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Impacts of Cold-Start and Gasoline RON on Particulate Emission from Vehicles Powered by GDI and PFI Engines

机译:冷启动和汽油ron对GDI和PFI发动机供电的车辆颗粒发射的影响

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An experimental study of particulate matter (PM) emission was conducted on four cars from Chinese market. Three cars were powered by gasoline direct injection (GDI) engines and one car was powered by a port fuel injection (PFI) engine. Particulate mass, number and size distribution were measured based on a chassis dynamometer over new European driving cycle (NEDC). The particulate emission behaviors during cold start and hot start NEDCs were compared to understand how the running conditions influence particulate emission. Three kinds of gasoline with RON 91.9, 94.0 and 97.4 were tested to find the impact of RON on particulate emission. Because of time and facilities constraints, only one cold/hot start NEDC was conducted for every vehicle fueled with every fuel. The test results showed that more particles were emitted during cold start condition (first 200s in NEDC). Compared with cold start NEDC, the particulate mass and number of hot start NEDC decreased by a wide margin. The particulate mass and number reductions of hot start NEDC mainly resulted from ECE cycle sections. The particulate mass and number of cold start ECE were much higher than that of the hot start ECE due to the inhomogeneous mixture combustion process during cold start condition. Gasoline RON had little impact on particulate emission emitted from the four test cars when their engines ran without knocking. However, when the GDI cars calibrated with a high RON gasoline ran with a low RON gasoline, the fierce knocking would occur under high load condition such as acceleration from 100km/h to 120km/h and increase the number of both nucleation and accumulation particles significantly.
机译:颗粒物质(PM)排放的实验研究在中国市场的四辆车上进行。三辆车由汽油直接注射(GDI)发动机,一辆汽车由端口燃料喷射(PFI)发动机提供动力。基于新的欧洲驾驶循环(NEDC)的底盘测功机测量颗粒状物质,数量和尺寸分布。比较冷启动和热启动NEDC期间的颗粒发射行为,以了解运行条件如何影响颗粒发射。测试了三种汽油,具有RON 91.9,94.0和97.4,以发现RON对颗粒发射的影响。由于时间和设施的限制,每辆车都只有一个冷/热的启动NEDC,每辆车都有各种燃料。测试结果表明,在冷启动条件下发出了更多颗粒(NEDC中的前200年)。与冷启动NEDC相比,颗粒质量和热启动NEDC的数量通过宽边缘降低。热启动NEDC的颗粒状质量和数量减少主要由ECE循环部分产生。由于在冷启动条件下的不均匀混合燃烧过程,颗粒状质量和冷启动ece的颗粒质量和数量远高于热开始eCE。汽油ron对从四个测试汽车发出的颗粒发射时几乎没有影响,当他们的发动机没有敲门时。但是,当用高RON汽油碾压的GDI汽车用低RON汽油跑,剧烈敲击会在高负荷条件下发生,例如100km / h至120km / h,并显着增加两种成核和累积颗粒的数量。

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