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Modeling the end-use performance of alternative fuels in light-duty vehicles

机译:在轻型车辆中建模替代燃料的最终使用性能

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摘要

Present study investigates the end-use performance of alternative liquid fuels in the current fleet of unmodified light-duty vehicle (LDV) engines. Two mathematical models have been developed that represent the way that various fuel properties affect fuel consumption in spark-ignition (SI) and compression-ignition (CI) engines. Fuel consumption is represented by the results from the New European Driving Cycles (NEDC) in order to reflect the end-use impact. Data-driven black-box modeling and multilinear regression methods were applied to obtain both models. Additionally, quantitative analysis was performed to ensure the statistical significance of inputs (p-value below 5%). Fuel consumption (output) of various alternative fuels can be estimated with high accuracy (coefficient of determination above 0.96), knowing fuel properties (inputs) such as lower heating value, density, cetane/octane number, and oxygen content. The validation procedures confirmed the quality of predictions for both models with the average error being below 2.3%. The model performance for the examined fuels such as hydrotreated vegetable oil (HVO) and ethanol blends showed significant CO_2 reduction with high accuracy. Moreover, both models could be used to estimate CO_2 tailpipe emissions and are applicable to various liquid Sl/CI fuels for LDV engines.
机译:目前的研究调查了当前车队的未经修饰的轻型车辆(LDV)发动机中替代液体燃料的最终使用性能。已经开发了两种数学模型,其代表了各种燃料特性影响火花点火(Si)和压缩点火(CI)发动机中的燃料消耗的方式。燃料消耗由新的欧洲驾驶循环(NEDC)的结果表示,以反映最终使用的影响。应用数据驱动的黑匣子建模和多线性回归方法来获得两种型号。另外,进行定量分析以确保输入的统计学意义(低于5%的p值)。可以以高精度(0.96以上的测定系数)估计各种替代燃料的燃料消耗(输出),了解燃料特性(输入),例如较低的加热值,密度,十六烷/辛烷值和氧含量。验证程序确认了两种模型的预测质量,平均误差低于2.3%。所研究的燃料如加氢处理植物油(HVO)和乙醇共混物的模型性能显示出具有高精度的显着CO_2。此外,两种型号可用于估计CO_2尾管排放,适用于LDV发动机的各种液体SL / CI燃料。

著录项

  • 来源
    《Energy》 |2020年第15期|117854.1-117854.12|共12页
  • 作者单位

    Aalto University School of Engineering Department of Mechanical Engineering The Research Croup of Energy Conversion P.O.Box 14300 Fl-00076 Aalto Finland;

    Aalto University School of Engineering Department of Mechanical Engineering The Research Croup of Energy Conversion P.O.Box 14300 Fl-00076 Aalto Finland;

    Aalto University School of Engineering Department of Mechanical Engineering The Research Croup of Energy Conversion P.O.Box 14300 Fl-00076 Aalto Finland;

    Aalto University School of Engineering Department of Mechanical Engineering The Research Croup of Energy Conversion P.O.Box 14300 Fl-00076 Aalto Finland;

    Aalto University School of Electrical Engineering Department of Electrical Engineering and Automation P.O.Box 14300 Fl-00076 Aalto Finland;

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

    End-use performance; Renewable fuels; SI and CI fuel properties; Fuel consumption model; CO_2 emissions; Light-duty vehicles;

    机译:最终使用性能;可再生燃料;Si和CI燃料特性;燃料消耗模型;CO_2排放;轻型车辆;
  • 入库时间 2022-08-18 22:23:10

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