首页> 外文会议>Proceedings of the ASME power conference 2009 >ONLINE COMBUSTION DYNAMICS MONITORING SYSTEM (CDMS) FOR COMBUSTION TURBINES - EXPERIENCE AND EXAMPLES OF HOW CDMS SUPPORTS OPERATIONS AND PREVENTS DAMAGES
【24h】

ONLINE COMBUSTION DYNAMICS MONITORING SYSTEM (CDMS) FOR COMBUSTION TURBINES - EXPERIENCE AND EXAMPLES OF HOW CDMS SUPPORTS OPERATIONS AND PREVENTS DAMAGES

机译:燃气轮机在线燃烧动力学监测系统(CDMS)-CDMS如何支持操作和预防损坏的经验和示例

获取原文
获取原文并翻译 | 示例

摘要

The development of advanced premix burners in combustion turbines has paved the way for dry low NO_X combustion. The very lean mixtures of air and fuel in these burners lead to lower flame temperatures, drastically reducing the thermal production of nitric oxides. Careful tuning can reduce NO_X emissions to single digit levels. The downside is that the introduction of lean premix combustion has made flames more susceptible to instabilities. Excess air is added to such an extent that the mixture approaches the lean-blow-out limit.rnChanging ambient conditions or a deviation from the mean calorific value of the fuel can lead to acoustic oscillations or pressure pulsations, known as "humming". Low frequency pulsations or "chugging" can also occur. Besides flame flash back, also lean blow out of the flames is possible. Acoustic oscillations of the combustion chamber can excite natural frequencies of hot gas path components leading to mechanical vibrations. The vibrations can become large enough for the safety system to trip the machine and can cause severe damages (see figure 1).rnThe need to monitor combustion dynamics and avoid possible damages caused by high dynamics has gained increased attention over the last years. This paper will cover some background and theory on this phenomenon and will then focus on how to detect, monitor and avoid damages caused by increased combustion dynamics. More and more users install combustion dynamics monitoring systems (CDMS) to monitor the combustion dynamics on-line. Examples will be given of how users of KEMA's combustion dynamics monitoring systemrnFlameBeat? have changed their operations and prevented damages based on the information presented by the CDMS.
机译:燃气轮机中先进的预混燃烧器的发展为干式低NO_X燃烧铺平了道路。这些燃烧器中的空气和燃料非常稀薄的混合物导致较低的火焰温度,从而大大减少了一氧化氮的热产生。仔细的调整可以将NO_X排放降低到个位数水平。不利的一面是,稀薄预混燃烧的引入使火焰更易受到不稳定的影响。添加过量空气的程度应使混合物达到稀薄吹出极限。不断变化的环境条件或与燃料平均热值的偏离会导致声音振荡或压力脉动,称为“嗡嗡声”。低频脉冲或“颤动”也可能发生。除了回火,还可以将稀薄的火焰吹出。燃烧室的声振动会激发热气路径组件的固有频率,从而导致机械振动。振动会变得很大,足以使安全系统跳闸,并可能造成严重损坏(见图1)。rn近年来,监视燃烧动态并避免高动态可能造成损坏的需求已引起越来越多的关注。本文将介绍有关此现象的一些背景和理论,然后集中于如何检测,监视和避免由于增加的燃烧动力学而造成的损害。越来越多的用户安装了燃烧动力学监测系统(CDMS),以在线监测燃烧动力学。将举例说明KEMA燃烧动力学监控系统rnFlameBeat的用户如何使用?已根据CDMS提供的信息更改了操作并防止了损坏。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号