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首页> 外文期刊>International journal of hydrogen energy >Operational issues in premixed combustion of hydrogen-enriched and syngas fuels
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Operational issues in premixed combustion of hydrogen-enriched and syngas fuels

机译:富氢和合成气燃料的预混燃烧中的操作问题

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The growing interest in the use of syngas, as a means to reduce fossil fuel consumption and CO_2 emissions, has promoted many works focused on evaluating their combustion characteristics before their use in existing combustors, generally optimized for conventional fuels. Although the effect of fuel composition on the stability range (flashback and blowout) has been analyzed in a wide number of previous studies, much less attention has been devoted to other issues, such as the relation between flashback and combustion instabilities. The present work is, therefore, focused on analyzing the main concerns in syngas combustion: stability range, combustion instabilities and pollutant emissions, also specifically addressing the relation between pressure fluctuations and flashback appearance. The results obtained revealed that the fuel composition has an important effect on the stability range, especially on flashback appearance. However, different trends were observed not only as a function of composition but also as a function of burner configuration. As a consequence, although some approximations, such as the definition of a critical Damkohler number, seemed to give quite accurate predictions of the stability range for a certain range of fuels or configurations, a thorough analysis should be made for each fuel composition before using it in a given burner configuration. In addition, in fuels with high hydrogen content, under certain circumstances, evidence of the existence of a triggering mechanism between pulsating flashback episodes and thermo-acoustic instabilities was found. This result has a high practical importance since, although thermo-acoustic instabilities had been analyzed in methane flames throughout many previous works, their appearance in syngas flames, where they can be also triggered by flashback events, was clearly less tested. Finally, the effect of fuel composition on pollutant emissions has been also analyzed.
机译:人们对使用合成气作为减少化石燃料消耗和CO_2排放的手段的兴趣与日俱增,这促使许多工作集中在评估其燃烧特性,然后再将其用于现有燃料中,通常针对常规燃料进行了优化。尽管在许多先前的研究中已经分析了燃料成分对稳定性范围(回火和爆燃)的影响,但对其他问题的关注却很少,例如回火和燃烧不稳定性之间的关系。因此,当前的工作着重于分析合成气燃烧中的主要问题:稳定性范围,燃烧不稳定性和污染物排放,还专门解决了压力波动与回火外观之间的关系。获得的结果表明,燃料组合物对稳定性范围具有重要影响,特别是对反燃外观。但是,不仅观察到了不同的趋势,不仅是成分的函数,而且是燃烧器配置的函数。因此,尽管某些近似值(例如临界达姆勒勒数的定义)似乎可以对某些范围的燃料或配置的稳定性范围做出非常准确的预测,但在使用每种燃料之前,应对每种燃料成分进行彻底的分析。在给定的燃烧器配置中。另外,在某些情况下,在氢含量高的燃料中,发现了在脉动回火和热声不稳定性之间存在触发机制的证据。该结果具有很高的实际意义,因为尽管在先前的许多工作中都对甲烷火焰中的热声不稳定性进行了分析,但显然没有对它们在合成气火焰中的出现(也可能由回火事件触发)进行测试。最后,还分析了燃料成分对污染物排放的影响。

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