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Effect of Ethanol on the HCCI Combustion

机译:乙醇对HCCI燃烧的影响

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摘要

Bio-ethanol is one of the most promising alternative fuels for vehicles. It is important for the spread of bio-ethanol to investigate its ignition quality and its optimum combustion procedure. It is particularly important for the application of bio-ethanol to a homogeneous-charge compression ignition (HCCI) engine to investigate the HCCI combustion characteristics of ethanol. In this study, the inhibiting effects of ethanol on the HCCI combustion of heptane were investigated by using a rapid compression machine (RCM) under various conditions. The results indicate that ethanol effectively retarded the hot ignition period of HCCI combustion due to its effective retardation of the cool flame period. The hot ignition peak period for 30 wt% ethanol/70 wt% heptane was more delayed than that of PRF having an octane number of 60 under the Φ=0.4 condition. In addition, the hot ignition peak period for 50 wt% ethanol/50 wt% heptane was more delayed than that of PRF having an octane number of 80. Furthermore, the effects of diethyl ether, which can be produced from ethanol, on HCCI combustion were investigated by using RCM. Diethyl ether had significantly high ignition quality, suggesting that HCCI combustion control with ethanol and diethyl ether would be effective
机译:生物乙醇是车辆最有前途的替代燃料之一。生物乙醇的扩散至关重要,研究其点火质量及其最佳燃烧程序。将生物乙醇应用于均相电荷压缩点火(HCCI)发动机尤其重要,以研究乙醇的HCCI燃烧特性。在该研究中,通过在各种条件下使用快速压缩机(RCM)来研究乙醇对庚烷HCCI燃烧的抑制作用。结果表明,由于其有效延迟,乙醇是有效地阻碍了HCCI燃烧的热点火期由于其有效延迟的冷火焰期。 30wt%乙醇/ 70wt%庚烷的热点火峰期比在φ= 0.4条件下的辛烷值60的PRF更延迟。此外,乙醇/ 50wt%庚烷的热点火峰值比具有辛烷值为80的PRF的热点火峰值时间更延迟。此外,乙醚的影响,可由乙醇,HCCI燃烧产生乙醇通过使用RCM来研究。二乙醚具有显着高的点火质量,表明HCCI燃烧对乙醇和乙醚的燃烧对照将有效

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