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Impact of H_2 addition on flame stability and pollutant emissions for an atmospheric kerosene/air swirled flame of laboratory scaled gas turbine

机译:H_2添加对实验室规模燃气轮机大气煤油/空气涡流火焰的火焰稳定性和污染物排放的影响

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摘要

The purposes of this study are to compare the stability domains and the pollutant emissions when combustion occurs with and without addition of H_2 to a kerosene (Jet A1)/air premixed prevaporised mixture injected in a lean gas turbine combustor. Chem-iluminescence of CH~*, pollutant emissions (NO_χ and CO) and pressure fluctuations data are simultaneously collected in order to determine the effects of H_2 addition on the stability of the combustion and on the flame structure for an inlet temperature of 473 K, atmospheric pressure and for a large range of equivalence ratio (from 0.3 to 1). Addition of hydrogen enables keeping stable combustion conditions when, for the same kerosene mass flow, the flame becomes lifted and very unstable. As for pollutant emissions, results show that the equivalence ratio is the key parameter to control NO_χ emission even in the situation where the combustion power is increased due to H_2 addition. As H_2 addition strongly increases the flammability limits and the combustion stability domain, stable combustion can occur at leaner equivalence ratio and then decreases CO and NO_χ emissions. This is an important fact since no substitution effect takes place in the reduction of NO_χ and CO emissions. Study at constant combustion power and equivalence ratio by adjusting hydrogen and kerosene mass flow shows again a decrease in the pollutant emissions. Hydrogen injection in power generation systems using combustion seems to be a promising way in combustion research since due to the combined effects of enlarging combustion stability domain and reducing NO_χ emissions by substituting kerosene to the benefit of H_2.
机译:本研究的目的是比较在贫汽油涡轮燃烧器中注入的煤油(喷射A1)/空气预混合的预汽化混合物中是否添加H_2时燃烧发生时的稳定性域和污染物排放。同时收集CH〜*的化学发光,污染物排放(NO_χ和CO)以及压力波动数据,以确定在入口温度为473 K时H_2添加对燃烧稳定性和火焰结构的影响,大气压和相当大的当量比范围(从0.3到1)。当对于相同的煤油质量流量,火焰升起并且非常不稳定时,添加氢能够保持稳定的燃烧条件。对于污染物的排放,结果表明,即使在由于添加H_2而增加燃烧功率的情况下,当量比也是控制NO_χ排放的关键参数。由于添加H_2会大大增加可燃性限值和燃烧稳定性范围,因此可以在较低的当量比下实现稳定燃烧,然后减少CO和NO_x排放。这是重要的事实,因为在减少NO_χ和CO排放量方面没有替代作用发生。通过调节氢气和煤油的质量流量在恒定燃烧功率和当量比下进行的研究再次表明污染物排放量减少了。使用燃烧在发电系统中注入氢似乎是燃烧研究中的一种有前途的方法,因为由于扩大了燃烧稳定性范围和通过用煤油代替H_2减少NO_χ排放的综合作用。

著录项

  • 来源
    《International journal of hydrogen energy》 |2009年第9期|3930-3944|共15页
  • 作者单位

    INSA de Rouen - CNPS CORIA UMR 6614, Universite de Rouen, 8 Avenue de l'Universite, 76800 Saint Etienne du Rouvray, France;

    INSA de Rouen - CNPS CORIA UMR 6614, Universite de Rouen, 8 Avenue de l'Universite, 76800 Saint Etienne du Rouvray, France;

    SNECMA, 2 Rond Pornt Rene Ravaud, 77550 Moissy-Cramayel, France;

    INSA de Rouen - CNPS CORIA UMR 6614, Universite de Rouen, 8 Avenue de l'Universite, 76800 Saint Etienne du Rouvray, France;

    INSA de Rouen - CNPS CORIA UMR 6614, Universite de Rouen, 8 Avenue de l'Universite, 76800 Saint Etienne du Rouvray, France;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    laboratory turbine; scaled burner; kerosene; hydrogen; premixed combustion; combustion stability diagram; flame structure; pollutant emissions;

    机译:实验室涡轮标度燃烧器;煤油;氢;预混燃烧燃烧稳定性图;火焰结构污染物排放;
  • 入库时间 2022-08-18 00:29:53

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