FENG Mingjie, LI Deli, WANG Engang. Numerical Simulation of An Adjustable Length of Flame Gas Burner[J]. Journal of Northeastern University Natural Science, 2014, 35(9): 1279-1282.
[1] Ilbas M,Yilmaz I,Kaplan Y.Investigation of hydrogenhydrocarbon composite fuel combustion and NOx emission characteristics in a model combustor[J].International Hydrogen Energy,2005,30(3):1139/1147. [2] Khelil A,Naji H L,Loukarfi L,et al.Prediction of a high swirled natural gas diffusion flame using a PDF model[J].Fuel,2009,88(12):374/381. [3] Driscol L,James F.Turbulent premixed combustion:flame structure and its effect on turbulent burning velocities[J].Progress in Energy and Combustion Science,2008,34(1):91/134. [4] Orsino S,Weber R,Bollettini U.Numerical simulation of combustion of natural gas with high temperature air[J].Combustion Science and Technology,2002,168(1):1/11. [5] Nishimura M,Suzuki T,Nakanishi R,et al.Low NOx combustion under high preheated air temperature condition in an industrial furnace[J].Energy Conversion and Management,1997,38(10):1353/1365. [6] Abbassi A,Khoshmanesh K.Numerical simulation and experimental analysis of an industrial glass melting furnace[J].Thermal Engineering,2008,28(5):450/459. [7] Jacobsen M,Melaaen M C.Numerical simulation of the baking of porous anode carbon in a vertical flue ring furnace[J].Numerical Heat Transfer Part A:Applications,1998,34(6):571/598. [8] Ouellet R,Jiao Q,Chin E.Anode baking furnace modeling for process optimization[J].Light Metals,1995,35(12):653/662. [9] Stevan N,Vukman B,Simeon O.Experimental and numerical investigation of gaseous fuel combustion in swirl chamber[J].International Journal of Heat and Mass Transfer,2005,48(21):4623/4632.