The interaction of charge motion and EGR on anti-knock performance and efficiency of a medium-duty gasoline engine: An experimental study

IF 2.1 4区 工程技术 Q2 ENGINEERING, MECHANICAL
Xumin Zhao, Ruilin Liu, Zunqing Zheng, Peng Chen, Hu Wang, Guangmeng Zhou, Zhongjie Zhang, Mingfa Yao
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Abstract

Due to the common operating characteristics of medium duty (MD) gasoline engines, achieving higher load at the expense of fuel efficiency is not an acceptable tradeoff. EGR dilution-stoichiometric combustion can suppress the knocking and improve the thermal efficiency, but has problems such as slow combustion rate and poor combustion stability, which have limitations in optimizing combustion for MD gasoline engines with strong swirl. The experimental investigations in this study focus on the interaction of charge motion and EGR on anti-knock performance and thermal efficiency under different load conditions, and verifies the potential to improve the thermal efficiency of inclined swirl combustion system. The results show that at low-medium load, the tumble-dominated inclined swirl scheme can enhance the effectiveness of EGR in knock suppression, thus reducing the introduction of EGR to avoid its adverse effects on the combustion duration. At medium-high load, although the above benefit wears off, it can enhance the anti-knock performance and thus advance the spark timing by increasing the EGR tolerance. The EGR ratio corresponding to the highest thermal efficiency increases with higher load. The difference in the in-cylinder flow field will affect the combustion rate in a high EGR dilution and high load condition. The scheme adopting the compound intake ports and inverse cuneiform-shaped combustion chamber can improve both EGR tolerance and initial combustion rate under high EGR dilution, with the most significant improvement in thermal efficiency, and the improvement range will increase along with the increase of load.
装药运动与EGR相互作用对中型汽油机抗爆性能和效率的实验研究
由于中等负荷(MD)汽油发动机的共同工作特性,以燃油效率为代价获得更高的负载是不可接受的权衡。EGR稀释-化学计量燃烧可以抑制爆震,提高热效率,但存在燃烧速度慢、燃烧稳定性差等问题,限制了对强涡流MD汽油机的优化燃烧。实验研究了不同负荷条件下装药运动和EGR对抗爆性能和热效率的影响,验证了斜旋流燃烧系统提高热效率的潜力。结果表明,在中低负荷下,以倾转涡流为主的倾斜涡流方案可以提高EGR的爆震抑制效果,从而减少EGR的引入,避免其对燃烧持续时间的不利影响。在中高负荷下,虽然上述好处逐渐消失,但它可以提高抗爆性能,从而通过增加EGR公差来提前火花正时。最高热效率对应的EGR比随着负荷的增大而增大。在高EGR稀释和高负荷工况下,缸内流场的差异会影响燃烧速率。采用复合进气道和反楔形燃烧室的方案可以提高EGR容差和EGR高稀释下的初燃率,其中热效率的提高最为显著,且改善幅度会随着负荷的增加而增大。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
International Journal of Engine Research
International Journal of Engine Research 工程技术-工程:机械
CiteScore
6.50
自引率
16.00%
发文量
130
审稿时长
>12 weeks
期刊介绍: The International Journal of Engine Research publishes high quality papers on experimental and analytical studies of engine technology.
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