乙烯工业 ›› 2021, Vol. 33 ›› Issue (3): 41-45.

• 裂解炉 • 上一篇    下一篇

裂解炉低氮燃烧器改造后存在问题的原因分析

孙全胜   

  1. 中国石油化工股份有限公司天津分公司,天津 300270
  • 收稿日期:2020-05-14 修回日期:2021-02-05 出版日期:2021-09-25 发布日期:2021-09-29
  • 作者简介:孙全胜,女,1991年毕业于北京化纤工学院生产过程自动化专业,学士,主要从事加热炉安全与节能研究工作,高级工程师。

Cause Analysis of Problems in Cracking Furnace after Low NOx Burner Modification

Sun Quansheng   

  1. SINOPEC Tianjin Company, Tianjin, P.C.300270
  • Received:2020-05-14 Revised:2021-02-05 Online:2021-09-25 Published:2021-09-29

摘要: 针对某公司裂解炉在低氮燃烧器改造后存在的问题开展了分析研究,通过对该裂解炉进行单台燃烧器的CFD数值模拟,以及对温度场、速度场、浓度场的数据分析,找出影响炉膛温度场分布、炉膛压力控制以及NOx排放等达到最佳状态的技术瓶颈,并提出对燃烧器现存结构的改进建议。

关键词: 低氮改造 , NOx排放 , 燃烧器 , CFD数值模拟 , 温度场 , 速度场 , 浓度场

Abstract:

In this paper, the problems in cracking furnace after low NOX burner modification are analyzed and studied. The single burner CFD numerical simulation of cracking furnace is carried out. Through the analysis of temperature field, velocity field and concentration field, the technical bottlenecks that affect the distribution of furnace temperature field, furnace pressure control and NOx emissions are found out. Some suggestions are put forward for the improvement of burner structure.

Key words: low NOX burner modification, NOX emission, burner, CFD numerical simulation, temperature field, velocity field, concentration field