Lou Chun, Li Wenhao, Zhou Huaichun, Carlos T Salinas. Experimental investigation on simultaneous measurement of temperature distributions and radiative properties in an oil-fired tunnel furnace by radiation analysis [J]. International Journal of Heat and Mass Transfer, 2011, 54:1-8
[2]
Zhou H C, Han S D. Simultaneous reconstruction of temperature distribution, absorptivity of wall surface and absorption coefficient of medium in a 2-D furnace system [J]. International Journal of Heat and Mass Transfer, 2003, 46: 2645-2653
[3]
Cheng Qiang, Zhang Xiangyu, Wang Zhichao, Zhou Huaichun, Shao Song. Simultaneous measurement of three-dimensional temperature distributions and radiative properties based on radiation image processing technology in a gas-fired pilot tubular furnace [J]. Heat Transfer Engineering, 2014, 35 (6/7/8): 770-779
[4]
Cai Huilin (蔡惠林), Zhang Zaiyu (张在瑜), Mao Wenxing (茅文星), et al. Olefins manufacture from vacuum gas oil in tubular furnace [J]. Journal of Chemical Industry and Engineering (China) (化工学报), 1979, 30 (2): 165-175
[5]
Shokrollahi Yancheshmeh M S, Seifzadeh Haghighi S, Gholipour M R, Dehghani O, Rahimpour M R, Raeissi S. Modeling of ethane pyrolysis process: a study on effects of steam and carbon dioxide on ethylene and hydrogen productions [J]. Chemical Engineering Journal, 2013, 215: 550-560
[6]
Wen Liankui (文联奎), Zheng Yuanyang (郑远扬). Mathematical models and calculation method of radiation heat transfer in furnace [J]. Petroleum Progressing Section (石油学报), 1986, 2 (1): 57-69
[7]
Guo Shucai (郭树才). Heat transfer model in tubular furnace [J]. Journal of Chemical Industry and Engineering (China) (化工学报), 1980, 31 (3): 255-264
[8]
Rao Libo (饶利波), Yang Guangjiong (杨光炯), Huang Zuqi (黄祖棋). Mathmatical simulation of fluid flow and heat transfer in cuboid radiation section of petro-chemical tube heater [J]. Journal of Chemical Industry and Engineering (China) (化工学报), 1993, 44 (4): 410-416
[9]
Sundaram K M, Froment G F. Kinetics of coke deposition in the thermal cracking of propane [J]. Chemical Engineering Science, 1979, 34: 635-644
[10]
Hu Guihua, Wang Honggang, Qian Feng. Numerical simulation on flow,combustion and heat transfer of ethylene cracking furnaces [J]. Chemical Engineering Science, 2011, 66:1600-1611
[11]
Lan Xingying (蓝兴英). Comprehensive numerical simulation of combustion, heat transfer and pyrolysis reaction process in ethylene cracking furnace [D]. Beijing: Beijing University of Petroleum and Chemical Engineering, 2004
[12]
Mehdi Berreni, Wang Meihong. Modelling and dynamic optimization of thermal cracking of propane for ethylene manufacturing [J]. Computers and Chemical Engineering, 2011, 35: 2876-2885
[13]
Masoumi M E, Sadrameli S M, Towfighi J, Niaei A. Simulation, optimization and control of a thermal cracking furnace [J]. Energy, 2006, 31: 516-527
[14]
Wei Liuke (韦刘轲). Numerical research on non-uniform heat transfer and its impact on ethylene cracking furnace [D]. Beijing: Beijing University of Chemical Technology, 2010
[15]
Zhou Hanzhang (周瀚章). Three dimensional numerical simulation to firebox of ethylene cracking furnace [D]. Beijing: Beijing University of Chemical Technology, 2007
[16]
Huang Xuekong (黄学孔). Three dimensional temperature reconstruction of tubular furnace [D]. Wuhan: Huazhong University of Science and Technology, 2009
[17]
Zhang Xiangyu, Cheng Qiang, Lou Chun, Zhou Huaichun. An improved colorimetric method for visualization of 2-D inhomogeneous temperature distribution in a gas fired industrial furnace by radiation image processing [J]. Proceedings of the Combustion Institute, 2011, 33 (1): 2755-2762
[18]
Liu D, Huang Q X, Wang F, Chi Y, Cen K F, et al. Simultaneous measurement of three-dimensional soot temperature and volume fraction fields in axisymmetric or asymmetric small unconfined flames with CCD cameras [J]. Journal of Heat Transfer, 2010, 132: 061202-1
[19]
Cheng Q, Zhou H C. The DRESOR method for a collimated irradiation on an isotropically scattering layer [J]. Heat Transfer, 2007, 129 (5): 634-645
[20]
Sun Yipeng, Lou Chun, Zhou Huaichun. A simple judgement method of gray property of flames based on spectral analysis and the two-color method for measurements of temperatures and emissivity [J]. Proceedings of the Combustion Institute, 2011, 33 (1): 735-741