A three-dimensional analytical solution to the steady-state free convection problem in a long rotating porous box is presented for large values of the porous media Ekman number. The convection results from differential heating of the horizontal walls leading to temperature gradients orthogonal to the centrifugal body force. The solution to the nonlinear set of partial differential equations was obtained through an asymptotic expansion of the dependent variables in terms of two small parameters representing the reciprocal Ekman number in porous media and the aspect ratio of the domain. The results are focused towards the Coriolis effect on the flow. Secondary circulation was obtained in a plane orthogonal to the leading free convection plane. The results show that the Coriolis effect on free convection is controlled by a combined dimensionless group representing the ratio of the centrifugal Rayleigh number to the porous media Ekman number.
Skip Nav Destination
Article navigation
Research Papers
Three-Dimensional Free Convection in a Long Rotating Porous Box: Analytical Solution
P. Vadasz
P. Vadasz
Department of Mechanical Engineering, University of Durban-Westville, Durban, 4000 South Africa
Search for other works by this author on:
P. Vadasz
Department of Mechanical Engineering, University of Durban-Westville, Durban, 4000 South Africa
J. Heat Transfer. Aug 1993, 115(3): 639-644 (6 pages)
Published Online: August 1, 1993
Article history
Received:
September 1, 1991
Revised:
December 1, 1992
Online:
May 23, 2008
Citation
Vadasz, P. (August 1, 1993). "Three-Dimensional Free Convection in a Long Rotating Porous Box: Analytical Solution." ASME. J. Heat Transfer. August 1993; 115(3): 639–644. https://doi.org/10.1115/1.2910734
Download citation file:
Get Email Alerts
Cited By
Related Articles
Maximum Density Effects on Vortex Instability of Horizontal and Inclined Buoyancy-Induced Flows in Porous Media
J. Heat Transfer (May,1989)
An Analytical Study on Natural Convection in Isotropic and Anisotropic Porous Channels
J. Heat Transfer (May,1990)
Heatline Visualization of Natural Convection in a Porous Cavity Occupied by a Fluid With Temperature-Dependent Viscosity
J. Heat Transfer (January,2008)
A Note on Free Convection Along a Vertical Wavy Surface in a Porous Medium
J. Heat Transfer (May,1994)
Related Proceedings Papers
Related Chapters
Applications
Introduction to Finite Element, Boundary Element, and Meshless Methods: With Applications to Heat Transfer and Fluid Flow
Finite Element Solution of Natural Convection Flow of a Nanofluid along a Vertical Flat Plate with Streamwise Sinusoidal Surface Temperature
International Conference on Computer and Electrical Engineering 4th (ICCEE 2011)
Macropore Spatial Variability of CT-Measured Solute Transport Parameters
Intelligent Engineering Systems through Artificial Neural Networks, Volume 20