A steady, two‐dimensional natural convection flow of a viscous, incompressible fluid having temperature‐dependent viscosity and thermal conductivity about a truncated cone is considered. We use suitable transformations to obtain the equations governing the flow in convenient form and integrate them by using an implicit finite difference method. Perturbation solutions are employed to obtain the solution in the regimes near and far away from the point of truncation. The results are obtained in terms of the local skin friction and the local Nusselt number. Perturbation solutions are compared with the finite difference solutions and found to be in excellent agreement. The dimensionless velocity, viscosity and thermal conductivity distributions are also displayed graphically, showing the effects of various values of the pertinent parameter for smaller values of Prandtl number.
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1 September 2001
Research Article|
September 01 2001
Natural convection flow of a viscous fluid about a truncated cone with temperature‐dependent viscosity and thermal conductivity
M.A. Hossain;
M.A. Hossain
Department of Mathematics, University of Dhaka, Bangladesh
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M.S. Munir
M.S. Munir
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
2001
International Journal of Numerical Methods for Heat & Fluid Flow (2001) 11 (6): 494–510.
Citation
Hossain M, Munir M (2001), "Natural convection flow of a viscous fluid about a truncated cone with temperature‐dependent viscosity and thermal conductivity". International Journal of Numerical Methods for Heat & Fluid Flow, Vol. 11 No. 6 pp. 494–510, doi: https://doi.org/10.1108/09615530110399459
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