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Ignition delay times of ethanol-containing multi-component gasoline surrogates: Shock-tube experiments and detailed modeling

机译:含乙醇的多组分汽油替代物的点火延迟时间:冲击管实验和详细建模

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摘要

Ignition delay times for binary (ethanol/iso-octane, 25%/75% by liquid volume) and quinary (iso-octane/ toluene-heptane/diisobutylene/ethanol, 30%/25%/22%/13%/10%) gasoline surrogate fuels in air were measured under stoichiometric conditions behind reflected shock waves. The investigated post-shock temperature ranges from 720 to 1220 K at pressures of 10 bar for the binary mixture and 10 bar and 30 bar for the quinary mixture. Ignition delay times were evaluated using side-wall detection of CH* chemiluminescence (/. = 431.5 nm). Multiple regression analysis of the data indicates global activation energy of ~124kJ/mol for the binary mixture and ~101 kj/mol for the quinary mixture and a pressure dependence exponent of -1.0 was obtained for the quinary mixture. The measurements were compared to predictions using a proposed detailed kinetics model for multicomponent mixtures that is based on the reference fuels (PRF) model as a kernel and incorporates sub-mechanisms to account for the chemistry of ethanol, toluene and diisobutylene. The model was tested using the measured ignition delay times for the surrogate fuels. Additional comparisons are based on literature data for other fuel combinations of the single constituents forming the quinary surrogate to insure that the modified mechanism still correctly predicts the behavior of simple fuels. The proposed model reproduces the trend of the experimental data for all pure fuels and blends investigated in this work, including the pressure dependence.
机译:二元(乙醇/异辛烷,液体体积的25%/ 75%)和五元(异辛烷/甲苯/正庚烷/二异丁烯/乙醇,30%/ 25%/ 22%/ 13%/在化学计量条件下,在反射的冲击波之后测量了空气中10%的汽油替代燃料。在二元混合物的压力为10 bar,五元混合物的压力为10 bar和30 bar的情况下,所研究的震后温度范围为720至1220K。使用CH *化学发光的侧壁检测(/ = 431.5 nm)评估点火延迟时间。数据的多元回归分析表明,二元混合物的整体活化能为〜124kJ / mol,五元混合物的整体活化能为〜101kj / mol,五元混合物的压力依赖性指数为-1.0。使用提议的详细的多组分混合物动力学模型,将测量值与预测值进行比较,该模型基于参考燃料(PRF)模型作为核,并结合了子机制来解释乙醇,甲苯和二异丁烯的化学性质。使用所测量的替代燃料的点火延迟时间对模型进行了测试。其他比较是基于文献数据对形成五元替代物的单一成分的其他燃料组合进行的,以确保修改后的机制仍能正确预测简单燃料的行为。所提出的模型再现了在这项工作中研究的所有纯燃料和混合燃料的实验数据趋势,包括压力依赖性。

著录项

  • 来源
    《Fuel》 |2011年第3期|p.1238-1244|共7页
  • 作者单位

    LabCET, Federal University of Santa Catarina, Campus Trindade/FlorianopoHs. CEP 88040-900, SC, Brazil,IVC, University of Duisburg-Essen, Lotharstrasse 1, 47057 Duisburg, Germany;

    IVC, University of Duisburg-Essen, Lotharstrasse 1, 47057 Duisburg, Germany;

    LabCET, Federal University of Santa Catarina, Campus Trindade/FlorianopoHs. CEP 88040-900, SC, Brazil;

    IVC, University of Duisburg-Essen, Lotharstrasse 1, 47057 Duisburg, Germany;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    gasoline surrogate; shock tube; ignition delay time; detailed kinetics model; ethanol;

    机译:汽油替代物;激波管;点火延迟时间;详细动力学模型;乙醇;

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