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Investigation of fuel lean reburning process in a 1.5 MW boiler
Authors:Hak Young KimSeung Wook Baek  Se Won Kim
Affiliation:School of Mechanical, Aerospace & System Engineering, Division of Aerospace Engineering, Korea Advanced Institute of Science and Technology, 373-1 Gusong-Dong, Yusung-Gu, Daejon 305-701, Republic of Korea
Abstract:This paper examines a detailed study of fuel lean reburning process applied to a 1.5 MW gas-fired boiler. Experimental and numerical studies were carried out to investigate the effect of the fuel lean reburning process on the NOX reduction and CO emission. Natural gas (CH4) was used as the reburn as well as the main fuel. The amount of the reburn fuel, injection location and thermal load of boiler were considered as experimental parameters. The flue gas data revealed that the fuel lean reburning process led to NOX reduction up to 43%, while CO emission was limited to less than 30 ppm for the 100% thermal load condition. The commercial computational fluid dynamics code FLUENT 6.3, which included turbulence, chemical reaction, radiation and NO modeling, was used to predict the fluid flow and heat transfer characteristics under various operational conditions in the boiler. Subsequently, predicted results were validated with available measured data such as gas temperature distributions and local mean NOX concentrations. The detailed numerical results showed that the recirculation flow developed inside the boiler was found to play an important role in improving the effectiveness of fuel lean reburning process.
Keywords:1.5   MW water tube boiler   Fuel lean reburning process   NOX reduction   CO emission   Recirculation flow
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