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Oxidation of Alkane Rich Gasoline Fuels and their Surrogates in a Motored Engine

机译:电动发动机中富含烷烃的汽油燃料及其替代物的氧化

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摘要

The validation of surrogates formulated using a computational framework by Ahmed et al.[1]for two purely paraffinic gasoline fuels labelled FACE A and FACE C was undertaken in this study. The ability of these surrogate mixtures to be used in modelling LTC engines was accessed by comparison of their low temperature oxidation chemistry with that of the respective parent fuel as well as a PRF based on RON. This was done by testing the surrogate mixtures in a modified Cooperative Fuels Research (CFR) engine running in Controlled Autoignition Mode (CAI) mode. The engine was run at a constant speed of 600 rpm at an equivalence ratio of 0.5 with the intake temperature at 150 °C and a pressure of 98 kPa. The low temperature reactivity of the fuels were studied by varying the compression ratio of the engine from the point were very only small low temperature heat release was observed to a point beyond which auto-ignition of the fuel/air mixture occurred. The apparent heat release rates of different fuels was calculated from the pressure histories using first law analysis and the CA 50 times of the low temperature heat release (LTHR) were compared. The surrogates reproduced the cool flame behavior of the parent fuels better than the PRF across all compression ratios.
机译:在这项研究中,使用艾哈迈德(Ahmed)等人的计算框架[1]对两种标记为FACE A和FACE C的纯链烷烃汽油燃料配制的替代物进行了验证。通过比较它们的低温氧化化学性质与相应母体燃料的低温氧化化学性质以及基于RON的PRF,可以了解这些替代混合物在LTC发动机建模中使用的能力。这是通过在受控自动点火模式(CAI)模式下运行的改进的合作燃料研究(CFR)发动机中测试替代混合物来完成的。发动机以600 rpm的恒速运行,当量比为0.5,进气温度为150°C,压力为98 kPa。通过改变发动机的压缩比来研究燃料的低温反应性,从观察到非常小的低温热释放到超过燃料/空气混合物发生自燃的点。使用第一定律分析从压力历史记录中计算出不同燃料的视在放热率,并比较了低温放热的CA 50倍(LTHR)。在所有压缩比下,替代物都比PRF更好地再现了母燃料的冷焰性能。

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