校内登录 EN

个人信息 更多+
  • 教师姓名: 王毅斌
  • 性别: 男
  • 职称: 副研究员
  • 博士生导师: 否
  • 硕士生导师: 是
  • 学历: 硕博连读
  • 学位: 博士
  • 所在单位: 能源与动力工程学院
  • 电子邮箱:

其他联系方式

邮箱:

移动电话:

通讯/办公地址:

当前位置: 中文主页 - 科学研究 - 论文成果

Numerical Simulation of Combustion and NOx Formation Characteristics in a 330 MW Tangentially Fired Boiler Retrofitted with Gasification-Combustion Technology

发布时间:2026-08-17
点击次数:
发布时间:
2026-08-17
论文名称:
Numerical Simulation of Combustion and NOx Formation Characteristics in a 330 MW Tangentially Fired Boiler Retrofitted with Gasification-Combustion Technology
发表刊物:
Combustion Science and Technology
摘要:
The rising penetration of renewable energy requires coal-
fired units to operate flexibly under deep low-load conditions, while maintaining stable combustion and minimizing NOx emissions under conditions of wide-load remain a big challenge. (Significance) Gasification-combustion technology shows promising potential for stable combustion and NOx control, yet its industrial-scale performance has not yet been clarified. (Aim) This paper aims to comparatively investigate the characteristics of in-furnace combustion and NOx formation before and after retrofitting under both high and low load conditions with numerical simulation. (Methodology) The object
was a 330 MW coal-fired unit using gasification-combustion technology, in which pulverized coal was partially gasified into high- temperature mixture of gas and char, then injected into the furnace via a novel burner. NOx formation is predicted using a combined model consisting of fuel-NOx and thermal-NOx based on the Zeldovich mechanism, coupled with global reaction kinetics of N-containing intermediates. (Conclusion) The simulation results indicated that under full-load operation, the high-velocity gas flow field was significantly optimized after retrofitting, and the high- temperature zone in the furnace was reduced, maintaining a burnout rate above 99% and lowering NOx emissions by 14.45% owing to the contraction of high-temperature region and the reducing atmosphere of syngas. Under low-load conditions, the retrofit enhanced thermal uniformity within the main combustion zone and achieved a 49.0% decrease in NOx concentration in the exit of furnace.
(Specific application) This study provided important theoretical basis and thermal engineering guidelines for the application of gasification-combustion technology in existing coal-fired units. It could also present a viable solution for the flexible operation and wide-load stable combustion of coal-fired power units
论文类型:
期刊论文
是否译文:
收录刊物:
SCI