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The distillation curve and sooting propensity of a typical jet fuel

机译:典型喷气燃料的蒸馏曲线和烟灰倾向

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摘要

Real jet fuels are complex mixtures of many organic components, some of which are aromatic compounds. Towards the high-temperature end of the distillation curve, some of the fuel components are multi-ring compounds. A small amount of these high molecular weight species in the fuel could impact soot nucleation in practical engines especially when the fuel is injected as a spray. This work aims to highlight the variation of the sooting propensity of jet fuels as a function of distillate fractions and to examine the validity of a surrogate fuel in emulating soot production from real fuels. Particle size distribution functions and soot volume fractions are studied in a series of laminar premixed stretch-stabilized ethylene flames doped with Jet A, its various distillate fractions, and the 2nd generation MURI surrogate. Soot formation as a result of doping real jet fuel and its distillate fractions is also investigated in counterflow and coflow diffusion flames. The results show that the higher-boiling distillates mostly influence soot nucleation and produce substantially more soot in nucleation controlled flames than the light molecular fraction and jet fuel as received, while such an effect is seen to be small in flames where soot production is controlled by surface growth. The potential impact of distillate fractions on soot nucleation propensities is discussed.
机译:实际的喷气燃料是许多有机成分的复杂混合物,其中一些是芳香族化合物。在蒸馏曲线的高温端,一些燃料成分是多环化合物。燃料中少量的这些高分子量物质可能会影响实际发动机中的烟灰成核,特别是当燃料以喷雾形式喷射时。这项工作的目的是强调喷气燃料的烟灰倾向随馏分的变化,并检验替代燃料在模拟由真实燃料产生烟灰中的有效性。在一系列层流预混拉伸稳定的掺有Jet A的乙烯稳定火焰,各种馏分和第二代MURI替代物中,研究了粒径分布函数和烟灰体积分数。还研究了在逆流和同流扩散火焰中掺杂实际喷气燃料及其馏出物馏分而形成的烟灰。结果表明,高沸点馏出物主要影响烟灰成核,并且在成核控制的火焰中比所接收的轻质分子馏分和喷气燃料产生更多的烟灰,而在受烟灰生成控制的火焰中,这种影响很小。表面生长。讨论了馏分对烟灰成核倾向的潜在影响。

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