Experimental Analysis of Natural Convection and Flow Visualization in an Asymmetrically Heated Open Vertical Channel

Author:

Cherif Yassine1,Sassine Emilio2,Zalewski Laurent1,Souidi Kaies3,Lassue Stephane1

Affiliation:

1. Laboratory of Civil Engineering and Geo-Environment (LGCgE), University of Artois, F-62400 Béthune, France e-mail:

2. Faculty of Sciences, Laboratory of Applied Physics (LPA), Lebanese University, Fanar Campus, Beirut, Lebanon e-mail:

3. Département Chimie, CS20819, Université d’Artois, IUT Béthune, 62408 Béthune, France e-mail:

Abstract

An experimental device was designed to perform the thermal and dynamic study of natural convection airflow in an open vertical channel. The two side walls of the vertical channel are made of Plexiglas allowing the visualization of the flow via the particle image velocimetry (PIV) method. For the two other vertical walls, one is heated at a constant temperature, and the other is insulated with a 9-cm thick polystyrene insulation. The dynamic characterization of convection is carried out by nonintrusive measurements (PIV), and thermal phenomena are analyzed using nonintrusive heat flux instrumentation (simultaneous temperature and velocity measurements have been carried out across the channel at different elevations). Moreover, this study deals with the influence of the Rayleigh number on the measured vertical velocity profiles as well as the thermal flux densities recorded along the heated wall. To do this, different values of the modified Rayleigh numbers were considered in the interval with the channel aspect ratio of A = 5 and A = 12.5. The obtained Nusselt number values have been compared successfully with those of the literature. The impacts of the Rayleigh number and the aspect ratio on the velocity profiles and the convective and radiative heat transfer have been examined.

Publisher

ASME International

Subject

Fluid Flow and Transfer Processes,General Engineering,Condensed Matter Physics,General Materials Science

Reference35 articles.

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3. The Dissipation of Heat by Free Convection at the Inner Surface of Vertical Tubes of Different Shapes of Cross-Section;Elenbaas;Physica,1942

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