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The autoignition of iso-dodecane in low to high temperature range: An experimental and modeling study

机译:异十二烷在低温至高温下的自燃:实验和模型研究

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2,2,4,6,6-pentamethylheptane, a highly branched alkane, is a promising component candidate of branched alkanes in the surrogates for jet fuels and a major component in alternative fuels. In spite of its great relevance and importance in real fuels, it has only attracted very little interest. This work provides a new set of experimental data and a newly proposed detailed kinetic mechanism for this hydrocarbon. In the experiments, the autoignition characteristics of 2,2,4,6,6-pentamethylheptane, was measured in a rapid compression machine and a shock tube spanning over the equivalence ratios of 0.5, 1 and 1.5, pressures of 15 and 20 bar and temperature range of 603-1376K. The dependence of ignition delay times on pressure, mole fraction of fuel, mole fraction of oxygen and dilution ratio were systematically investigated. Negative temperature coefficient (NTC) behavior was observed during the autoignition event, but the NTC temperature window was found to be much lower than the counterpart normal paraffin. A detailed kinetic model containing 729 species and 3390 reactions was proposed to describe the combustion behavior of this compound over low-to-high temperature range. The model was validated against the present experimental data, as well as the limited datasets in literature. Good agreements were observed between the experimental data and the predictions from the proposed model. Kinetic analyses, including sensitivity analysis and reaction pathway analysis, were carried out to provide insight into the combustion characteristics from the kinetic perspective. Comparisons were also carried out with the datasets for other branched alkanes and normal-paraffin with same carbon numbers over the same conditions to reveal the effects of the molecular structure. (C) 2019 The Combustion Institute. Published by Elsevier Inc. All rights reserved.
机译:2,2,4,6,6-五甲基庚烷,一种高度支化的烷烃,是航空燃料替代物中支链烷烃的有希望的候选组分,也是代用燃料的主要组分。尽管它在真实燃料中具有很高的相关性和重要性,但它只引起了很少的兴趣。这项工作为该烃提供了一组新的实验数据和新提出的详细动力学机理。在实验中,在快速压缩机和冲击管中测量了2,2,4,6,6-五甲基庚烷的自燃特性,该冲击管的当量比为0.5、1和1.5,压力为15和20 bar,温度范围为603-1376K。系统地研究了点火延迟时间对压力,燃料的摩尔分数,氧气的摩尔分数和稀释比的依赖性。在自燃事件中观察到负温度系数(NTC)行为,但发现NTC温度窗口远低于对应的正构石蜡。提出了包含729种和3390个反应的详细动力学模型,以描述该化合物在从低到高温范围内的燃烧行为。该模型已针对当前的实验数据以及文献中的有限数据集进行了验证。在实验数据和所提出模型的预测之间观察到良好的一致性。进行了动力学分析,包括敏感性分析和反应路径分析,以从动力学的角度洞悉燃烧特性。还与在相同条件下具有相同碳数的其他支链烷烃和正构烷烃的数据集进行了比较,以揭示分子结构的影响。 (C)2019燃烧研究所。由Elsevier Inc.出版。保留所有权利。

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