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Effect of different percentages of biodiesel-diesel blends on injection, spray, combustion, performance, and emission characteristics of a diesel engine

机译:不同百分比的生物柴油-柴油混合物对柴油发动机的喷射,喷雾,燃烧,性能和排放特性的影响

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摘要

A comparative study of effect of different biodiesel-diesel blends (B5, B10, B15, B20, B25, B50 and B100) on injection, spray, combustion, performance, and emissions of a direct injection diesel engine at constant speed (1500 rpm) was carried out. The penetration distance increased with increase in percentage of bio-diesel in diesel due to enhanced in-line fuel pressure. The simulation results indicate the spray penetration with biodiesel-diesel blend up to B15 does not lead to wall impingement but B20 is to be a critical limit of wall impingement (within uncertainty ±1.3%). However, it is observed clearly from the simulation results that probability of wall impingement is more with higher blends (B25, B50 and B100). The ignition delay period decreased with all biodiesel blends due to higher cetane number resulting in less rate of pressure rise and the smooth engine running operation. The engine torque does not change significantly with biodiesel-diesel blends up to 20% (B20). However, the torque reduction is about 2.7% with B100 at the rated load. Carbon monoxide (CO), hydrocarbon (HC) and smoke emissions decreased with all biodiesel-diesel blends. However, oxides of nitrogen (NOx) emission increased in the range of 1.4-22.8% with all biodiesel-diesel blends at rated load due to oxygenated fuel, automatic advance in dynamic injection timing (DIT), higher penetration and higher in-cylinder temperature. A notable conclusion emerged from this study is the optimum biodiesel-diesel blend based on no wall impingement (B15: 0% and B20 ±1.3% uncertainty limit) and increase in NOx emission (B15: 4.1% and B20: 15.6%) in a conventional (unmodified) diesel engine is up to B15.
机译:比较不同生物柴油-柴油混合物(B5,B10,B15,B20,B25,B50和B100)对恒速(1500 rpm)直喷柴油机的喷射,喷雾,燃烧,性能和排放的影响的比较研究进行了。渗透距离随着柴油中生物柴油百分比的增加而增加,这归因于在线燃料压力的提高。模拟结果表明,生物柴油与柴油混合物的喷雾渗透率最高达到B15不会导致壁撞击,但B20将成为壁撞击的临界极限(不确定度为±1.3%)。但是,从仿真结果可以清楚地观察到,掺混量较高(B25,B50和B100)的壁撞击的可能性更大。由于十六烷值较高,因此所有生物柴油混合物的点火延迟时间均缩短,从而导致升压速率降低和发动机运转平稳。最高20%(B20)的生物柴油与柴油混合物不会使发动机扭矩发生明显变化。但是,在额定负载下,B100的转矩降低约为2.7%。所有生物柴油-柴油混合物中的一氧化碳(CO),碳氢化合物(HC)和烟气排放均降低。但是,由于含氧燃料,动态喷射正时(DIT)自动提前,更高的渗透率和更高的缸内温度,所有生物柴油-柴油混合物在额定负载下的氮氧化物排放量在1.4-22.8%的范围内增加。这项研究得出的一个显着结论是,最佳生物柴油-柴油混合物基于无壁撞击(B15:0%,B20±1.3%不确定性极限),并增加了NOx排放(B15:4.1%和B20:15.6%)。常规(未改装的)柴油发动机不超过B15。

著录项

  • 来源
    《Fuel》 |2015年第1期|537-545|共9页
  • 作者单位

    Engines and Unconventional Fuels Laboratory, Centre for Energy Studies, Indian Institute of Technology Delhi, New Delhi 110 016, India;

    Engines and Unconventional Fuels Laboratory, Centre for Energy Studies, Indian Institute of Technology Delhi, New Delhi 110 016, India;

  • 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

    In-line fuel pressure; Spray penetration; Wall impingement; NOx emission; Diesel engine;

    机译:直列燃油压力;喷雾渗透;壁撞击;NOx排放;柴油发动机;

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