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Measurements of local mixture fraction of reacting mixture in swirl-stabilised natural gas-fuelled burners

机译:旋流稳定的天然气燃料燃烧器中反应混合物的局部混合物分数的测量

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摘要

Local, time-dependent measurements of mixture fraction of the reacting mixture were obtained in a swirl-stabilised natural gas-fuelled, nominally non-premixed burner using the intensity of chemiluminescence from OH* and CH* radicals. The measurements quantified the mean, rms of fluctuations and probability density functions of local mixture fraction at the stabilisation region of the flame. In addition, the probability of flame presence and the degree of lean or rich versus stoichiometric reaction is reported. The burner was operated for three air flow Reynolds numbers (Re = 18970, 29100 and 57600), at an overall equivalence ratio of 0.32, without and with imposed oscillations to the air flow of the burner at the resonance frequency of 350 Hz. Results show that combustion occurred in a partially pre-mixed mode for all flow conditions, although fuel and air were injected separately in the reaction zone. The mean local mixture fraction was nearly stoichiometric at the base of the flame without imposed air oscillations, but with large fluctuations leading to around 80% of lean or rich reaction. The degree of non-stoichiometric reaction increased with axial distance from the burner exit and Reynolds number and lean reaction dominated. Imposed air oscillations led to lifted flames and increased the degree of non-stoichiometric reaction for Re = 18970 and 29100, whereas the flame remained attached onto the injector for Re = 57600 and little modification of the mixture fraction was observed.
机译:使用由OH *和CH *自由基化学发光的强度,在涡旋稳定的天然气名义上未预混合的燃烧器中获得反应混合物混合物分数的局部时间依赖性测量值。测量结果量化了火焰稳定区域内的局部混合物分数的均值,均方根值和概率密度函数。另外,还报告了火焰存在的可能性以及稀燃或浓燃程度与化学计量反应的关系。在总当量比为0.32的情况下,以三个空气雷诺数(Re = 18970、29100和57600)操作燃烧器,并且在350 Hz的共振频率下,燃烧器的空气流没有振荡也没有振荡。结果表明,尽管在反应区中分别注入了燃料和空气,但在所有流动条件下,燃烧均以部分预混合的方式发生。平均局部混合物分数在火焰底部几乎是化学计量的,没有施加空气振荡,但波动较大,导致稀薄或浓盛反应的约80%。非化学计量反应的程度随距燃烧器出口的轴向距离而增加,雷诺数和稀薄反应占主导。对于Re = 18970和29100,强加的空气振动导致火焰升高并提高了非化学计量反应的程度,而对于Re = 57600,火焰保持附着在喷射器上,并且几乎没有观察到混合物馏分的改变。

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  • 来源
    《Applied physics 》 |2011年第2期| p.435-449| 共15页
  • 作者

    M. Orain; Y. Hardalupas;

  • 作者单位

    ONERA—The French Aerospace Lab, 91761 Palaiseau, France;

    ONERA—The French Aerospace Lab, 91761 Palaiseau, 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
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