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Experimental study of ethylene counterflow diffusion flames perturbed by trace amounts of jet fuel and jet fuel surrogates under incipiently sooting conditions

机译:早期烟ot条件下微量航空燃料和航空燃料替代物扰动乙烯逆流扩散火焰的实验研究

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摘要

The structure of an ethylene counterflow diffusion flame doped with 2000 ppm on a molar basis of either jet fuel or two jet fuel surrogates is studied under incipient sooting conditions. The doped flames have identical stoichiometric mixture fractions (z_f=0.18) and strain rates (a = 92s~(-1)), resulting in a well-defined and fixed temperature/time history for all of the flames. Gas samples are extracted from the flame with quartz microprobes for subsequent GC/MS analysis. Profiles of critical fuel decomposition products and soot precursors, such as benzene and toluene, are compared.rnThe data for C7-C12 alkanes are consistent with typical decomposition of large alkanes with both surrogates showing good qualitative agreement with jet fuel in their pyrolysis trends. Olefins are formed as the fuel alkanes decompose, with agreement between the surrogates and jet fuel that improves for small alkenes, probably because of an increase in kinetic pathways which makes the specifics of the alkane structure less important.rnGood agreement between jet fuel and the surrogates is found with respect to critical soot precursors such as benzene and toluene. Although the six-component Utah/Yale surrogate performs better than the Aachen surrogate, the latter performs adequately and retains the advantage of simplicity, since it consists of only two components.rnThe acetylene profiles present a unique multimodal behavior that can be attributed to acetylene's participation in early stages of formation of soot precursors, such as benzene and other large pyrolysis products, as well as in the surface growth of soot particles.
机译:在初期烟ot条件下研究了以喷气燃料或两种喷气燃料替代物的摩尔计掺杂有2000 ppm的乙烯逆流扩散火焰的结构。掺杂的火焰具有相同的化学计量混合分数(z_f = 0.18)和应变率(a = 92s〜(-1)),从而为所有火焰提供了明确且固定的温度/时间历史。用石英微探针从火焰中提取气体样品,用于随后的GC / MS分析。比较了关键燃料分解产物和烟灰前体(如苯和甲苯)的分布。rnC7-C12烷烃的数据与大型烷烃的典型分解相符,两种替代物在热解趋势上均与喷气燃料具有良好的定性一致性。烯烃随着燃料烷烃的分解而形成,代用品与喷气燃料之间的一致性提高了小烯烃的含量,这可能是由于动力学途径的增加,使得烷烃结构的重要性降低了。喷气燃料与代用品之间的良好一致性对于关键的烟灰前体(例如苯和甲苯),发现了“碳”。尽管六组分的犹他/耶鲁替代品的性能优于亚琛的替代品,但后者的性能却足够,并保留了简单性的优势,因为它仅由两个组分组成。乙炔概况呈现出独特的多峰行为,这可归因于乙炔的参与在烟灰前体(如苯和其他大型热解产物)形成的早期阶段,以及烟灰颗粒的表面生长中。

著录项

  • 来源
    《Combustion and Flame》 |2009年第9期|1799-1809|共11页
  • 作者单位

    Department of Mechanical Engineering, Yale Center for Combustion Studies, New Haven, CT 06477, USA Department of Mechanical Engineering, Michigan State University, East Lansing, MI 48824, USA;

    Department of Chemical Engineering, Yale Center for Combustion Studies, New Haven, CT 06477, USA;

    Department of Mechanical Engineering, Yale Center for Combustion Studies, New Haven, CT 06477, USA Department of Mechanical Engineering, Yale University, P.O. Box 208286, New Haven, CT 06520-8286, USA;

  • 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

    soot; aromatics; diffusion flame; jet fuel; JP-8; surrogate;

    机译:煤烟;芳烃扩散火焰喷气燃料;JP-8;替代;

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