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首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Using Hydrogen as Gas Turbine Fuel: Premixed Versus Diffusive Flame Combustors
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Using Hydrogen as Gas Turbine Fuel: Premixed Versus Diffusive Flame Combustors

机译:使用氢气作为燃气轮机燃料:预混与扩散火焰燃烧器

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摘要

This work aims at estimating the efficiency gain resulting from using lean premixed combustors in hydrogen-fired combined cycles with respect to diffusive flame combustors with significant inert dilution to limit NO_x emissions. The analysis is carried out by considering a hydrogen-fired, specifically tailored gas turbine whose features are representative of a state-of-the-art natural gas-fired F-class gas turbine. The comparison between diffusion flame and lean premixed combustion is carried out considering nitrogen and steam as diluents, as well as different stoichiometric flame temperatures and pressure drops. Results show that the adoption of lean premixed combustors allows us to significantly reduce the efficiency decay resulting from inert dilution. Combined cycle efficiency slightly reduces from 58.5%-57.9% when combustor pressure drops vary in the range 3%-10%. Such efficiency values are comparatively higher than those achieved by diffusive flame combustor with inert dilution. Finally, the study investigated the effects of decreasing the maximum operating blade temperature so as to cope with possible degradation mechanisms induced by hydrogen combustion.
机译:这项工作旨在估算相对于具有显着惰性稀释以限制NO_x排放的扩散火焰燃烧器,在氢气联合循环中使用贫油预混燃烧器所产生的效率增益。通过考虑氢燃烧的,专门定制的燃气轮机进行分析,该燃气轮机的特征代表了最先进的天然气F级燃气轮机。考虑到氮气和蒸汽作为稀释剂,以及不同的化学计量火焰温度和压降,对扩散火焰与稀薄预混燃烧进行了比较。结果表明,采用稀薄的预混燃烧器可使我们显着减少惰性稀释导致的效率下降。当燃烧器压降在3%-10%的范围内变化时,联合循环效率从58.5%-57.9%略微降低。这样的效率值相对高于具有惰性稀释的扩散火焰燃烧器所达到的效率值。最后,该研究调查了降低最大叶片温度以应对氢燃烧引起的降解机理的影响。

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  • 来源
    《Journal of Engineering for Gas Turbines and Power 》 |2014年第5期| 051504.1-051504.10| 共10页
  • 作者单位

    Energy Department, Politecnico di Milano, Via Lambruschini 4, Milano 20156, Italy;

    Energy Department, Politecnico di Milano, Via Lambruschini 4, Milano 20156, Italy;

    Energy Department, Politecnico di Milano, Via Lambruschini 4, Milano 20156, Italy;

    Enel Ingegneria e Ricerca, via A. Pisano 120, Pisa 56121, Italy;

    Enel Ingegneria e Ricerca, via A. Pisano 120, Pisa 56121, Italy;

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