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A threshold soot index-based fuel surrogate formulation methodology to mimic sooting tendency of real fuels in 3D-CFD simulations

机译:基于阈值射击指数的燃料代理制剂方法,以模拟3D-CFD模拟中真正燃料的烟灰趋势

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摘要

Particulate Matter emission is an increasing concern for engine manufacturers due to the strong limits imposed by worldwide regulations. Fuel composition plays a key role in determining the extent to which soot is formed during the combustion process. The availability of advanced multidimensional computational fluid-dynamics soot models incorporating soot chemistry pushed researchers to formulate fuel surrogates able to represent sooting tendency of real fuels in the numerical framework. Such studies, which provide information to target research grade fuels, are scarcely present in literature. A methodology is proposed to estimate sooting tendency of commercial gasolines, based on Threshold Soot Index and basic composition information, as well as to formulate tailored ethanol-toluene reference fuel surrogates. The technique relies on a purely mathematical approach to estimate Threshold Soot Index of individual compounds and blends using a structural group contribution-based approach, available in literature, which allows to adapt fuel surrogate palette as needed. Firstly, this approach is demonstrated by means of constant pressure reactor simulations using the Method of Moments. Secondly, a methodology is proposed to formulate fuel surrogates simultaneously targeting the main chemical and physical auto-ignition characteristics and estimated Threshold Soot Index. Several oxygenated and non-oxygenated commercial gasolines available on the market are targeted to provide a wide number of validation cases. Finally, surrogates are used to generate a selection of constant pressure-based soot libraries tested in conjunction with the Sectional Method on a 3D-CFD model of a single-cylinder optically accessible gasoline engine. Surrogates exhibit the same qualitative ranking estimated based on Threshold Soot Index and retain a quantitative scaling in terms of particulate matter formation.
机译:由于全球法规所施加的强调,颗粒物排放是发动机制造商的越来越多。燃料组成在确定在燃烧过程中形成烟灰的程度时起着关键作用。结合烟灰化学的先进多维计算流体动力学烟灰模型的可用性推动了研究人员,用于制定能够在数值框架中表示真实燃料的烟灰倾向的燃料替代品。这些研究提供了针对目标研究级燃料的信息,几乎没有于文学中存在。提出了一种基于阈值烟灰指数和基本组合信息的商业汽油的烟灰趋势,以及制定量定制的乙醇 - 甲苯参考燃料替代物。该技术依赖于使用基于结构组贡献的方法来估计各种化合物的阈值烟灰指数的纯数学方法,并在文献中提供,这允许根据需要调整燃料代理调色板。首先,通过使用矩的方法,通过恒压反应器模拟来证明这种方法。其次,提出了一种方法来制定同时靶向主要化学和物理自动点火特性和估计阈值烟灰指数的燃料替代品。可在市场上提供几种可用的氧化和非含氧商品汽油,以提供广泛的验证案件。最后,替代物用于生成与单缸光学接近的汽油发动机3D-CFD模型的截面方法一起测试的基于恒压的烟灰库的选择。代理表现出基于阈值烟灰指数估计的相同的定性排名,并在颗粒物质形成方面保持定量缩放。

著录项

  • 来源
    《Applied Energy》 |2020年第15期|115909.1-115909.19|共19页
  • 作者单位

    Univ Modena & Reggio Emilia Dept Engn Enzo Ferrari Via Vivarelli 10 I-41125 Modena Italy;

    Univ Modena & Reggio Emilia Dept Engn Enzo Ferrari Via Vivarelli 10 I-41125 Modena Italy;

    Siemens Digital Ind Software Nordostpk 3 D-90411 Nurnberg Germany;

    Siemens Digital Ind Software 200 Sheperds Bush Rd London W6 7NL England;

    Siemens Digital Ind Software Evenemangsgatan 21 S-16979 Solna Sweden;

  • 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

    Threshold soot index; Soot; Sooting tendency; Gasoline; Surrogate; PM;

    机译:阈值烟灰指数;烟灰;烟灰倾向;汽油;替代;PM;

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