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Effects of EGR, compression ratio and boost pressure on cyclic variation of PFI gasoline engine at WOT operation

机译:WOT运行时EGR,压缩比和增压对PFI汽油机循环变化的影响

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摘要

To reduce the cyclic variation is an effective way to improve the fuel economy and combustion of spark ignition engines. In this paper, the effect of exhaust gas recirculation (EGR), compression ratio and boost pressure on cyclic variation was investigated by means of both experiments and simulation for a port fuel injection (PFI) engine. The mechanisms of these effects were analyzed by computational fluid dynamics (CFD) tools. A Ricardo E6 PFI engine was used as the experimental prototype. The experiments were performed with six EGR ratios, three compression ratios and two boost pressures for a given equivalence ratios. The experiments were operated with the same parameters as that of the simulation. Results showed that the simulation work agree well with the experiment. Both simulation and experiment results showed that an increase of EGR ratio will increase cyclic variation for its lower laminar flame speed. However, the combination of EGR with either an appropriate compression ratio or boost pressure can achieve a relatively low cyclic variation.
机译:减少周期性变化是提高燃油经济性和火花点火发动机燃烧的有效方法。在本文中,通过实验和模拟研究了端口燃料喷射(PFI)发动机的排气再循环(EGR),压缩比和增压对循环变化的影响。这些影响的机制通过计算流体动力学(CFD)工具进行了分析。使用里卡多E6 PFI发动机作为实验原型。对于给定的当量比,以六个EGR比率,三个压缩比和两个增压进行实验。实验以与模拟相同的参数进行。结果表明,仿真工作与实验吻合良好。仿真和实验结果均表明,较高的EGR率会降低层流火焰速度,从而增加循环变化。但是,将EGR与合适的压缩比或增压压力结合使用可实现相对较低的循环变化。

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