首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >Simultaneous reduction in the exhaust emissions by a high exhaust gas recirculation ratio in a dimethyl-ether-fuelled diesel engine at a low-load operating condition
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Simultaneous reduction in the exhaust emissions by a high exhaust gas recirculation ratio in a dimethyl-ether-fuelled diesel engine at a low-load operating condition

机译:在低负荷工况下通过二甲醚燃料柴油发动机中的高废气再循环率同时减少废气排放

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The purpose of this study was to investigate the effect of the exhaust gas recirculation rate on the combustion and exhaust emission reduction characteristics of dimethyl ether fuel in a single-cylinder diesel engine. To investigate the effects on emission reduction, the test set-up was composed of a dimethyl ether supply system, a spray visualization system, an engine combustion system and an emissions analysis system. In this work, the spray visualization and exhaust emissions were measured using a high-speed camera with a metal halide lamp, a smoke meter and an emission gas analyser. The spray tip penetration and tip velocity of dimethyl ether fuel were lower than those of conventional diesel fuel. The reduction slope of the spray cone angle for dimethyl ether was less than that for diesel fuel owing to its low density and superior evaporation characteristics. The increase in the exhaust gas recirculation rate caused an extension of the ignition delay for dimethyl ether. During the extended ignition delay, the improved mixing characteristics influenced the slight decrease in the combustion period. An increase in the exhaust gas recirculation rate caused a significant reduction in the emission of nitrogen oxides. In addition, the soot emission was very low owing to the intrinsic characteristics of dimethyl ether (no direct carbon-carbon bonds). At the given equivalence ratio condition, the indicated specific hydrocarbon and indicated specific carbon monoxide emissions for dimethyl ether were extremely low when dimethyl ether spray was injected into the piston bowl (from 25° before top dead centre to top dead centre). Also, in this case, a change in the exhaust gas recirculation rate for dimethyl ether combustion had minimal effects on the indicated specific hydrocarbon and indicated specific carbon monoxide emissions. These results suggest that the use of high exhaust gas recirculation with dimethyl ether fuel can achieve near-zero exhaust emissions (nitrogen oxides, soot, hydrocarbons and carbon monoxide).
机译:这项研究的目的是研究排气再循环率对单缸柴油机中二甲醚燃料燃烧和减少排放特性的影响。为了研究对减排的影响,测试装置由二甲醚供应系统,喷雾可视化系统,发动机燃烧系统和排放分析系统组成。在这项工作中,使用带有金属卤化物灯,烟度计和排放气体分析仪的高速摄像机测量了喷雾的可视化和废气排放。二甲醚燃料的喷嘴尖端渗透率和尖端速度低于常规柴油燃料。由于二甲醚的低密度和出色的蒸发特性,其喷雾锥角的还原斜率小于柴油燃料。排气再循环率的增加导致二甲醚的点火延迟延长。在延长的点火延迟期间,改善的混合特性会影响燃烧时间的略微减少。废气再循环率的增加引起氮氧化物排放的显着减少。另外,由于二甲醚的固有特性(没有直接的碳-碳键),烟尘的排放非常低。在给定的当量比条件下,当将二甲醚喷雾剂注入活塞碗中时(从上止点之前的25°到上止点之间),指示的比烃和指示的一氧化碳排放极低。同样,在这种情况下,用于二甲醚燃烧的废气再循环率的变化对指示的特定烃和指示的一氧化碳排放具有最小的影响。这些结果表明,将高废气再循环与二甲醚燃料一起使用可以实现接近零的废气排放(氮氧化物,烟灰,碳氢化合物和一氧化碳)。

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