Thermal Convection in Porous Media at High Rayleigh Numbers

Author:

Keene Daniel J.1,Goldstein R. J.2

Affiliation:

1. Department of Engineering and Computer Science, Seattle Pacific University, Seattle, WA 98119 e-mail:

2. Mechanical Engineering Department, University of Minnesota, Minneapolis, MN 55455

Abstract

An experimental study of thermal convection in a porous medium investigates the heat transfer across a horizontal layer heated from below at high Rayleigh number. Using a packed bed of polypropylene spheres in a cubic enclosure saturated with compressed argon, the pressure was varied between 5.6 bar and 77 bar to obtain fluid Rayleigh numbers between 1.68 × 109 and 3.86 × 1011, corresponding to Rayleigh–Darcy numbers between 7.47 × 103 and 2.03 × 106. From the present and earlier studies of Rayleigh–Benard convection in both porous media and homogeneous fluid systems, the existence and importance of a thin thermal boundary layer are clearly demonstrated. In addition to identifying the governing role of the thermal boundary layer at high Rayleigh numbers, the successful correlation of data using homogeneous fluid dimensionless groups when the thermal boundary layer thickness becomes smaller than the length scale associated with the pore features is shown.

Publisher

ASME International

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science

Reference23 articles.

1. Hydrothermal Convection in a Saturated Porous Media;Adv. Hydrosci.,1975

2. Heat Transfer in Geothermal Systems;Adv. Heat Transfer,1978

3. Thermal Convection in a Porous Medium at High Rayleigh Numbers,2010

4. Numerical Simulation of Natural Convection Heat Transfer in a Porous Cavity Heated From Below Using a Non-Darcian and Thermal Non-equilibrium Model;Int. J. Heat Mass Transfer,2006

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