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Effect of Fuel and Combustion System on the Pre-Ignition of Boosted SI engines

机译:燃料和燃烧系统对升压SI发动机预点火的影响

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Downsizing of gasoline engines is one of the key technologies for a substantial progress in CO_2-emissions reduction. Additional benefit in de-carbonisation is gained by the use of fuels with bio-components. Thus, future gasoline engines will demand a combination of downsizing and flex-fuel capability. Both enhanced downsizing and new fuels lead to challenges due to irregular combustion phenomena. This contribution presents pre-ignition results obtained on a highly boosted engine for different fuels and injection systems by a combination of engine testing, optical diagnostics and CFDR. The investigation of the role of combustion system on pre-ignition focuses on the mixture formation. It is observed here that direct injection with an optimized DI injector lay-out can reduce pre-ignition propensity significantly compared to advanced port fuel injection due to the charge cooling. Furthermore a substantial effect of DI injector lay-out is observed, since wide spray shapes with enlarged fuel liner impingement reveal a higher pre-ignition propensity due to the different thermal state of the charge. The investigation on the effect of fuel on pre-ignitions focuses mainly on fuels with varying ethanol contents. With increasing ethanol content the pre-ignition propensity decreases. Furthermore E85 and E100 show no tendency for glow ignition in the tested engine, although substantially higher load levels are achieved.
机译:汽油发动机的缩小尺寸是Co_2排放减少实质性进展的关键技术之一。通过使用具有生物组分的燃料来获得脱碳的额外益处。因此,未来的汽油发动机将需要缩小和柔性燃料能力的组合。增强的缩小性和新燃料均导致由于不规则的燃烧现象导致挑战。该贡献通过发动机测试,光学诊断和CFDR的组合提供了用于不同燃料和注射系统的高压发动机上获得的预点火结果。燃烧系统对预点火前的作用的调查侧重于混合物形成。这里观察到,与优化的DI喷射器布局直接喷射可以减少与由于电荷冷却引起的高级端口燃料喷射相比显着的点火倾斜。此外,观察到DI喷射器布局的显着效果,因为由于电荷的不同热状态,燃料衬里冲击的宽喷射形状揭示了较高的预点火倾斜。对燃料对预点火燃料效果的调查主要集中在具有不同乙醇含量的燃料上。随着乙醇含量的增加,预点火倾向降低。此外,E85和E100显示出在测试发动机中没有发光点火的趋势,尽管实现了更高的负载水平。

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