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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Combustion characteristics of a compression-ignition engine fuelled with diesel-dimethoxy methane. blends under various fuel injection advance angles
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Combustion characteristics of a compression-ignition engine fuelled with diesel-dimethoxy methane. blends under various fuel injection advance angles

机译:以柴油-二甲氧基甲烷为燃料的压燃式发动机的燃烧特性。在各种燃油喷射提前角下混合

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摘要

The combustion characteristics and emissions under various fuel injection advance angles in a compression-ignition engine fuelled with diesel-dimethoxymethane blends were investigated. The results showed that the ignition delay, the rapid burning duration and the total combustion duration increase with the advancing of fuel injection angle for both diesel fuel and diesel-dimethoxymethane blends. At a specific fuel injection advance angle, the ignition delay increases and the heat release rate in the premixed burning phase increases with the increase of dimethoxymethane fraction in the blends. The center of the heat release curve moves close to the top-dead-center, and the brake specific fuel consumption (bsfc) decreases and the thermal efficiency increases with advancing the fuel injection advance angle. Maximum cylinder gas pressure increases with advancing the fuel injection advance angle, and the maximum cylinder gas pressure of the blends gives a higher value compared to that of diesel fuel. The maximum rate of pressure rise and the maximum rate of heat release increase with advancing the fuel injection advance angle. The exhaust smoke concentration increased and the exhaust NO, concentration decreased with decreasing the fuel injection advance angle for both diesel fuel and the blended fuels, and the behaviors were more obvious with decreasing the fuel injection advance angle. (c) 2005 Elsevier Ltd. All rights reserved.
机译:研究了在柴油-二甲氧基甲烷混合燃料为燃料的压燃式发动机中,在各种燃料喷射提前角下的燃烧特性和排放。结果表明,柴油和柴油-二甲氧基甲烷混合燃料的点火延迟,快速燃烧持续时间和总燃烧持续时间随着燃料喷射角的增加而增加。在特定的燃料喷射提前角处,随着混合物中二甲氧基甲烷分数的增加,点火延迟增加并且预混燃烧阶段的放热率增加。放热曲线的中心靠近上止点,并且随着燃料喷射提前角的增加,制动器的单位燃料消耗量(bsfc)降低,热效率提高。最大气缸气压随燃料喷射提前角的增加而增加,与柴油相比,混合气的最大气缸气压值更高。随着燃料喷射提前角的增加,最大压力升高速率和最大热量释放速率增加。柴油和混合燃料的燃油喷射提前角减小时,烟气浓度升高,废气中NO,NO浓度降低;当燃油喷射提前角减小时,排气行为更加明显。 (c)2005 Elsevier Ltd.保留所有权利。

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