection flow along a vertical circular cone with uniform surface temperature and surface heat flux in a thermally stratified medium". International Journal of Numerical Methods for Heat & Fluid Flow, Vol. 12 No. 3 pp. 290–305, doi: https://doi.org/10.1108/09615530210422965
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