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600 MW超临界W火焰锅炉无烟煤燃烧NOx释放规律研究
引用本文:王为术,刘军,王保文,姚明宇,王纪宏.600 MW超临界W火焰锅炉无烟煤燃烧NOx释放规律研究[J].煤炭学报,2011,36(6):993-998.
作者姓名:王为术  刘军  王保文  姚明宇  王纪宏
作者单位:华北水利水电学院 电力学院,河南 郑州 450011
基金项目:国家自然科学基金资助项目(50906030)
摘    要:针对600 MW超临界W火焰锅炉,对炉内劣质无烟煤燃烧和NO x 释放规律进行数值模拟,研究了煤粉浓度、一次风速及前后墙配风方式对炉内NO x 释放规律的影响。结果表明:提高煤粉浓度可显著降低炉膛出口NO x 排放,在锅炉负荷允许范围内,与常规浓度相比,NO x 排放量可降低42%;合理选择前后拱一次风速可有效控制炉内NO x 生成,存在最佳一次风速;炉膛前后墙配风方式对炉内火焰对称性影响较大,而对NO x 生成量影响不大。

关 键 词:超临界W火焰锅炉  NO  x  排放  煤粉燃烧  数值模拟  
收稿时间:2011-05-03

Study on the NOx emission during the combustion of anthracite coal in 600 MW supercritical pressure W flame boiler
Abstract:In light of a 600 MW supercritical pressure W flame boiler,the combustion of low quality anthracite coal and the generation of NO x in the furnace were numerically simulated.The influence of pulverized coal concentration,primary air velocity and the air distribution on the front and rear wall to the generation of NO x was studied.The results indicate that NO x emission at furnace exit can be effectively decreased by increasing the concentration of pulverized coal.Compared with the conventional concentration,NO x emission can be decreased by 42%.The NO x generated in the furnace can be controlled by selecting a reasonable primary air velocity on the front and rear arch,and there is a best primary air velocity.The air distribution on the front and rear wall has great influence on the symmetry of flame in the furnace but has little effect on the generation of NO x.
Keywords:supercritical pressure W flame boiler  NO x emission  pulverized coal combustion  numerical simulation
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