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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >Study of diesel-fuelled homogeneous charge compression ignition combustion by in-cylinder early fuel injection and negative valve overlap
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Study of diesel-fuelled homogeneous charge compression ignition combustion by in-cylinder early fuel injection and negative valve overlap

机译:缸内早期燃油喷射和负气门重叠的柴油均质充量压缩点火燃烧研究

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This paper presents a scheme to achieve diesel-fuelled homogeneous charge compression ignition (HCCI) combustion, which is to inject diesel fuel directly into the cylinder at near intake top dead centre and adjust the valve overlap to obtain a higher internal exhaust gas recirculation (EGR) in the cylinder. The effects of the engine load, speed, inlet temperature, external EGR, and internal EGR on HCCI combustion and emission were studied. The combustion stability of HCCI combustion was also studied by statistics analysis. The results show the following: when the engine load or inlet temperature increases, which results in a higher in-cylinder temperature, the start of combustion (SOC) is advanced; the ignition time of HCCI relative to the engine crank angle is retarded when the engine speed increases; inert gases contained in the EGR can slow the chemical reaction rate, which can delay the auto ignition time; for the diesel-fuelled HCCI, increasing the negative valve overlap (NVO) makes the SOC advanced and makes the combustion stability better at low loads and worse at high loads. The emission results show that the nitrogen oxides (NO{sub}x) and smoke emissions are very low, and a large NVO can decrease the smoke emission but not benefit the NO{sub}x emission at high loads for diesel-fuelled HCCI combustion.
机译:本文提出了一种实现柴油均质充量压缩点火(HCCI)燃烧的方案,该方案是将柴油燃料直接在进气上止点附近的气缸内喷射,并调节气门重叠度以获得更高的内部废气再循环(EGR) )。研究了发动机负载,转速,进气温度,外部EGR和内部EGR对HCCI燃烧和排放的影响。还通过统计分析研究了HCCI燃烧的燃烧稳定性。结果表明:当发动机负荷或进气温度升高而导致缸内温度升高时,燃烧开始(SOC)提前;当发动机转速增加时,HCCI相对于发动机曲柄角的点火时间被延迟; EGR中包含的惰性气体会减慢化学反应速度,从而延迟自动点火时间;对于柴油HCCI,增大负气门重叠度(NVO)会使SOC提前,并使低负荷时的燃烧稳定性更好,而高负荷时的燃烧稳定性更差。排放结果表明,氮氧化物(NO {sub} x)和烟气排放量非常低,而较大的NVO可以减少烟气排放,但对柴油HCCI燃烧时在高负荷下的NO {sub} x排放量无益。 。

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