共 11 条
[1]
Gupta A.K., Hasegawa T., High temperature air combustion: Flame characteristics, challenges and opportunities, High Temperature Air Combustion Symposium, pp. 10-28, (1999)
[2]
Qi H., Li Y., You C., Et al., Recent development of high temperature air combustion technology in the world, Industrial Heating, 32, pp. 1-7, (2003)
[3]
Xing G., Qi H., Xu X., Enlightenment of HiTAC technology developed in Japan for Chinese iron and steel industry, Iron and Steel, 37, pp. 67-71, (2002)
[4]
Xiao Z., The development of high temperature flameless combustion technology in Japan and Europe, China Metallurgy, 4, pp. 31-35, (2000)
[5]
Ou J., Xiao Z., Jiang S., Et al., Study on the application effect of high temperature air combustion to ladle heater, Industrial Heating, 32, 6, pp. 23-25, (2003)
[6]
Ai Y., Jiang S., Zhou J., Et al., Characteristics of combustion using air highly preheated and diluted, Gas and Heat, 21, pp. 208-210, (2001)
[7]
Zarrinehkafsh M.T., Sadrameli S.M., Simulation of fixed bed regenerative heat exchangers for flue gas heat recovery, Appl Therm Eng, 24, pp. 373-382, (2004)
[8]
Li M., Cheng H., Theoretical analysis of heat transfer of ceramic regenerator in high temperature air combustion system, J Therm Sci Technol, 3, pp. 255-260, (2004)
[9]
Du J., Rao W., Li C., Et al., Experimental research of resistance feature of ceramic regenerator, Industrial Furnace, 24, pp. 6-9, (2002)
[10]
Li J., The research of the heat transfer characteristics of the honeycomb ceramic regenerator, (2003)