首页> 外文期刊>Combustion and Flame >An experimental and kinetic modeling study of the ignition delay characteristics of binary blends of ethane/propane and ethylene/propane in multiple shock tubes and rapid compression machines over a wide range of temperature, pressure, equivalence ratio, and dilution
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An experimental and kinetic modeling study of the ignition delay characteristics of binary blends of ethane/propane and ethylene/propane in multiple shock tubes and rapid compression machines over a wide range of temperature, pressure, equivalence ratio, and dilution

机译:多次冲击管中乙烷/丙烷和乙烯/丙烷二元共混物的点火延迟特性的实验和动力学建模研究,快速压缩机在广泛的温度,压力,等效率和稀释中的快速压缩机

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摘要

In this work, the ignition delay time characteristics of C-2 - C-3 binary blends of gaseous hydrocarbons including ethylene/propane and ethane/propane are studied over a wide range of temperatures (750 - 20 00 K), pressures (1 - 135 bar), equivalence ratios (phi = 0.5 - 2.0) and dilutions (75 - 90%). A matrix of experimental conditions is generated using the Taguchi (L-9) approach to cover the range of conditions for the validation of a chemical kinetic model. The experimental ignition delay time data are recorded using low- and high-pressure shock tubes and two rapid compression machines (RCM) to include all of the designed conditions. These novel experiments provide a direct validation of the chemical kinetic model, NUIGMech1.1, and its performance is characterized via statistical analysis, with the agreement between experiments and model being within similar to 26.4% over all of the conditions studied, which is comparable with a general absolute uncertainty of the applied facilities (similar to 20%). Sensitivity and flux analyses allow for the key reactions controlling the ignition behavior of the blends to be identified. Subsequent analyses are performed to identify those reactions which are important for the pure fuel components and for the blended fuels, and synergistic/antagonistic blending effects are therefore identified over the wide range of conditions. The overall performance of NUIGMech1.1 and the correlations generated are in good agreement with the experimental data. (c) 2021 The Authors. Published by Elsevier Inc. on behalf of The Combustion Institute.
机译:在这项工作中,研究了包括乙烯/丙烷和乙烷/丙烷的气态烃的C-2 - C-3二元共混物的点火延迟时间特性在宽范围内(750 - 20 00 K),压力(1 - 135巴),等效​​比率(PHI = 0.5-2.0)和稀释液(75-90%)。使用Taguchi(L-9)方法产生实验条件的矩阵,以覆盖化学动力学模型的验证条件范围。使用低压和高压冲击管和两个快速压缩机(RCM)记录实验点火延迟时间数据以包括所有设计的条件。这些新颖的实验提供了化学动力学模型,Nuigmech1.1的直接验证,其性能通过统计分析表征,实验与模型之间的协议与所研究的所有条件相似,与......相似于26.4%应用设施的一般绝对不确定性(类似于20%)。灵敏度和助焊剂分析允许控制要识别的共混物的点火行为的关键反应。进行随后的分析以鉴定对纯燃料成分和混合燃料很重要的反应,因此因此在各种条件下鉴定了协同/拮抗混合效应。 Nuigmech1.1的整体性能和产生的相关性与实验数据很好。 (c)2021作者。由elsevier公司发布代表燃烧研究所。

著录项

  • 来源
    《Combustion and Flame》 |2021年第6期|401-414|共14页
  • 作者单位

    NUI Galway Sch Chem Ryan Inst MaREI Combust Chem Ctr Univ Rd Galway H91 TK33 Ireland;

    NUI Galway Sch Chem Ryan Inst MaREI Combust Chem Ctr Univ Rd Galway H91 TK33 Ireland;

    NUI Galway Sch Chem Ryan Inst MaREI Combust Chem Ctr Univ Rd Galway H91 TK33 Ireland;

    NUI Galway Sch Chem Ryan Inst MaREI Combust Chem Ctr Univ Rd Galway H91 TK33 Ireland;

    NUI Galway Sch Chem Ryan Inst MaREI Combust Chem Ctr Univ Rd Galway H91 TK33 Ireland;

    NUI Galway Sch Chem Ryan Inst MaREI Combust Chem Ctr Univ Rd Galway H91 TK33 Ireland;

    Rhein Westfal TH Aachen Physicochem Fundamentals Combust D-52056 Aachen Germany;

    NUI Galway Sch Chem Ryan Inst MaREI Combust Chem Ctr Univ Rd Galway H91 TK33 Ireland;

    NUI Galway Sch Chem Ryan Inst MaREI Combust Chem Ctr Univ Rd Galway H91 TK33 Ireland;

    Rhein Westfal TH Aachen Physicochem Fundamentals Combust D-52056 Aachen Germany;

    Shell Res Ltd Shell Ctr London London SE1 7NA England;

    NUI Galway Sch Chem Ryan Inst MaREI Combust Chem Ctr Univ Rd Galway H91 TK33 Ireland;

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

    Ethane; Ethylene; Propane; Shock-tube; Rapid compression machine; Ignition delay time;

    机译:乙烷;乙烯;丙烷;震动管;快速压缩机;点火延迟时间;

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