Effect of Apex Angle, Porosity, and Permeability on Flow and Heat Transfer in Triangular Porous Ducts

Author:

Negin Mortazavi S.1,Hassanipour Fatemeh1

Affiliation:

1. Department of Mechanical Engineering, University of Texas at Dallas, Richardson, TX 75080 e-mail:

Abstract

This paper presents an analysis of forced convection flow and heat transfer in triangular ducts containing a porous medium. The porous medium is isotropic and the flow is laminar, fully developed with constant properties. Numerical results for velocity and temperature distribution (in dimensionless format) in the channel are presented for a wide range of porosity, permeability, and apex angles. The effects of apex angle and porous media properties (porosity and permeability) are demonstrated on the velocity and temperature distribution, as well as the friction factor (fRe) and Nusselt numbers in the channel for both Isoflux (NuH) and Isothermal (NuT) boundary conditions. The consistency of our findings has been verified with earlier results in the literature on empty triangular ducts, when the porosity in our models is made to approach one.

Publisher

ASME International

Subject

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

Reference33 articles.

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3. Solar Collectors With Tubes Partially Filled With Porous Substrate;ASME J. Sol. Energy Eng.,1999

4. Simple Models for Laminar Thermally Developing Slug Flow in Noncircular Ducts and Channels;ASME J. Heat Transfer,2010

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