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Characterizing Two-Stage Combustion Process in a Natural Gas Spark Ignition Engine Based on Multi-Wiebe Function Model

机译:基于多Wiebe功能模型的自然气体火花点火发动机中的两级燃烧过程

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摘要

The Wiebe function is a simple and cost-effective analytical approach to approximate the burn rates in internal combustion (IC) engines. Previous studies indicated that a double-Wiebe function model can better describe the two-stage combustion process inside diesel engines retrofitted to natural gas (NG) spark ignition (SI) compared with a single-Wiebe function. Specifically, the two Wiebe functions are associated with the bowl burn and the squish burn. However, the long tail in the energy release at the end of combustion produces some differences between experiment and model, which can be attributed to the complexity of the late oxidation process inside the post-flame zone and the incomplete combustion of the unburned mixture flowing out from engine crevices. To improve the matching between the model and experimental data, this paper investigated the effect of adding a third Wiebe function just to describe the long tail in the energy release at the end of combustion. The results indicated that such a methodology greatly improved the fitting accuracy in terms of phasing and magnitude of the heat release rate In each combustion stage.
机译:Wiebe功能是一种简单且经济高效的分析方法,以近似内燃机(IC)发动机的烧伤率。以前的研究表明,与单个Wiebe功能相比,双维函数模型可以更好地描述柴油发动机内部的两级燃烧过程(NG)火花点火(SI)。具体地,两个Wiebe功能与碗燃烧和挤压燃烧有关。然而,燃烧结束时的能量释放中的长尾会产生一些实验和模型之间的差异,这可以归因于火焰后区域内的后氧化过程的复杂性和未燃烧的混合物流出的不完全燃烧从发动机缝隙。为了改善模型与实验数据之间的匹配,本文研究了添加第三Wiebe功能的效果只是为了描述燃烧结束时能量释放中的长尾。结果表明,这种方法在每种燃烧阶段中的热释放速率的分阶段和大小方面大大提高了拟合精度。

著录项

  • 来源
    《Journal of Energy Resources Technology》 |2020年第10期|102302.1-102302.8|共8页
  • 作者单位

    Mem. ASME Center for Alternative Fuels Engines and Emissions (CAFEE) Department of Mechanical and Aerospace Engineering West Virginia University Morgantown WV 26506;

    Center for Alternative Fuels Engines and Emissions (CAFEE) Department of Mechanical and Aerospace Engineering West Virginia University Morgantown WV 26506;

    Mem. ASME Center for Alternative Fuels Engines and Emissions (CAFEE) and Center for Innovation in Gas Research and Utilization (CIGRU) Department of Mechanical and Aerospace Engineering West Virginia University Morgantown WV 26506;

  • 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

    energy conversion/systems; energy systems analysis; natural gas technology;

    机译:能量转换/系统;能源系统分析;天然气技术;

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