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全燃烟煤的W火焰锅炉改造数值模拟研究

赖金平 李朝兵 何陆灿 张文振

山东电力技术2024,Vol.51Issue(7):68-74,80,8.
山东电力技术2024,Vol.51Issue(7):68-74,80,8.DOI:10.20097/j.cnki.issn1007-9904.2024.07.009

全燃烟煤的W火焰锅炉改造数值模拟研究

Numerical Simulation Research on the Transformation of A W-flame Boiler with Full Combustion of Bituminous Coal

赖金平 1李朝兵 1何陆灿 1张文振2

作者信息

  • 1. 国能南京电力试验研究有限公司,江苏 南京 210023
  • 2. 烟台龙源电力技术股份有限公司,山东 烟台 264006
  • 折叠

摘要

Abstract

All burning bituminous coal retrofit numerical simulation was conducted on a 350 MW W-flame boiler.The relative position of the burner of opposed swirl combustion boiler and W-flame boiler at the same level was analyzed.The results indicate that the use of opposed swirl combustion in W-flame boilers is theoretically feasible.The influence of the renovation plan on the velocity distribution,temperature distribution,oxygen distribution and parameters of furnace outlet was analyzed using numerical simulation methods.The numerical simulation results show that the use of opposed swirl combustion method improves the flame filling degree in the lower furnace of the boiler,enhances the coal powder burning rate,reduces the combustible content of fly ash and slag decreased from 1.3%and 2.64%to 0.53%and 0.43%,and increases the NOx emission of the furnace outlet from 647 mg/m3 to 812 mg/m3.The area near side wall and wing wall are in reducing atmosphere,which poses a risk of coking and high-temperature corrosion.It is necessary to installed closing-to-wall air system on the side walls and wing walls.Compared with the opposed swirl combustion boiler which burning bituminous coal,the retrofit scheme has a lower exhaust air rate and further improvement of the exhaust air rate is needed.

关键词

W火焰锅炉/对冲旋流燃烧方式/燃尽率/NOx排放

Key words

W-flame boiler/opposed swirl combustion/burn-off rate/NOx emission

分类

动力与电气工程

引用本文复制引用

赖金平,李朝兵,何陆灿,张文振..全燃烟煤的W火焰锅炉改造数值模拟研究[J].山东电力技术,2024,51(7):68-74,80,8.

基金项目

国家能源科学技术研究院有限公司科技项目(DY2022Y05). Science and Technology Project of China Energy Science and Technology Research Institute Co.,Ltd.(DY2022Y05). (DY2022Y05)

山东电力技术

1007-9904

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