[1] 段传和, 夏怀祥, 葛亮. 燃煤电站SCR烟气脱硝工程技术[M]. 北京: 中国电力出版社, 2009.
[2] 高凤,杨嘉谟.燃煤烟气脱硝技术的应用与进展[J].环境保护科学,2007,33(3) :11-13.
GAO Feng, YANG Jiamo. Application and Development of Technologies for Flue Gas Denitration[J]. Environmental Protection Science, 2007, 33(3) : 11-13.
[3] 张强. 燃煤电站SCR烟气脱硝工程技术及工程应用[M]. 北京: 化学工业出版社, 2007.
[4] 顾彧, 金保升, 肖刚. SCR积灰特性及清灰技术的比较分析[J].能源研究与利用, 2008(4): 15-17.
GU Yu, JIN Baosheng, XIAO Gang. Comparative Analysis between SCR Dust Characteristic and Cleaning Technolog[J]. Energy Research & Utilization, 2008(4): 15-17.
[5] 邓淮铭, 陈鸿伟, 赵超, et al. 积灰坍塌对催化剂堵塞问题影响实验研究[J]. 电力科学与工程, 2017, 33(6):55-59.
DENG Huaiming, CHEN Hongwei, ZHAO Chao, et al. Experimental study on the effect of deposited ash collapse on catalyst blockage[J]. Electric Power Science and Engineering, 2017,33(6):55-59.
[6] 赵利, 李志峰, 万季霖, 郝正. SCR脱硝系统运行中存在的问题分析[J].华电技术, 2016, 38(6): 71-72.
ZHAO Li, LI Zhifeng, WAN Jilin, HAO Zheng. Discussion on the problem existing in the SCR denitrification system[J]. Huadian Technology, 2016, 38(6): 71-72.
[7] 雷达, 金保升. 燃煤电站SCR内烟气流场及还原剂浓度场模拟与优化[J]. 煤炭学报, 2009, 34(3): 394-399.
LEI Da, JIN Baosheng. Numerical simulation and optimization of flue gas flow field and reagent concentration field in coal fired power station SCR system[J]. Journal of China Coal Society, 2009, 34(3): 394-399.
[8] LIU Hanqiang, Guo Tingting, Yang Yongping, et al. Optimization and Numerical Simulation of the Flow Characteristics in SCR System[J]. Energy Procedia, 2012, 17(Part A):801-812.
[9] XU Yuanyuan, ZHANG Yan, WANG Jingcheng, et al. Application of CFD in the optimal design of a SCR-DeNOx system for a 300MW coal-fired power Plant[J]. Computers & Chemical Engineering, 2013, 49: 50-60.
[10] RISIO B, HAN X, HILBER M, et al. Industrial scale assessment of the predictive quality of a 3D-CFD model for SCR DENOX catalysts[J]. Vgb Powertech, 2012, 92(10):74-79.
[11] MAROCCO L, LNZOLI F. Multiphase Euler-lagrange CFD simulation applied to wet flue gas desulphurisation technology[J]. International Journal of Multiphase Flow, 2009, 35(2):185-194.
[12] KLIMANEK A, CEDZICH M, BIA ŁECKI R. 3D CFD modeling of natural draft wet-cooling tower with flue gas injection[J]. Applied Thermal Engineering, 2015, 91:824-833.
[13] HEIREDAL M L, JENSEN A D, Thøgersen THΦGERSEN J R, et al. Pilot-scale investigation and CFD modeling of particle deposition in low‐dust monolithic SCR DeNOx catalysts[J]. Aiche Journal, 2013, 59(6):1919-1933.
[14] STRÖM H, LUNDSTRÖM A, ANDERSSON B. Choice of urea-spray models in CFD simulations of urea-SCR systems[J]. Chemical Engineering Journal, 2009, 150(1):69-82.
[15] 赵大周,刘沛奇,何胜,等.燃煤电站SCR烟气脱硝CFD技术的研究进展[J]. 中国电力,2016,49 (8) :157-161.
ZHAO Dazhou, LIU Peiqi, HE Sheng, et al. Research progress of CFD-based SCR flue gas De-NOx technology for coal-fired power plants[J]. Electric Power, 2016,49(8): 157-161.
[16] 严祯荣, 罗晓明, 杨茉, 等. 燃煤锅炉节能减排中应用CFD技术的探索[J]. 锅炉技术, 2010, 41(3):65-69.
YAN Zhenrong, LUO Xiaoming, YANG Mo, et al. The exploration on application of CFD technology in energy saving-emission reducing of pulverized coal-fired boiler[J]. Boiler Technology, 2010, 41(3):65-69.
[17] 刘海蛟, 徐灏. CFD数值模拟在660MW燃煤发电厂烟气脱硝工程中的应用[J]. 能源工程, 2014(5):56-60.
LIU Haijiao, XU Hao. Application of CFD numerical simulation in SCR denitration for 660MW coal-fired power plant[J]. Energy Engineering, 2014(5):56-60. |