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Expansion of external EGR effective region and influence of dilution on boosted operation of a downsized turbocharged GDI engine

机译:外部EGR有效地区的扩展及稀释对缩小涡轮增压GDI发动机提升操作的影响

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Engine downsizing is an effective technology to lower automotive CO_2 emissions. However, the high load low speed regions are plagued with knocking combustion that are usually overcome by retarding the ignition. This interferes with the efficiency gains due to very late combustion. This paper reports the use of Exhaust Gas Recirculation (EGR) on a Ford Ecoboost 1l downsized gasoline turbocharged direct injection (GTDI) engine to improve efficiency by optimising combustion phasing unlocked by the improved knock resistance with EGR dilution. Further ignition system upgrades are tested for impact towards further efficiency improvements. 75mJ (standard) and 120mJ (high energy) ignition systems were compared. The experimental results showed that the brake specific fuel consumption (BSFC) can be improved by 5.6% with EGR dilution at 25%. When considering combined effects of EGR and high energy ignition upon engine fuel economy, the BSFC gain improves to 7.9%.
机译:发动机缩小化是降低汽车CO_2排放的有效技术。然而,高负荷低速区域困扰着通过延迟点火而通常克服的爆震燃烧。这会干扰由于燃烧非常长的效率。本文报道了在福特Ecoboost 1L小型化汽油涡轮增压直喷直喷(GTDI)发动机上使用废气再循环(EGR),以通过优化通过改进的抗抗膨胀性解锁的燃烧相位来提高效率。对进一步的效率改进进行了测试的进一步点火系统升级。比较75MJ(标准)和120MJ(高能)点火系统。实验结果表明,制动燃料消耗(BSFC)可提高5.6%,EGR稀释率为25%。在考虑EGR和高能量点火对发动机燃料经济性上的综合影响时,BSFC增益可提高至7.9%。

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