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- W2159004222 abstract "Combustion in Porous Media has interesting advantages compared with free flame combustion due to higher burning rates, increased power dynamic range, extension of the lean flammability limits, and low emissions of pollutants. A numerical code is developed in order to evaluate the effects of different parameters of combustion in porous media. The Navier-Stokes, the solid and gas energy and the chemical species transport equations are solved using a multi-step reduced kinetic mechanism. The discrete ordinates method is used to solve the radiative transfer equation and a finite volume method based on SIMPLE method is applied to discretize the conservation equations. The different burner regions consisting of a preheat zone (low porosity matrix), a combustion zone (high porosity matrix) and a heat exchanger zone are studied in this article and the temperature field and species mass fractions obtained numerically are compared with available experimental data. It is found that using of multi-step chemistry leads to more accurate results for temperature fileld and species mass fractions. Also at high convective coefficients, the local thermal equilibrium assumption is valid for the gas and the solid phase temperatures." @default.
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- W2159004222 date "2007-01-01" @default.
- W2159004222 modified "2023-09-24" @default.
- W2159004222 title "A Two-dimensional Numerical Study of Combustion in Porous Media" @default.
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