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Autoignition behavior of synthetic alternative jet fuels: An examination of chemical composition effects on ignition delays at low to intermediate temperatures

机译:合成替代喷气燃料的自燃特性:化学成分对低温到中温点火延迟的影响

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摘要

The autoignition characteristics of military aviation fuels (JP-5 and JP-8), proposed camelina-derived hydroprocessed renewable jet fuel replacements (HRJ-8 and HRJ-5), Fischer–Tropsch fuels (Shell and Sasol), three Sasol isoparaffinic solvents, as well as 50/50 volumetric blends of the alternative fuels with the conventional fuels are examined. Experiments were conducted in a rapid compression machine and shock tube at compressed temperatures of 625 K ≤ Tc ≤ 1000 K, a compressed pressure of 20 bar, and under stoichiometric and lean conditions. Several implicit properties of the alternative fuels prompted a study of the influence of chemical composition on autoignition, including the influence of isoparaffinic, cycloparaffinic, and aromatic structures. In addition, interesting combustion phenomena at low-temperature conditions are investigated under lean conditions, specifically concerning jet fuel blend reactivity, where a convergence in blend reactivity to the reactivity of either a conventional or alternative fuel is observed.
机译:军用航空燃料(JP-5和JP-8)的自燃特性,拟议中的油茶衍生加氢处理可再生喷气燃料替代品(HRJ-8和HRJ-5),费-托燃料(壳牌和沙索),三种沙索异链烷烃溶剂,以及替代燃料与常规燃料的50/50体积混合气进行了检查。实验在快速压缩机和减震管中进行,压缩温度为625 K≤Tc≤1000 K,压缩压力为20 bar,并且处于化学计量和稀薄条件下。替代燃料的一些隐含特性促使人们研究化学组成对自燃的影响,包括异链烷烃,环烷烃和芳族结构的影响。另外,在稀薄条件下研究了在低温条件下有趣的燃烧现象,特别是关于喷气燃料共混物的反应性,其中观察到共混物反应性与常规燃料或替代燃料的反应性趋同。

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