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- W2348572209 abstract "Based on a three-step kinetic mechanism, a two-dimensional and time-dependent numerical model is presented for the forward smoldering propagation in a horizontally packed bed of cellulosic material. The kinetic processes include pyrolysis and oxidation degradation of fuel and oxidation of coke. In this model, heat transfer between solid and gas is taken into account as well as the diffusion coefficient varies with the temperature. Radiative transfer is also included by using the diffusion approximation. The effects of airflow velocity are numerically simulated on smoldering velocity and average maximum temperature of fuel. The results indicate that the smoldering velocity linearly varies with increase of airflow velocity, and there is only a bit of effect on the maximum temperature. Simultaneously, the profiles of solid temperature are examined. The evolutions of gas components (including O2, CO, CO2 and H2O) and solid components (including fuel, coke and ash) are presented along the packed bed. The computational smoldering velocities basically agree with the experimental measurements." @default.
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- W2348572209 date "2007-01-01" @default.
- W2348572209 modified "2023-10-01" @default.
- W2348572209 title "Numerical Simulation Analysis of Forward Smoldering Propagation of Cellulosic Materials" @default.
- W2348572209 hasPublicationYear "2007" @default.
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