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Emissions From a Diesel Engine Operating in a Dual-Fuel Mode Using Port-Fuel Injection of Heated Hydrous Ethanol

机译:使用加热的含水乙醇注入燃料的双燃料模式下运行的柴油发动机的排放

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摘要

Aftermarket dual-fuel Injection systems in diesel engines using hydrous ethanol as secondary fuel have been developed as a means to lower emissions from older diesel-powered equipment. However, our previous work has shown that the emissions benefits of currently available aftermarket intake fumigation injection systems can be inconsistent with manufacturer claims. Our current study evaluates a newly developed aftermarket dual-fuel system that incorporates a fuel heating system and port fuel injection (PFI). This paper describes an experimental investigation of engine-out emissions from a John Deere 4045HF475 Tier 2 engine with port injection of 180 proof (90% ethanol by volume) hydrous ethanol. The engine was retrofitted with a custom fuel heat exchanger to heat the hydrous ethanol to a range of 46-79 ℃ for helping to improve fuel vaporization in the intake port. PFI duration was controlled using engine speed and throttle position as inputs to achieve a desired fumigant energy fraction (FEF), defined as the amount of energy provided by the hydrous ethanol based on lower heating value (LHV) over the total fuel energy provided to the engine. Data was collected over a range of FEF with direct injected diesel for eight operating modes comparing heated versus unheated hydrous ethanol. Results of the study indicate that as FEF increases, NO emissions decrease, while NO_2, CO, THC, and unburned ethanol emissions increase. In addition, it was found that preheating the ethanol using engine coolant prior to injection has little benefit on engine-out emissions. The work shows that the implemented aftermarket dual-fuel PFI system can achieve FEF rates up to 37% at low engine load while yielding modest benefits in emissions.
机译:已开发出使用含水乙醇作为二次燃料的柴油发动机售后双燃料喷射系统,以减少旧柴油驱动设备的排放。但是,我们以前的工作表明,目前可用的售后市场熏蒸注入系统的排放益处可能与制造商的要求不一致。我们当前的研究评估了一个新开发的售后双燃料系统,该系统结合了燃料加热系统和港口燃料喷射(PFI)。本文介绍了使用John Deere 4045HF475 Tier 2发动机进行进气道注入180标准量(体积比为90%的乙醇)的含水乙醇对发动机排放的实验研究。发动机上装有定制的燃料热交换器,以将含水乙醇加热到46-79℃,以帮助改善进气口中的燃料蒸发。使用发动机转速和节气门位置作为输入来控制PFI持续时间,以达到所需的熏蒸能级分(FEF),熏蒸能级分定义为含水乙醇基于提供给燃料的总燃料能量中较低的发热量(LHV)所提供的能量。发动机。在直喷柴油机的FEF范围内收集了八个操作模式下的数据,比较了加热和未加热的含水乙醇。研究结果表明,随着FEF的增加,NO排放减少,而NO_2,CO,THC和未燃烧的乙醇排放增加。另外,发现在喷射之前使用发动机冷却剂对乙醇进行预热对发动机排出的排放几乎没有益处。这项工作表明,已实施的售后双燃料PFI系统在低发动机负载下可以实现高达37%的FEF率,同时在排放方面产生适度的收益。

著录项

  • 来源
    《Journal of Energy Resources Technology》 |2017年第2期|022204.1-022204.11|共11页
  • 作者单位

    Department of Mechanical Engineering, University of Minnesota, 111 Church Street Southeast, Minneapolis, MN 55455;

    Department of Mechanical Engineering, University of Minnesota, 111 Church Street Southeast, Minneapolis, MN 55455;

    Department of Mechanical Engineering, University of Minnesota, 111 Church Street Southeast, Minneapolis, MN 55455;

  • 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

  • 入库时间 2022-08-18 00:26:56

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