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Effect of Engine Speeds and Dimethyl Ether on Methyl Decanoate HCCI Combustion and Emission Characteristics Based on Low-Speed Two-Stroke Diesel Engine

机译:发动机速度和二甲醚对癸酸甲酯HCCI燃烧和基于低速二冲程柴油机的发射特性的影响

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The combustion and emission characteristics of homogeneous charge compression ignition (HCCI) fuelled by methyl decanoate (MD) with different engine speeds and dimethyl ether (DME) mixing ratios are investigated in this work. Engine data of a MAN B&W 6S70MC low-speed two-stroke marine diesel engine were used for the reactor. The results show that a decrease of engine speed has little effect on the in-cylinder temperature and pressure of the engine at constant excess air coefficient of 1.5. Meanwhile, NOx emissions decrease with a decrease of engine speed in pure MD HCCI combustion. The results also indicate that NOx and CO2 emissions decrease significantly with an increase in the percentage of DME in MD and DME mixing combustion at a constant total mole fraction and engine speed of 85 revolutions per minute (r/min).
机译:通过具有不同发动机速度和不同发动机速度和二甲醚(DME)混合比的甲基癸酸甲酯(MD)燃料的均匀电荷压缩点火(HCCI)的燃烧和排放特性进行了研究。 MAN B&W 6S70MC低速二冲程船用柴油发动机的发动机数据用于反应器。结果表明,发动机速度的降低对发动机的缸内温度和压力恒定在恒定的过量空气系数为1.5时几乎没有影响。同时,纯MD HCCI燃烧中的发动机速度降低了NOx排放减少。结果还表明,NOx和CO2排放随着MD和DME在恒定总摩尔分数的恒定总摩尔分数和发动机速度为85次(R / min)中的恒定总摩尔分数和发动机速度的增加而显着降低。

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