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Surrogate Generation and Evaluation for Diesel Fuel

机译:柴油的替代物产生与评估

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摘要

The correct representation of a fuel in terms of its physical and chemical properties and its combustion kinetics poses a challenge to modern engine development when state-of-the-art simulation technology is used. In this context, a promising approach is the use of surrogates that emulate the properties of real fuels, where the surrogates are made up of a significantly lower number of components than the original fuels. The goal of this paper is to present an algorithm that can be used to generate surrogates composed of real chemical components, as opposed to pseudo-components. The algorithm was developed by simultaneously fitting the true boiling point (TBP) curve, the liquid density at 15 degrees C, and the cetane number. To illustrate the algorithm, surrogates for four different fuels were generated: a commercially available European diesel and three research diesel proposed by the Fuels for Advanced Combustion Engines (FACE) CRC Research Group. Two of the resulting surrogates were produced on a lab scale and subjected to laboratory examination. For validation, the experimental data for these two surrogates were compared to those for the target fuels and to data generated by thermodynamic models on the basis of the compositions of the surrogates. Both the fitted properties and additional properties, which were not used for fitting, were compared to experimental properties, such as the ASTM D86 boiling curve, content of aromatics, flash point, heating value, cloud point, viscosity, and temperature dependency of the liquid-phase viscosity and density. We demonstrate that the proposed algorithm generates surrogates of approximately 10 real components, which show excellent agreement with the original target fuels.
机译:当使用最先进的模拟技术时,就其物理和化学性质及其燃烧动力学而言,正确表示燃料对现代发动机的开发提出了挑战。在这种情况下,一种有前途的方法是使用模拟真实燃料特性的替代物,其中替代物由比原始燃料低得多的组分组成。本文的目的是提出一种算法,该算法可用于生成由真实化学成分(与伪成分相反)组成的替代物。通过同时拟合真实沸点(TBP)曲线,15摄氏度下的液体密度和十六烷值来开发算法。为了说明该算法,生成了四种不同燃料的替代物:市售的欧洲柴油和高级燃烧发动机燃料(FACE)CRC研究小组提出的三种研究柴油。在实验室规模下生产了两种替代产品,并进行了实验室检查。为了进行验证,将这两种替代物的实验数据与目标燃料的实验数据进行了比较,并与基于替代物组成的热力学模型生成的数据进行了比较。拟合特性和未用于拟合的其他特性均与实验特性进行了比较,例如ASTM D86沸腾曲线,芳烃含量,闪点,热值,浊点,粘度和液体的温度依赖性相粘度和密度。我们证明了所提出的算法产生了大约10个真实成分的替代物,这些替代物与原始目标燃料表现出极好的一致性。

著录项

  • 来源
    《Energy & fuels》 |2015年第julaaauga期|4181-4192|共12页
  • 作者单位

    Graz Univ Technol, Inst Chem Engn & Environm Technol, NAWI Graz, A-8010 Graz, Austria;

    Graz Univ Technol, Inst Chem Engn & Environm Technol, NAWI Graz, A-8010 Graz, Austria;

    Graz Univ Technol, Inst Chem Engn & Environm Technol, NAWI Graz, A-8010 Graz, Austria|Univ Liege, Dept Appl Chem, B-4000 Liege, Belgium;

    OMV Refining & Mkt GmbH, A-1020 Vienna, Austria;

  • 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

  • 入库时间 2022-08-18 00:40:18

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