首页> 外文会议>International Symposium on Combustion; 20040725-30; Chicago,IL(US) >Extending low-NO_x operating range of a lean premixed-prevaporized gas turbine combustor by reaction of secondary mixtures injected into primary stage burned gas
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Extending low-NO_x operating range of a lean premixed-prevaporized gas turbine combustor by reaction of secondary mixtures injected into primary stage burned gas

机译:通过注入初级燃烧气体中的二次混合物的反应,扩展稀薄的预混合-预蒸发燃气轮机燃烧器的低NO_x工作范围

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Reactions of lean to ultra-lean premixed mixtures injected into the hot burned gas that was produced in the lean-burn primary stage can be successfully used for extending the ultra-low NO_x operating range of a gas turbine combustor. A tubular lean-lean two-stage model combustor for a simple cycle 200 kW gas turbine was designed based on this concept. Two secondary mixture injection tubes with a flow deflector at the exit, extending into the primary combustion zone, were used to inject lean premixed-prevaporized kerosene-air mixtures of various fuel concentrations into the volumes of hot burned gas produced by the lean-burn primary burners. The emissions and combustion characteristics were evaluated at 600 K inlet air temperature and 0.8 Mpa pressure for two sizes of mixture injection tubes. With increasing the secondary fuel flow rate while maintaining the primary mixture equivalence ratio fixed, the NO_x concentration remained at the level achieved for no secondary fuel (i.e., single stage combustion) for a while before it gradually increased. A still further increase in the secondary mixture equivalence ratio beyond the primary mixture equivalence ratio finally resulted in a steep increase in NO_x emissions due to enhanced thermal NO_x formation. It was shown that at proper air splits, high combustion efficiency was achieved while maintaining the NO_x emissions in a single digit over a very wide range of overall equivalence ratios. It was found that combustion oscillation hardly occurred in the lean-lean two-stage combustion provided that the primary mixture was lean enough, though severe combustion oscillation occurred at greater overall equivalence ratios (typically > 0.8) in the single stage combustion.
机译:注入稀燃初级阶段产生的热燃烧气体中的稀燃至超稀燃预混混合物的反应可成功用于扩大燃气轮机燃烧器的超低NO_x工作范围。基于此概念,设计了用于简单循环200 kW燃气轮机的管状稀薄两级模型燃烧器。使用两个在出口处带有导流板的二级混合气注入管,延伸到初级燃烧区,用于将各种燃料浓度的稀薄预混-预蒸发的煤油-空气混合物注入稀薄燃烧的一次燃烧产生的热燃气中燃烧器。对于两种尺寸的混合喷射管,在600 K进气温度和0.8 Mpa压力下评估了排放和燃烧特性。随着增加二次燃料流量,同时保持一次混合当量比固定不变,NO_x浓度在逐渐增加之前的一段时间内保持在没有二次燃料(即单级燃烧)的水平。次级混合物当量比的进一步增加超过初级混合物当量比,最终由于增强的热NO_x形成而导致NO_x排放量急剧增加。结果表明,在适当的空气分流下,可以在很高的总当量比范围内将NO_x排放保持在个位数的同时实现高燃烧效率。已发现,只要主混合物足够稀薄,稀薄稀薄两级燃烧几乎不会发生燃烧振荡,尽管在单段燃烧中较大的总当量比(通常> 0.8)下会出现严重的燃烧振荡。

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