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An Experimental Study Using Spark-Assisted Stratified Compression Ignition (SSCI) Hybrid Combustion Mode for Engine Particle Number (PN) Reduction in a High Compression Ratio Gasoline Engine

机译:一种使用火花辅助分层压缩点火(SSCI)混合燃烧模式进行高压缩比汽油发动机的发动机粒子数(PN)混合燃烧模式的实验研究

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Particle Number (PN) have already been a big issue for developing high efficiency internal combustion engines (ICEs). In this study, controlled spark-assisted stratified compression ignition (SSCI) with moderate end-gas auto-ignition was used for reducing PN in a high compression ratio gasoline direct injection (GDI) engine. Under wide open throttle (WOT) and Maximum Brake Torque timing (MBT) condition, high external cooled exhaust gas recirculation (EGR) was filled in the cylinder, while two-stage direct injection was used to form desired stoichiometric but stratified mixture. SSCI combustion mode exhibits two-stage heat release, where the first stage is associated with flame propagation induced by spark ignition and the second stage is the result of moderate end-gas auto-ignition without pressure oscillation at the middle or late stage of the combustion process. The experimental results show that SSCI is a potential combustion strategy to reduce PN while improving fuel economy of high compression ratio gasoline engine. Under 1600 rpm/WOT condition, the PN of SSCI combustion mode can reach 4*105 1/ml, a 97% reduction compared to the normal GDI spark ignition baseline of 152*105 1/ml.
机译:粒子数(PN)已经是开发高效内燃机(ICE)的重要问题。在该研究中,使用中等终端气体自动点火的控制火花辅助分层压缩点火(SSCI)用于在高压缩比汽油直喷(GDI)发动机中的PN降低PN。在宽开口节流阀(WOT)和最大制动扭矩正时(MBT)条件下,填充高外部冷却的废气再循环(EGR)填充在圆柱体中,而两级直接注射用于形成所需的化学计量但分层的混合物。 SSCI燃烧模式表现出两级热释放,其中第一级与火花点火引起的火焰传播相关,第二级是中等末端气体自动点火的结果,而燃烧的中间或后期的压力振荡过程。实验结果表明,SSCI是减少PN的潜在燃烧策略,同时提高高压缩比汽油发动机的燃料经济性。在1600 rpm / wot条件下,与普通GDI火花点火基线相比,SSCI燃烧模式的PN可达到4×1051 / mL,降低97%,而152 * 1051 / ml。

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