Porosity effects in flame length of the porous burners
Publish Year: 1393
Type: Journal paper
Language: English
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Document National Code:
JR_IJHSE-1-4_007
Index date: 12 January 2015
Porosity effects in flame length of the porous burners abstract
Furnaces are the devices for providing heat to the industrial systems like boilers, gas turbines and etc. The main challenge of furnaces is emission of huge air pollutants. However, porous burners produce less contaminant compared to others. The quality of the combustion process in the porous burners depends on the length of flame in the porous medium. In this paper, the computational fluid dynamic (CFD) is used to investigate the porosity effects on the flame length of the combustion process in porous burner. The simulation results demonstrate that increasing the porosity increases the flame length and the combustion zone extends forward. So, combustion quality increases and production of carbon monoxide decrease. It is possible to conclude that temperature distribution in low porosity burner is lower and more uniform than high porosity one. Therefore, by increasing the porosity of the burner, the production of nitrogen oxides increases. So, using an intermediate porosity in the burner appears to be reasonable
Porosity effects in flame length of the porous burners Keywords:
Porosity effects in flame length of the porous burners authors
Fatemeh Bahadori
Department of chemical engineering, Urmia university of technology, Urmia, Iran
Khadijeh Mirza
Department of chemical engineering, Urmia university of technology, Urmia, Iran,
Sima Rezvantalab
Department of chemical engineering, Urmia university of technology, Urmia, Iran