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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >Research on and development of a Miller cycle engine with multi-stage boosting
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Research on and development of a Miller cycle engine with multi-stage boosting

机译:多级增压米勒循环发动机的研究与开发

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In order to improve the thermal efficiency of engines, it is essential to increase their geometric compression ratio or the expansion ratio. This research explores the technology options to enable a higher expansion ratio in future boosted spark-ignition direct-injection engines, with the aim of significantly reducing the fuel consumption while achieving the same torque and combustion performances as those of baseline turbocharged engines. Variable-valve-actuation technologies such as the late-intake-valve-closing cam strategy and the early-intake-valve-closing cam strategy were considered, and their effectiveness in reducing the effective compression and preventing knock in high-compression-ratio engines was assessed. To compensate for the torque loss due to late intake valve closing or early intake valve closing, multi-stage boosting systems including the turbocharger-supercharger combination and the two-stage turbocharger were implemented and compared. In this study, a Miller cycle engine concept with a high expansion ratio of 12.0:1 was developed with variable valve actuation and multi-stage boosting. On the basis of this new concept, an engine was built and extensively tested on an engine dynamometer to assess its part-load fuel consumption and full-load performance. The experimental results indicated that this engine concept can improve the fuel economy of the vehicle by 3-4% at typical city and highway driving conditions while maintaining the same performance.
机译:为了提高发动机的热效率,必须增加它们的几何压缩比或膨胀比。这项研究探索了可以在未来的增压火花点火直喷发动机中实现更高膨胀比的技术选择,目的是显着降低燃油消耗,同时获得与基准涡轮增压发动机相同的扭矩和燃烧性能。考虑了可变气门致动技术,例如进气后期关闭凸轮策略和进气初期关闭凸轮策略,它们在降低高压缩比发动机中有效压缩和防止爆震方面的有效性被评估。为了补偿由于进气门延迟关闭或进气门早期关闭造成的扭矩损失,我们对包括涡轮增压器-增压器组合和两级涡轮增压器的多级增压系统进行了比较。在这项研究中,采用可变气门致动和多级助推技术,开发出了具有高膨胀比12.0:1的米勒循环发动机概念。基于这一新概念,制造了发动机并在发动机测功机上进行了广泛的测试,以评估其部分负荷的油耗和满负荷性能。实验结果表明,该发动机概念可以在典型的城市和高速公路行驶条件下将车辆的燃油经济性提高3-4%,同时保持相同的性能。

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