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Sabre: a cost-effective engine technology combination for high efficiency, high performance and low CO_2 emissions

机译:SABER:一种经济高效,高性能和低CO_2排放的经济高效的发动机技术组合

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Increasingly stringent tailpipe CO_2 legislation and customer desire to reduce vehicle fuel consumption are driving new technology developments, particularly in gasoline engines. Many of these are not entirely complimentary to each other and all carry various levels of on-cost to the vehicle, both in financial and systems complexity terms. This paper will describe a downsized engine whose key technology packages include a second-generation direct injection combustion system combined with turbocharging and an integrated exhaust manifold (IEM). This engine has already been successfully applied to a B/C class vehicle. The interaction of the engine technologies is described together with the level of improvement in high-speed, high-load fuel consumption possible when cooled EGR is employed. The impact of the IEM on the thermal load of the vehicle is discussed in the context of what heat rejection would be expected from an approach adopting cooled EGR in a similarly-powerful engine with a conventional exhaust manifold is made. Finally, the level of performance increase possible with differently-matched turbocharger systems is discussed as a means of illustrating the applicability of the concept to other vehicle classes.
机译:日益严格的尾气CO_2立法和顾客的愿望,以减少车辆的燃油消耗正在推动新技术的发展,特别是在汽油发动机。其中有许多是不完全互补,彼此都进行低成本的车辆,无论是在金融和系统复杂性方面的不同级别。本文将描述一个小型发动机,其关键技术包包括第二代直接喷射燃烧系统与涡轮增压和集成的排气歧管(IEM)相结合。此发动机已成功地应用到一个B / C类车辆。发动机技术的相互作用与改进在高速水平一起所描述的,高负荷的燃料消耗可能在冷却时EGR采用。该IEM的在车辆上的热负荷的影响是在什么散热将从的方法所预期的上下文中所讨论采用冷却的EGR在类似强大的发动机与常规排气歧管制成。最后,的性能提升可能具有不同匹配的涡轮增压器系统中的电平作为表示到其它车辆类的概念的适用性的方法进行讨论。

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