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Effects of Intake Temperature and Equivalence Ratio on HCCI Ignition Timing and Emissions of a 2-Stroke Engine

机译:摄入温度和等效比对2行程发动机HCCI点火正时序和排放的影响

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Homogeneous charge compression ignition (HCCI) combustion, when applied to a gasoline engine, offers the potential for a noticeable improvement in fuel economy and dramatic reductions in NO_x emissions. In this study, Computational Fluid Dynamic (CFD) is used coupled with detailed chemical mechanism (38 species and 69 reactions) for simulation of HCCI combustion of iso-octane and transitional flow inside the combustion chamber of a 2-stroke engine. Results show that increasing the overall gas temperature significantly advances the HCCI combustion timing. Concerning the equivalence ratio, by increasing it the ignition timing has been advanced and the maximum cylinder pressure has been increased. When equivalence ratio increases to more than 0.5, NO_x emissions significantly increases and go beyond 1000 [ppm].
机译:均匀电荷压缩点火(HCCI)燃烧,当应用于汽油发动机时,提供了燃料经济性显着提高的潜力,并在NO_X排放中的急剧减少。在该研究中,计算流体动力学(CFD)与详细的化学机制(38种和69个反应)相结合,用于模拟异辛烷和2行程发动机的燃烧室内的异辛烷和过渡流程的HCCI燃烧。结果表明,增加总体气体温度显着推进了HCCI燃烧正时。关于等效率,通过增加它的点火正时已经前进,并且最大的汽缸压力已经增加。当等效率增加到大于0.5时,NO_X排放显着增加并超出1000 [PPM]。

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