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首页> 外文期刊>Fuel >Diesel and rapeseed methyl ester (RME) pilot fuels for hydrogen and natural gas dual-fuel combustion in compression-ignition engines
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Diesel and rapeseed methyl ester (RME) pilot fuels for hydrogen and natural gas dual-fuel combustion in compression-ignition engines

机译:压缩点火发动机中用于氢气和天然气双燃料燃烧的柴油和菜籽甲酯(RME)引燃燃料

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摘要

This paper presents experimental results of rapeseed methyl ester (RME) and diesel fuel used separately as pilot fuels for dual-fuel compression-ignition (Cl) engine operation with hydrogen gas and natural gas (the two gaseous fuels are tested separately). During hydrogen dual-fuel operation with both pilot fuels, thermal efficiencies are generally maintained. Hydrogen dual-fuel Cl engine operation with both pilot fuels increases NO_x emissions, while smoke, unburnt HC and CO levels remain relatively unchanged compared with normal CI engine operation. During hydrogen dual-fuel operation with both pilot fuels, high flame propagation speeds in addition to slightly increased ignition delay result in higher pressure-rise rates, increased emissions of NO_x and peak pressure values compared with normal Cl engine operation. During natural gas dual-fuel operation with both pilot fuels, comparatively higher unburnt HC and CO emissions are recorded compared with normal Cl engine operation at low and intermediate engine loads which are due to lower combustion efficiencies and correspond to lower thermal efficiencies. This could be due to the pilot fuel failing to ignite the natural gas-air charge on a significant scale. During dual-fuel operation with both gaseous fuels, an increased overall hydrogen-carbon ratio lowers CO_2 emissions compared with normal engine operation. Power output (in terms of brake mean effective pressure, BMEP) as well as maximum engine speed achieved are also limited. This results from a reduced gaseous fuel induction capability in the intake manifold, in addition to engine stability issues (i.e. abnormal combustion). During all engine operating modes, diesel pilot fuel and RME pilot fuel performed closely in terms of exhaust emissions. Overall, Cl engines can operate in the dual-fuel mode reasonably successfully with minimal modifications. However, increased NO_x emissions (with hydrogen use) and incomplete combustion at low and intermediate loads (with natural gas use) are concerns; while port gaseous fuel induction limits power output at high speeds.
机译:本文介绍了油菜籽甲酯(RME)和柴油燃料分别用作引燃燃料的双燃料压缩点火(Cl)发动机使用氢气和天然气的实验结果(两种气态燃料分别进行了测试)。在使用两种引燃燃料的氢双燃料操作期间,通常会保持热效率。与常规CI发动机运行相比,同时使用两种引燃燃料的氢双燃料Cl发动机运行会增加NO_x排放,而烟气,未燃烧的HC和CO水平保持相对不变。在氢两种燃料同时使用两种引燃燃料的情况下,与正常的Cl发动机运行相比,高的火焰传播速度以及略微增加的点火延迟会导致更高的压力上升率,增加的NO_x排放和峰值压力值。在使用两种引燃燃料的天然气双燃料操作期间,与低和中级发动机负载下的正常Cl发动机运行相比,记录的未燃烧HC和CO排放量相对较高,这是由于较低的燃烧效率和较低的热效率所致。这可能是由于引燃燃料未能大规模点燃天然气-充气。在使用两种气体燃料的双燃料运行期间,与正常发动机运行相比,增加的总氢碳比降低了CO_2排放。功率输出(根据制动器平均有效压力BMEP)以及所达到的最大发动机转速也受到限制。这是由于除了发动机稳定性问题(即异常燃烧)之外进气歧管中的气态燃料进气能力降低。在所有发动机运行模式下,柴油引燃燃料和RME引燃燃料在废气排放方面表现都非常接近。总体而言,C1发动机只需进行最少的改动即可合理地成功地在双燃料模式下运行。但是,人们关注的是NO_x排放量的增加(使用氢气)和中低负荷(使用天然气)时不完全燃烧;港口的气态燃料感应限制了高速输出的功率。

著录项

  • 来源
    《Fuel》 |2011年第7期|p.2384-2395|共12页
  • 作者单位

    School of Engineering and Materials Science, Queen Mary University of London, UK;

    School of Engineering and Materials Science, Queen Mary University of London, UK;

    School of Engineering and Materials Science, Queen Mary University of London, UK;

  • 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

    dual; fuel; diesel; biodiesel; map;

    机译:双;汽油;柴油机;生物柴油地图;

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