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Characterization of heavy duty engine fuel maps used for model based simulation tools.

机译:用于基于模型的仿真工具的重型发动机燃油图的表征。

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摘要

Characterization of fuel consumption is of critical importance for framing or modifying federal regulations for trucking industry. Due to its complexity, fuel consumption is often only known for a few test cycles which generally represent limited types of vehicle activity. It is known that vehicle fuel consumption strongly depends on the vehicle activity, chassis design and engine model year (MY), and hence poses a significant challenge while predicting fuel consumption of heavy-duty vehicles over real-world vehicle activity.;Upcoming Greenhouse Gas (GHG) regulation for 2017, engine manufacturers are required to assess heavy-duty engine fuel economy using vehicle simulation tools. With recent focus on fuel economy and GHG emissions, regulatory agencies are progressively relying on vehicle simulation tools that allow prediction of the fuel consumption for a variety of vehicles over different test cycles.;Autonomie simulation tool developed by Argonne National Laboratory was used in this study to predict the fuel consumption over different cycles and then the prediction of simulation tool was compared with chassis and engine dynamometer data to check the accuracy of the simulation tool.;Autonomie simulation results were compared with the chassis dynamometer test data and the results showed a 5.93% and 11.53% difference in engine work and brake-specific fuel consumption (bsfc) respectively. When Autonomie simulation results were compared with engine dynamometer test data, the difference in work done, integrated fuel consumption and bsfc were found to be 13.21%, 4.92%, and 8.32% respectively.;Autonomie generated fuel consumption simulation data was compared with a dynamic vehicle simulator, Greenhouse Gas Emissions Model (GEM). The method was able to predict ARB transient cycle within 10% error, with an absolute error of 6.38%.
机译:燃料消耗的表征对于制定或修改卡车行业的联邦法规至关重要。由于其复杂性,通常只有几个测试周期才知道油耗,这通常代表了有限的车辆活动类型。众所周知,车辆的油耗在很大程度上取决于车辆的活动,底盘设计和发动机型号年份(MY),因此在预测重型车辆的油耗超过实际的车辆活动时提出了巨大的挑战。 (GHG)法规规定,2017年,发动机制造商必须使用车辆仿真工具评估重型发动机的燃油经济性。随着近来对燃油经济性和温室气体排放的关注,监管机构逐渐依赖于车辆模拟工具,该工具可以预测不同测试周期下各种车辆的燃油消耗。;本研究中使用了由阿贡国家实验室开发的自动模拟工具预测不同周期的油耗,然后将仿真工具的预测与底盘和发动机测功机数据进行比较,以验证仿真工具的准确性。;自动仿真结果与底盘测功机测试数据进行比较,结果显示为5.93发动机工作和特定于制动器的燃油消耗量(bsfc)分别相差%和11.53%。将Autonomie模拟结果与发动机测功机测试数据进行比较时,发现做功差异,综合油耗和bsfc分别为13.21%,4.92%和8.32%。车辆模拟器,温室气体排放模型(GEM)。该方法能够在10%的误差范围内预测ARB瞬态周期,绝对误差为6.38%。

著录项

  • 作者

    Rana, Nitin.;

  • 作者单位

    West Virginia University.;

  • 授予单位 West Virginia University.;
  • 学科 Engineering Mechanical.;Engineering Automotive.;Transportation.
  • 学位 M.S.
  • 年度 2014
  • 页码 58 p.
  • 总页数 58
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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