Effect of inlet air velocity on NOx emission from a gas-fired cylindrical furnace

سال انتشار: 1389
نوع سند: مقاله کنفرانسی
زبان: انگلیسی
مشاهده: 2,156

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شناسه ملی سند علمی:

CEE04_674

تاریخ نمایه سازی: 5 خرداد 1389

چکیده مقاله:

Furnaces have many practical applications such as heating and steam generation in industrial units, buildings, etc. Increasingly stringent standards for NOx emission necessitate carrying out more research into furnaces and introducing new strategies for NOx reduction. In this paper, methane combustion in a horizontal furnace with circular cross section is simulated to study the effect of inlet air velocity on NOx emission from the furnace at constant fuel to air ratio. CO and CO2 emissions are also considered. Five cases with different inlet air velocities are studied. Combustion in a natural gas-fired furnace is simulated to verify the simulation methodology and the solution algorithm and results are compared with those of the existing references. According to the results, raising the inlet air velocity at constant fuel to air ratio reduces NO and CO emissions and increases CO2 emission from the furnace.

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  • Rebola, A., Costa, M., Simultaneous reduction of NOx and particulate ...
  • Abu-Qudais, M., Performance and emissions characteristics of a cylindrical water ...
  • Han, X. et al, Detailed modeling of hybrid reburn/SNCR processes ...
  • _ Cvoro, V., Easson, W.J., Optimization of furnace design for ...
  • Saario, A. et al, Heavy fuel oil combustion in a ...
  • Yang, W., Blasiak, W., Mathematict modeling of NO emissions from ...
  • Habib, M.A., Elshafei, M., Dajani, M., Influence of combustion parameters ...
  • Boke, Y.E., Aydin, O., Effect of the radiation surface on ...
  • Ribeirete, A., Costa, M., Impact of the air staging on ...
  • Cadavid, F., Herrera, B., Amell, A., Numerical simulation of the ...
  • regenerative crucible furnace, Appl. Therm. Eng., vol. 30, 2010, pp. ...
  • Khalilarya, Sh., Lotfiani, A., Determination of flow pattern and its ...
  • Ganan, J. et al, Experimental study of fire tube boilers ...
  • Buhre, B.J.P. et al, Oxy-fuel combustion technology for coal-fired power ...
  • Kontogeorgos, D.A., Keramida, E.P., Founti, M.A., Assessment of simplified thermal ...
  • Fluent, Fluent 6.2 User's Guide, 2005, Lebanon, USA. ...
  • Keramida, E.P. et al, Radiative heat transfer in natural gas-fired ...
  • Zhou, X. et al, Numerical simulation of tu rbulent jet ...
  • Khalilarya, Sh., Pourmahmod, N., Lotfiani, A., Evaluation of two-equation turbulence ...
  • Vuthaluru, R., Vuthaluru, H.B., Modeling of a wall fired furnace ...
  • Pathak, _ Dewan, A., Dass, A.K., Computational prediction of a ...
  • Cumber, P.S., Fairweather, M., Evaluation of flame emission models combined ...
  • Kumar, S., Paul, P..., Mukunda, H.S., Prediction of flame lift-off ...
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