首页> 外文会议>ASME turbo expo: turbine technical conference and exposition >INVESTIGATION OF HYDROGEN ENRICHED NATURAL GAS FLAMES IN A SGT-700/800 BURNER USING OH PLIF AND CHEMILUMINESCENCE IMAGING
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INVESTIGATION OF HYDROGEN ENRICHED NATURAL GAS FLAMES IN A SGT-700/800 BURNER USING OH PLIF AND CHEMILUMINESCENCE IMAGING

机译:利用OH PLIF和化学发光成像技术研究SGT-700 / 800燃烧器中富氢天然气火焰

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The effect of hydrogen enrichment to natural gas flames was experimentally investigated at atmospheric pressure conditions using flame chemiluminescence imaging, planar laser-induced fluorescence of hydroxyl radicals (OH PLIF) and dynamic pressure monitoring. The experiments were performed using a 3rd generation dry low emission (DLE) burner used in both SGT-700 and SGT-800 industrial gas turbines from Siemens. The burner was mounted in an atmospheric combustion test rig at Siemens with optical access in the flame region. Four different hydrogen enriched natural gas flames were investigated; 0 vol. %, 30 vol.%, 60 vol.% and 80 vol.% of hydrogen. The results from flame chemiluminescence imaging and OH PLIF show that the size and shape of the flame was clearly affected by hydrogen addition. The flame becomes shorter and narrower when the amount of hydrogen is increased. For the 60 vol.% and 80 vol.% hydrogen flames the flame has moved upstream and the central recirculation zone that anchors the flame has moved upstream the burner exit. Furthermore, the position of the flame front fluctuated more for the full premixed flame with only natural gas as fuel than for the hydrogen enriched flames. Measurements of pressure drop over the burner show an increase with increased hydrogen in the natural gas despite same airflow thus confirming the observation that the flame front moves upstream towards the burner exit and thereby increasing the blockage of the exit. Dynamic pressure measurements in the combustion chamber wall confirms that small amounts of hydrogen in natural gas changes the amplitude of the dynamic pressure fluctuations and initially dampens the axial mode but at higher levels of hydrogen an enhancement of a transversal mode in the combustion chamber at higher frequencies could occur.
机译:使用火焰化学发光成像,平面激光诱导的羟基激光荧光(OH PLIF)和动态压力监测,在大气压条件下实验研究了氢气对天然气火焰的影响。使用来自Siemens的SGT-700和SGT-800工业燃气轮机的第3代干燥低发射(DLE)燃烧器进行实验。燃烧器安装在Siemens的大气燃烧试验台上,在火焰区域的光学接入。调查了四种不同的富含富氢的天然气火焰; 0卷。 %,30体积%,60体积%和80体积%。氢的%。来自火焰化学发光成像和OH PLIF的结果表明,火焰的尺寸和形状明显受氢添加的影响。当氢气增加时,火焰变短且较窄。对于60体积%和80体积vol。%氢气火焰火焰已经移动上游,中央再循环区锚固燃烧器出口上游移动。此外,火焰前沿的位置更加波动,对于仅具有天然气的全预混合火焰,与富含氢的火焰相比。在燃烧器上压降的测量显示,尽管气流相同的气流,但是燃烧器中的氢气增加的增加,从而证实了火焰前沿向燃烧器出口移动并从而增加出口的堵塞。燃烧室壁中的动态压力测量证实,天然气中的少量氢气改变了动态压力波动的幅度,并且最初抑制轴向模式,而是在较高水平的氢水量下在较高频率下提高燃烧室中的横向模式的增强可能发生。

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