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Effects of Fuel Injection Timing in the Combustion of Biofuels in a Diesel Engine at Partial Loads

机译:柴油机部分负荷下燃料喷射正时对生物燃料燃烧的影响

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摘要

Methyl and ethyl esters of vegetable oils have become an important source of renewable energy with convenient applications in compression-ignition (CI) engines. While the use of biofuels results in a reduction of CO, paniculate matter, and unburned hydrocarbons in the emissions, the main disadvantage is the increase of nitrogen oxides (NO_x) emissions. The increase in NO_x emissions is attributed to differences in chemical composition and physical properties of the biofuel, which in turn affect engine operational parameters such as injection delay and ignition characteristics. The effects of fuel injection timing, which can compensate for these changes, on the performance and emissions in a single cylinder air-cooled diesel engine at partial loads using canola methyl ester and its blends with die-sel are presented in this study. The engine is a single cylinder, four stroke, naturally aspirated, CI engine with a displacement volume of 280 cm3 rated at 5 HP at 3600 rpm under a dynamometer load. It was equipped with a pressure sensor in the combustion chamber, a needle lift sensor in the fuel injector, and a crank angle sensor attached to the crankshaft. Additionally, the temperature of the exhaust gases was monitored using a thermocouple inside the exhaust pipe. Pollutant emissions were measured using an automotive exhaust gas analyzer. Advanced, manufacturer-specified standard, and delayed injection settings were applied by placing shims of different thicknesses under the injection pump, thus, altering the time at which the high-pressure fuel reached the combustion chamber. The start of injection was found to be insensitive to the use of biofuels in the engine. The late injection timing of the engine provided advantages in the CO and NO emissions with a small penalty in fuel consumption and thermal efficiency.
机译:植物油的甲酯和乙酯已成为可再生能源的重要来源,并在压缩点火(CI)发动机中得到了方便的应用。尽管使用生物燃料可减少排放中的CO,颗粒物和未燃烧的碳氢化合物,但主要缺点是氮氧化物(NO_x)排放量增加。 NO_x排放的增加归因于生物燃料的化学成分和物理特性的差异,进而影响了发动机的运行参数,例如喷射延迟和点火特性。这项研究提出了可以补偿这些变化的燃油喷射正时对单缸风冷柴油发动机在部分负荷下使用低芥酸菜子甲酯及其与柴油混合的性能和排放的影响。该发动机是单缸四冲程自然吸气CI发动机,在测功机负载下,排量为280 cm3,在3600 rpm下额定功率为5 HP。它在燃烧室中装有压力传感器,在喷油器中装有针升传感器,并且在曲轴上装有曲轴转角传感器。另外,使用排气管内部的热电偶监控排气温度。使用汽车废气分析仪测量污染物排放。通过将不同厚度的垫片放置在喷射泵下,可以应用制造商指定的先进标准和延迟喷射设置,从而改变高压燃料到达燃烧室的时间。发现开始喷射对发动机中使用生物燃料不敏感。发动机的较晚喷射正时提供了CO和NO排放方面的优势,并且对燃料消耗和热效率的影响很小。

著录项

  • 来源
    《Journal of Energy Resources Technology》 |2011年第2期|p.022203.1-022203.6|共6页
  • 作者单位

    School of Aerospace and Mechanical Engineering, University of Oklahoma, 212 Felgar Hall, 865 Asp Avenue, Norman, OK 73019;

    School of Aerospace and Mechanical Engineering, University of Oklahoma, 212 Felgar Hall, 865 Asp Avenue, Norman, OK 73019;

    School of Aerospace and Mechanical Engineering, University of Oklahoma, 212 Felgar Hall, 865 Asp Avenue, Norman, OK 73019;

  • 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

    biofuels; emissions; injection timing; diesel engine;

    机译:生物燃料排放注射时间柴油发动机;
  • 入库时间 2022-08-18 00:30:14

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