Transient heat transfer characteristics of an energy recovery system using a porous medium

Author:

Nassab A. S Gandjalikhan.1

Affiliation:

1. Shahid Bahonar University Department of Mechanical Engineering, School of Engineering 199 Chongchon-dong, Kerman, Iran

Abstract

The transient heat transfer characteristics of an obstructing porous layer and its significant role as an effective radiative converter are analysed in this work. A basic high-temperature flow system is considered in which hot non-radiating gas flows through a homogeneous porous medium. The porous medium, in addition to its convective heat exchange with the gas, may absorb, emit, and scatter thermal radiation. It is desirable to have a large amount of radiative heat flux from the porous layer in the upstream direction (toward the system). Convection and radiation are assumed to take place simultaneously in the porous medium. In order to analyse the thermal characteristics of the porous layer, the coupled energy equations for the gas and porous medium based on a two-flux radiation model are solved numerically. The numerical simulation of the heat transfer process in the system is provide by utilization of the Crank-Nicolson method. It is found that in the initial period, the porous layer acts as an almost perfect insulator and operates efficiently to recover the energy that would otherwise be wasted. In the limited case of no scattering, the present results are compared with the reported theoretical results and also with the experimental data and good agreement is found.

Publisher

SAGE Publications

Subject

Mechanical Engineering,Energy Engineering and Power Technology

Reference11 articles.

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2. Thermal analysis of a three-layered radiant porous heat exchanger including fluid flow simulation;Proceedings of the Institution of Mechanical Engineers, Part C: Journal of Mechanical Engineering Science;2013-10-31

3. Heat recovery from molten CuCl in the Cu–Cl cycle of hydrogen production;International Journal of Hydrogen Energy;2010-06

4. Thermal analysis of a 2-D heat recovery system using porous media including lattice Boltzmann simulation of fluid flow;International Journal of Thermal Sciences;2010-06

5. Theoretical analysis of porous radiant burners under 2-D radiation field using discrete ordinates method;Journal of Quantitative Spectroscopy and Radiative Transfer;2009-11

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