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A new methodology for diesel surrogate fuel formulation: Bridging fuel fundamental properties and real engine combustion characteristics

机译:柴油替代燃料配方的新方法:弥合燃料的基本特性和实际发动机燃烧特性

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摘要

Given the complexity and uncertainty of diesel compositions, it is of great challenges to study the fundamental combustion processes and mechanism of diesel fuel, in particular the gaseous and particulate pollutant formation mechanisms. A reasonably designed diesel surrogate is proved to be an effective way to study the fundamental combustion mechanism of diesel fuel. However, most existing diesel surrogates mainly adopt light hydrocarbon components, increasing the difficulty of accurately reflecting the physical and chemical properties of practical diesel fuel or the combustion and emissions characteristics of diesel engines. Therefore, in this study, a methodology to construct diesel surrogates with C10 similar to C18 hydrocarbon components based on fuel properties and engine combustion and emissions characteristics was proposed. First, the key physical and chemical fuel properties that affect fuel injection, atomization, ignition, combustion, engine efficiency and emissions were discussed in detail. Second, 13 candidate components were chosen to represent n-alkanes, iso-alkanes, cycloparaffins and aromatics and blended with commercial diesel fuel in different proportions. Fuel injection, spray, ignition and combustion phase, engine efficiency and emissions versus changed blending component and proportion were systematically investigated. In particular, the effects of the cetane number and fuel volatility on combustion and emissions were investigated under fixed injection timing and fixed ignition timing conditions, respectively. Afterward, the key physical and chemical parameters of the surrogate fuels were defined, and the constraint equations were constructed for different parameters. Considered the uncertainties in the components and physicochemical properties of the actual diesel fuel, it is believed that the construction of surrogate fuel has only reasonable solutions and there is no optimal solution. Finally, three diesel surrogates were proposed from the feasible domains of constraint equations, including a 3 Components surrogate (41.3% n-hexadecane, 36.8% 2,2,4,4,6,8,8-heptamethylnonane (HMN), 21.9% 1-methylnaphthalene, by mol.), a 5-Components surrogate (21.6% n-hexadecane, 15.5% n-octadecane, 26.0% HMN, 20.7% 1-methylnaphthalene, 16.2% decalin, by mol.) and a 7-Components surrogate (21.5% n-hexadecane, 15.4% n-octadecane, 25.8% HMN, 13.7% 1-methylnaphthalene, 8.1% decalin, 8.1% n -butyl-benzene, 7.4% n-butylcyclohexane, by mol.). It is found that the surrogates proposed in this study can accurately reproduce actual engine combustion characteristics. Also, the gaseous emissions of the 5 Components surrogate are closest to those of the target diesel fuel in the tested engine operation conditions. (C) 2018 Elsevier Ltd. All rights reserved.
机译:考虑到柴油成分的复杂性和不确定性,研究柴油的基本燃烧过程和机理,特别是气态和颗粒污染物形成机理是一个巨大的挑战。合理设计的柴油替代品被证明是研究柴油基本燃烧机理的有效方法。然而,大多数现有的柴油替代物主要采用轻烃成分,这增加了准确反映实际柴油的物理和化学特性或柴油机的燃烧和排放特性的难度。因此,在这项研究中,提出了一种基于燃料特性,发动机燃烧和排放特性构造具有类似于C18碳氢化合物组分的C10的柴油替代物的方法。首先,详细讨论了影响燃料喷射,雾化,点火,燃烧,发动机效率和排放的关键物理和化学燃料特性。其次,选择13种候选组分代表正构烷烃,异烷烃,环烷烃和芳烃,并以不同比例与商用柴油混合。系统地研究了燃油喷射,喷雾,点火和燃烧阶段,发动机效率和排放与混合成分和比例的变化。特别地,分别在固定的喷射正时和固定的点火正时条件下研究了十六烷值和燃料挥发性对燃烧和排放的影响。然后,定义了替代燃料的关键物理和化学参数,并针对不同参数构建了约束方程。考虑到实际柴油燃料的成分和理化性质的不确定性,据信替代燃料的构造只有合理的解决方案,而没有最佳的解决方案。最后,从约束方程的可行域中提出了三种柴油替代物,包括3组分替代物(正十六烷41.3%,36.8%2、2、4、4、6、8、8-七甲基壬烷(HMN),21.9% 1-甲基萘(以摩尔计),5-成分替代(21.6%正十六烷,15.5%正十八烷,26.0%HMN,20.7%1-甲基萘,16.2%萘烷)(以摩尔计)和7成分替代品(摩尔比为21.5%正十六烷,15.4%正十八烷,25.8%HMN,13.7%1-甲基萘,8.1%萘烷,8.1%正丁基苯,7.4%正丁基环己烷)。发现该研究中提出的替代物可以准确地再现实际的发动机燃烧特性。同样,在测试的发动机工况下,这5种组分替代物的气体排放最接近目标柴油的气体排放。 (C)2018 Elsevier Ltd.保留所有权利。

著录项

  • 来源
    《Energy》 |2018年第1期|424-447|共24页
  • 作者单位

    Shanghai Jiao Tong Univ, Key Lab Power Machinery & Engn MOE, Shanghai 200240, Peoples R China;

    Shanghai Jiao Tong Univ, Key Lab Power Machinery & Engn MOE, Shanghai 200240, Peoples R China;

    Shanghai Jiao Tong Univ, Key Lab Power Machinery & Engn MOE, Shanghai 200240, Peoples R China;

    Shanghai Jiao Tong Univ, Key Lab Power Machinery & Engn MOE, Shanghai 200240, Peoples R China;

    Shanghai Jiao Tong Univ, Key Lab Power Machinery & Engn MOE, Shanghai 200240, Peoples R China;

    Shanghai Jiao Tong Univ, Key Lab Power Machinery & Engn MOE, Shanghai 200240, Peoples R China;

    Shanghai Jiao Tong Univ, Key Lab Power Machinery & Engn MOE, Shanghai 200240, Peoples R China;

    Shanghai Jiao Tong Univ, Key Lab Power Machinery & Engn MOE, Shanghai 200240, Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Diesel surrogate; Combustion; Emissions; Common rail diesel engine; Fuel and engine interaction;

    机译:柴油替代品;燃烧;排放;共轨柴油机;燃油与发动机的相互作用;

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