期刊文献+

300MW燃煤锅炉SNCR过程的数值模拟 被引量:5

Numerical simulation of SNCR in a 300MW pulverized-coal boiler
在线阅读 下载PDF
导出
摘要 利用FLUENT软件对300 MW燃煤锅炉的选择性非催化还原(SNCR)过程进行了模拟.重点分析尿素溶液的喷射位置、液滴喷射速度、雾化平均粒径对SNCR过程脱硝效率以及漏氨量的影响,从而得到实际运行过程中最佳运行条件.结果显示,增加喷射速度能加快蒸发过程;雾化粒径越大越有利于还原剂的平均分布,但也会延长蒸发时间;在第1,2层同时喷射尿素溶液,并控制雾化平均粒径为0.3 mm和液滴喷射速度为30 m/s时,能够获得较好的脱硝效果.将不同氨氮摩尔比模拟结果与实际过程进行对比,结果表明两者能够较好地吻合. Modeling and numerical simulation for SNCR(selective non-catalytic reduction) in a 300MW pulverized-coal boiler were conducted based on the FLUENT software.Main factors including the injection position of urea-solution,droplet velocity,droplet size and their influence on NOx removal efficiency and ammonia slip were analyzed,thus the best operational conditions were obtained.The results indicate that increasing the injection speed can accelerate the evaporation process.The greater the droplet size is,the better the reductant distributes,and the longer the evaporation time is.Injecting urea-solution on both the first and second floor with a mean atomizing particle size of 0.3mm and a velocity of 30m/s shows an ideal result.Simulation and measured values under different molar ratios of NH3/NO are compared,which shows a good agreement.
出处 《东南大学学报(自然科学版)》 EI CAS CSCD 北大核心 2012年第4期691-695,共5页 Journal of Southeast University:Natural Science Edition
基金 科技部中欧国际合作资助项目(2010DFA61960)
关键词 数值模拟 选择性非催化还原 雾化 氮氧化物 numerical simulation selective non-catalytic reduction atomizing nitric oxide
  • 相关文献

参考文献12

  • 1Javed M T, Irfan N, Gibbs B M. Control of combustion- generated nitrogen oxides by selective non-catalytic re- duction [ J ]. Journal of Environmental Management, 2007,83 ( 3 ) : 251 - 289.
  • 2Nguyen T D B, Kang T, Lim Y, et al. Application of urea-based SNCR to a municipal incinerator: on-site test and CFD simulation[ J ]. Chemical Engineering Jour- nal,2009,152 ( 1 ) : 36 - 43.
  • 3Nguyen T D B, Lirn Y, Kim S, et al. Experiment and computational fluid dynamics (CFD) simulation of urea-based selective noncatalytic reduction (SNCR) in a pilot-scale flow reactor [J ]. Enery & Fuel, 2008,22 (6) : 3864 - 3876.
  • 4Choi C R, Kim C N. Numerical investigation on the flow, combustion and NOx emission characteristics in a 500 MWe tangentially fired pulverized-coal boiler [ J ]. Fuel,2009,88(9) : i[720 1731.
  • 5Birkhold F, Meingast U ,Wassermann P, et al. Modeling and simulation of the injection of urea-water-solution for automotive SCR DeNOx-systems [ J]. Applied Catalysis B : Environmental, 2007,70 ( 1/2/3/4 ) : 119 - 127.
  • 6吕洪坤,杨卫娟,周俊虎,刘建忠,张明,李凤瑞.尿素溶液高温热分解特性的实验研究[J].中国电机工程学报,2010,30(17):35-40. 被引量:50
  • 7Aoki H, Fujiwara T, Morozumi Y, et al. Measurement of urea thermal decomposition reaction rate for NO se- lective non-catalytic reduction [ C ]//Fifth International Conference on Technologies and Combustion for a Clean Environment. Lisbon, Portugal, 1999 : 115 - 118.
  • 8Rota R, Antos D, Zanoelo I F, et al. Experimental and modeling analysis of the NOxOUT process [ J]. Chemi- cal Engineering Science ,2002,57( 1 ) : 27 -38.
  • 9Brouwer J, Heap M P, Pershing D W, et al. A model for prediction of selective non-catalytic reduction of ni- trogen oxides by ammonia, urea, and cyanuric acid with mixing limitations in the presense of CO [ C ]//Twenty- sixth Symposium (International) on Combustion/The Combustion Institute. Naples, Italy, 1996 : 2117 - 2124.
  • 10吕洪坤,杨卫娟,周俊虎,周志军,黄镇宇,岑可法.电站锅炉选择性非催化还原脱硝实验研究——还原区温度、尿素溶液喷射体积流量的影响[J].浙江大学学报(工学版),2009,43(9):1655-1660. 被引量:8

二级参考文献57

共引文献74

同被引文献50

引证文献5

二级引证文献26

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部