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Effect of post injection strategy on regulated exhaust emissions and particulate matter in a HSDI diesel engine

机译:后喷射策略对HSDI柴油机中规定的废气排放和颗粒物的影响

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We investigate effects of post injection strategies on regular exhaust emissions and soot particulate matters on in-cylinder emission control. A trade-off relation indicates that CO and THC emissions increase as post injection timing delays, but NOx emission significantly decreases when crank angle intervals increase because of cylinder volume expansion and heat transfer. In PM emission, total particle concentration and particle size distributions indicate that, at early post injection timing, SOF emission is relatively low but soot emission is relatively large caused by high temperature and local lean oxygen conditions. As crank angle intervals increasing, soot emission decreases quickly and becomes insensitive to the post injection timing. When SOF emission has an obvious increasing trend, there is a lowest level for the PM emission at intermediate post injection timing. Moreover, variations for total particle concentration are similar with soot emission at different post injection strategies. Particle size distribution result illustrates that PS is insensitive to post injection timing at different post injection strategies. (C) 2016 Published by Elsevier Ltd.
机译:我们调查后喷射策略对常规废气排放的影响以及烟灰颗粒物对缸内排放控制的影响。权衡关系表明,CO和THC排放量随后喷射正时延迟而增加,但由于气缸容积的膨胀和传热,当曲轴转角间隔增加时,NOx排放量会显着减少。在PM排放中,总颗粒浓度和粒度分布表明,在后喷射早期,SOF排放相对较低,而烟灰排放则相对较大,这是由高温和局部贫氧条件引起的。随着曲柄角间隔的增加,烟尘排放迅速减少,并且对后喷射正时变得不敏感。当SOF排放量有明显的增加趋势时,在后注入正时的PM排放量最低。此外,在不同的后喷射策略下,总颗粒浓度的变化与烟灰排放相似。粒度分布结果表明,PS在不同的后注入策略下对后注入时间不敏感。 (C)2016由Elsevier Ltd.出版

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