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首页> 外文期刊>SAE International Journal of Engines >Experimental Investigation of the Influence of Boost on Combustion and Particulate Emissions in Optical and Metal SGDI-Engines Operated in Stratified Mode
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Experimental Investigation of the Influence of Boost on Combustion and Particulate Emissions in Optical and Metal SGDI-Engines Operated in Stratified Mode

机译:增压对分层模型中光和金属SGDI发动机燃烧和微粒排放影响的实验研究

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摘要

Boosting and stratified operation can be used to increase the fuel efficiency of modern gasoline direct-injected (GDI) engines. In modern downsized GDI engines, boosting is standard to achieve a high power output. However, boosted GDI-engines have mostly been operated in homogenous mode and little is known about the effects of operating a boosted GDI-engine in stratified mode. This study employed optical and metal engines to examine how boosting influences combustion and particulate emission formation in a spray-guided GDI (SGDI), single cylinder research engine. The setup of the optical and metal engines was identical except the optical engine allowed optical access through the piston and cylinder liner. The engines were operated in steady state mode at five different engine operating points representing various loads and speeds. The engines were boosted with compressed air and operated at three levels of boost, as well as atmospheric pressure for comparison. The fuel used was market gasoline (95 RON) blended with 10% ethanol. The spark plug and injector were mounted in parallel with the intake valves. The gas motion induced by the engine head was primarily tumble motion with a small amount of swirl. Results on particulate emissions indicated that nucleation mode particulates increased with increasing boost. In contrast, agglomeration mode particulates decreased with increasing boost pressure. The combustion was found to consist of a yellow flame in the center of the combustion chamber and a pre-mixed blue flame in the perimeter. The optical studies indicated that the flame area decreased with increasing boost.
机译:升压和分层操作可用于提高现代汽油直接注射(GDI)发动机的燃料效率。在现代缩小的GDI发动机中,提升是达到高功率输出的标准。然而,提升的GDI-发动机主要以均匀模式运行,并且关于在分层模式下操作升压GDI发动机的效果很少。本研究采用了光学和金属发动机,以检查如何在喷涂引导的GDI(SGDI),单缸研究发动机中升级燃烧和颗粒发射形成。除了光学发动机允许通过活塞和汽缸衬里的光学接入之外,光学和金属发动机的设置是相同的。发动机以稳态模式在表示各种负载和速度的不同发动机操作点处运行。发动机用压缩空气升压,并以三级升压,以及大气压力进行比较。所用燃料是市场汽油(95 ron)与10%乙醇混合。火花塞和喷射器与进气阀平行安装。由发动机头引起的气体运动主要用少量涡流滚动运动。结果颗粒排放表明,成核模式颗粒随着增强的增加而增加。相反,聚集模式颗粒随着增压压力的增加而降低。发现燃烧包括在燃烧室中心的黄色火焰和周边中的预混合蓝色火焰组成。光学研究表明,随着升压的增加,火焰区域降低。

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