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徐钱等:分区分级双P型辐射管喷口结构位置特性 ·761· 参考文献 (冯俊小,王宏宇,吴启明,等.燃气辐射管换热器的结构优 化与数值模拟.北京科技大学学报.2013,35(7):935) [1]Ahanj M D,Rahimi M,Alsairafi AA.CFD modeling of a radiant tube heater.Int Commun Heat Mass Transfer,2012,39(3):432 [12]Cheng S M,Yong HQ,Wu C B.Decreasing of NO,emission in [2]Zhong G Q,Wang D F,Wu D H.Application of double-regenera- fired-natural gas radiant-tube with regenerative combustor. tive radiant tube technology on roller hearth normalizing furnace. Chongqing Univ,2008,31(3):271 (程淑明,雍海泉,伍成波。降低天然气蓄热式辐射管烟气 Energ Procedia,2015,66:201 [3]Tsioumanis N,Brammer J G,Hubert J.Flow processes in a ra- 中N0,的实验.重庆大学学报,2008,31(3):271) diant tube bumer:combusting flow.Energ Convers Manage, [13]Saravanan P,Sahoo G,Srikanth S,et al.Failure analysis of ra- 2011,52(7):2667 diant tube bumers in continuous annealing line (CAL)of an in- [4]Irfan M,Chapman W.Thermal stresses in radiant tubes:a com- tegrated steel plant.Failure Anal Prevention,2011,11(3): 286 parison between recuperative and regenerative systems.Appl Therm [14]Hajek J,Jegla Z,Vondal J.Numerical analysis of radiant sec Eng,2010,30(2):196 [5]Feng J X,Jiang M,Zhou W H,et al.Flow heat transfer and NO, tion of fired heater focused on the effect of wall-tube distance. Comput Aided Chem Eng,2014,33:331 emission characteristic of W-shaped radiant tubes with flue gas cir- culation.J Unir Sci Technol Beijing,2014,36(11):1552 [15]Jegla Z,Hajek J,Vondal J.Numerical analysis of heat transfer (冯俊小,姜敏,周闻华,等.带烟气循环的W型辐射管流动 in radiant section of fired heater with realistic imperfect geometry 传热及N0,排放特性.北京科技大学学报,2014,36(11): of tube coil.Chem Eng Trans,2014,39:889 1552) [16]Normann F.Andersson K.Leckner B,et al.High-temperature [6]Feng J X,Jiang M,Cao Y P,et al.Numerical investigation on reduction of nitrogen oxides in oxy-fuel combustion.Fuel,2008, 87(17):3579 the low NO,emission of W-shaped radiant tuhes.J Univ Sci Tech- [17]Liu CC,Wu Q M,Jiang H.A Radiant Tube Heating Device: nol Beijing,2014,36(8):1094 (冯俊小,姜敏,曹亚平,等.W型辐射管低NO,排放的数值 China Patent,CN201110163899.5.2011-06-17 研究.北京科技大学学报,2014,36(8):1094) (刘长春,吴启明,江华.一种辐射管加热装置:中国, [7]Liu J X,Gao S,Jiang X M,et al.NO emission characteristics of CN201110163899.5.2011-06-17) superfine pulverized coal combustion in the O2/CO2,atmosphere. [18]Reihani A,Razavi S A,Abbasi E,et al.Failure analysis of wel- Energ Convers Manage,2014,77:349 ded radiant tubes made of cast heat-resisting steel.Failure Anal [8]Wu H,Kim Y J,Vandadi V,et al.Experiment on superadiabatic Prevention,2013,13(6):658 radiant burner with augmented preheating.Appl Energ,2015, [19]Gao H L,Li H Y,Shi Y Z,et al.Discussion on the structure of 156:390 low-temperature radiant heater of gate station.Appl Mech Mat [9]Feng J X,Cao Y P.Man Y,et al.Heat transfer characteristic of 2015,700:660 double-a type gas fried radiant tube by CFD simulation.Energ [20]Xu Q,Feng J X,Zhou W H,et al.Model validation and simu- Metall Ind,2014,33(1):14 lation studies on zoned and staged gas fired radiant tubes.Chin (冯俊小,曹亚平,满毅,等.基于CFD双a型燃气辐射管燃 Eng,2016,38(11):1620 烧的传热特性.冶金能源.2014,33(1):14) (徐钱,冯俊小,周闻华,等.分区分级燃气辐射管模型验证 [10]Saleh H E.Effect of exhaust gas recirculation on diesel engine 及仿真研究.工程科学学报,2016,38(11):1620) nitrogen oxide reduction operating with jojoba methyl ester.Re- [21]Li X,Zhang J,Yang H,et al.Combustion characteristics of neuable Energ,2009.34(10):2178 non-premixed methane micro-jet flame in coflow air and thermal [11]Feng J X,Wang H Y,Wu Q M,et al.Structural optimization interaction between flame and micro tube.Appl Therm Eng, and numerical simulation of gas-fired radiant tube heat exchang- 2016,112:296 ers.J Univ Sci Technol Beijing,2013,35(7):935徐 钱等: 分区分级双 P 型辐射管喷口结构位置特性 参 考 文 献 [1] Ahanj M D, Rahimi M, Alsairafi A A. CFD modeling of a radiant tube heater. Int Commun Heat Mass Transfer, 2012, 39(3): 432 [2] Zhong G Q, Wang D F, Wu D H. Application of double鄄regenera鄄 tive radiant tube technology on roller hearth normalizing furnace. Energ Procedia, 2015, 66: 201 [3] Tsioumanis N, Brammer J G, Hubert J. Flow processes in a ra鄄 diant tube burner: combusting flow. Energ Convers Manage, 2011, 52(7): 2667 [4] Irfan M, Chapman W. Thermal stresses in radiant tubes: a com鄄 parison between recuperative and regenerative systems. Appl Therm Eng, 2010, 30(2): 196 [5] Feng J X, Jiang M, Zhou W H, et al. Flow heat transfer and NOx emission characteristic of W鄄shaped radiant tubes with flue gas cir鄄 culation. J Univ Sci Technol Beijing, 2014, 36(11): 1552 (冯俊小, 姜敏, 周闻华, 等. 带烟气循环的 W 型辐射管流动 传热及 NOx 排放特性. 北京科技大学学报, 2014, 36 (11): 1552) [6] Feng J X, Jiang M, Cao Y P, et al. Numerical investigation on the low NOx emission of W鄄shaped radiant tubes. J Univ Sci Tech鄄 nol Beijing, 2014, 36(8): 1094 (冯俊小, 姜敏, 曹亚平, 等. W 型辐射管低 NOx 排放的数值 研究. 北京科技大学学报, 2014, 36(8): 1094) [7] Liu J X, Gao S, Jiang X M, et al. NO emission characteristics of superfine pulverized coal combustion in the O2 / CO2 , atmosphere. Energ Convers Manage, 2014, 77: 349 [8] Wu H, Kim Y J, Vandadi V, et al. Experiment on superadiabatic radiant burner with augmented preheating. Appl Energ, 2015, 156: 390 [9] Feng J X, Cao Y P, Man Y, et al. Heat transfer characteristic of double鄄a type gas fried radiant tube by CFD simulation. Energ Metall Ind, 2014, 33(1): 14 (冯俊小, 曹亚平, 满毅,等. 基于 CFD 双 a 型燃气辐射管燃 烧的传热特性. 冶金能源, 2014, 33(1): 14) [10] Saleh H E. Effect of exhaust gas recirculation on diesel engine nitrogen oxide reduction operating with jojoba methyl ester. Re鄄 newable Energ, 2009, 34(10): 2178 [11] Feng J X, Wang H Y, Wu Q M, et al. Structural optimization and numerical simulation of gas鄄fired radiant tube heat exchang鄄 ers. J Univ Sci Technol Beijing, 2013, 35(7): 935 (冯俊小, 王宏宇, 吴启明, 等. 燃气辐射管换热器的结构优 化与数值模拟. 北京科技大学学报, 2013, 35(7): 935) [12] Cheng S M, Yong H Q, Wu C B. Decreasing of NOx emission in fired鄄natural gas radiant鄄tube with regenerative combustor. J Chongqing Univ, 2008, 31(3): 271 (程淑明, 雍海泉, 伍成波. 降低天然气蓄热式辐射管烟气 中 NOx 的实验. 重庆大学学报, 2008, 31(3): 271) [13] Saravanan P, Sahoo G, Srikanth S, et al. Failure analysis of ra鄄 diant tube burners in continuous annealing line (CAL) of an in鄄 tegrated steel plant. J Failure Anal Prevention, 2011, 11 (3): 286 [14] H佗jek J, Jegla Z, Vond佗l J. Numerical analysis of radiant sec鄄 tion of fired heater focused on the effect of wall鄄tube distance. Comput Aided Chem Eng, 2014, 33: 331 [15] Jegla Z, H佗jek J, Vond佗l J. Numerical analysis of heat transfer in radiant section of fired heater with realistic imperfect geometry of tube coil. Chem Eng Trans, 2014, 39: 889 [16] Normann F, Andersson K, Leckner B, et al. High鄄temperature reduction of nitrogen oxides in oxy鄄fuel combustion. Fuel, 2008, 87(17): 3579 [17] Liu C C, Wu Q M, Jiang H. A Radiant Tube Heating Device: China Patent, CN201110163899. 5. 2011鄄鄄06鄄鄄17 (刘长春, 吴启明, 江华. 一种辐射管加热装置: 中国, CN201110163899. 5. 2011鄄鄄06鄄鄄17) [18] Reihani A, Razavi S A, Abbasi E, et al. Failure analysis of wel鄄 ded radiant tubes made of cast heat鄄resisting steel. J Failure Anal Prevention, 2013, 13(6): 658 [19] Gao H L, Li H Y, Shi Y Z, et al. Discussion on the structure of low鄄temperature radiant heater of gate station. Appl Mech Mat, 2015, 700: 660 [20] Xu Q, Feng J X, Zhou W H, et al. Model validation and simu鄄 lation studies on zoned and staged gas fired radiant tubes. Chin J Eng, 2016, 38(11):1620 (徐钱, 冯俊小, 周闻华, 等. 分区分级燃气辐射管模型验证 及仿真研究. 工程科学学报, 2016, 38(11):1620) [21] Li X, Zhang J, Yang H, et al. Combustion characteristics of non鄄premixed methane micro鄄jet flame in coflow air and thermal interaction between flame and micro tube. Appl Therm Eng, 2016, 112: 296 ·761·
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