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干式低氮燃烧系统火焰丢失原因分析 被引量:2

Cause Analysis on Loss of Flame in a Dry-type Low-nitrogen Combustion System
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摘要 针对9E型燃气轮机干式低氮(DLN1.0)燃烧系统的火焰不稳定和丢失的问题,从设计安装、燃烧调整和硬件故障等方面对影响火焰的因素进行分析,并结合现场关键运行参数进行综合考虑;根据分析结果,制定具有针对性的预防和处理措施。运行结果表明:采取针对性的预防和处理措施后,可以有效防止9E型燃气轮机火焰丢失故障,确保机组的安全运行。 To solve the problem of instable flame and flame loss occurring in the dry-type low-nitrogen (DLN1.0) combustion system of a 9E gas turbine, an analysis was conducted on factors that may influence the flame from the aspect of design, installation, combustion adjustment and hardware fault, etc., based on key operation parameters on site, after which corresponding preventative and treatment measures were proposed. Operation results show that the failure of flame loss in 9E gas turbines can be effectively avoided by taking above countermeasures and the unit safety is thus guaranteed.
作者 江啸
出处 《发电设备》 2016年第4期265-268,共4页 Power Equipment
关键词 燃气轮机 干式低氮 火焰丢失 燃烧调整 gas turbine dry-type low-nitrogen combustion system loss of flame combustion adjustment
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参考文献2

  • 1柴志红,刘志勇,万洪军,富兆龙.PG9171E型燃气轮机DLN1.0燃烧调整技术分析[J].燃气轮机技术,2015,28(3):53-61. 被引量:13
  • 2GE Energy. Specification for fuel gases for combustion in heavy duty gas turbines, GEI 41040i[S/OL]. [2005-09-06]. http..//wenku, baidu, corn/link? url = kQCwSdrdARTTEFd pcQG8hk3RxwYXHTg27vjFEdZhObNGp4OF0oEphgo6 M10 dg0ZLLA4Psm6 NLLqrnuhVnwOxqV1-X5 aQWIj26WeH4Of TINW.

二级参考文献2

  • 1钟保华.燃气轮机燃烧调整[J].燃气轮机发电技术,2014,(1):2-13.
  • 2张超,肖波涛,林晓波,李哲.PG9171E型燃气轮机改用DLN-1.0燃烧系统后面临的问题及安全经济性评估[J].燃气轮机发电技术,2013,(1):3-11.

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