首页> 外文会议>ASME turbo expo >COMBUSTION STABILITY AND EMISSIONS IN A LEAN PREMIXED INDUSTRIAL GAS TURBINE BURNER DUE TO CHANGES IN THE FUEL PROFILE
【24h】

COMBUSTION STABILITY AND EMISSIONS IN A LEAN PREMIXED INDUSTRIAL GAS TURBINE BURNER DUE TO CHANGES IN THE FUEL PROFILE

机译:由于燃油特性的变化,一种稀薄的工业燃气轮机燃烧器的燃烧稳定性和排放

获取原文

摘要

This paper deals with an experimental investigation of dry low emission (DLE) burners for industrial gas turbines. Changes in the fuel profile, pressure drop over the burner and external pilot flame stabilization have been investigated regarding combustion stability and emissions. This has been achieved by parallel experimental work in a water rig and a newly commissioned atmospheric combustion test rig. Some verifying tests in a high pressure rig were also conducted. The work in the water rig has been directed towards evaluating different fuel profiles at the burner exit due to changes in the fuel outlet geometry. Variations of the fuel outlet geometry were achieved by altering the effective area of the hardware configuration of the fuel outlet ports or by moving or adding fuel outlet ports. A few of the tested configurations in the water rig was chosen for further evaluation by atmospheric combustion tests with respect to combustion stability and emissions. A more general study on combustion stability and emissions was also performed for different burners, burner configurations and variations in pressure drop over the burner. The pressure drop over the burner in the test corresponds very well to the pressure drop measured over a single burner in an annular combustion chamber of an industrial gas turbine at different loads. The combustion was monitored by a high speed video camera equipped with an image intensifier. Simultaneously the dynamic pressure was measured by a piezoelectric pressure transducer, making it possible to know when each image was taken relative to the pressure.Results for different hardware configurations will be shown considering the frequency response from the flame and the dynamic pressure as well as the characteristic combustion instability close to lean blowout.
机译:本文涉及用于工业燃气轮机干燥低排放(DLE)燃烧器的实验研究。燃料型材的变化,燃烧器和外部先导火焰稳定上的压降和外部先导火焰稳定性的变化已经研究了燃烧稳定性和排放。这是通过防水钻机的平行实验工作和新委托大气燃烧试验台实现的。还进行了一些在高压钻机中的验证测试。由于燃料出口几何形状的变化,在防水钻机中的工作旨在评估燃烧器出口处的不同燃料型材。通过改变燃料出口的硬件配置的有效面积或通过移动或添加燃料出口来实现燃料出口几何形状的变化。选择了防水钻机中的一些经过测试的配置,以进一步评估燃烧稳定性和排放的大气燃烧试验。还对不同的燃烧器,燃烧器配置和燃烧器压力下降的变化进行了更一般的燃烧稳定性和排放研究。测试中的燃烧器上的压力降低对应于在不同负载的工业燃气轮机的环形燃烧室中的单个燃烧器上测量的压降。通过配备有图像增强器的高速摄像机监测燃烧。同时通过压电压力换能器测量动态压力,使得可以知道每个图像相对于压力何时采取。 考虑到火焰和动态压力的频率响应以及接近倾向于稀释的特性燃烧不稳定,将显示不同硬件配置的结果。

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