Title of article :
Modeling fluid and heat transport in the reactive, porous bed of downdraft (biomass) gasifier
Author/Authors :
Sharma، نويسنده , , Avdhesh Kr. Sharma *، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2007
Pages :
13
From page :
1518
To page :
1530
Abstract :
A fluid flow and heat transfer model has been developed for the reactive, porous bed of the biomass gasifier to simulate pressure drop, temperature profile in the bed and flow rates. The conservation equations, momentum equation and energy equation are used to describe fluid and heat transport in porous gasifier bed. The model accounted for drag at wall, and the effect of radial as well as axial variation in bed porosity to predict pressure drop in bed. Heat transfer has been modeled using effective thermal conductivity approach. Model predictions are validated against the experiments, while effective thermal conductivity values are tested qualitatively using models available in literature. Parametric analysis has been carried out to investigate the effect of various parameters on bed temperature profile and pressure drop through the gasifier. The temperature profile is found to be very sensitive to gas flow rate, and heat generation in oxidation zone, while high bed temperature, gas flow rate and the reduction in feedstock particle size are found to cause a marked increase in pressure drop through the gasifier. The temperatures of the down stream zones are more sensitive to any change in heat generation in the bed as compared to upstream zone. Author recommends that the size of preheating zone may be extended up to pyrolysis zone in order to enhance preheating of input air, while thermal insulation should not be less than 15 cm.
Keywords :
Modeling gasifier , Heat and fluid transport , Producer gas , Porous bed , Gasifier
Journal title :
International Journal of Heat and Fluid Flow
Serial Year :
2007
Journal title :
International Journal of Heat and Fluid Flow
Record number :
2381531
Link To Document :
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