首页> 外文期刊>International Journal of Automotive Technology >GASOLINE MULTIPLE PREMIXED COMPRESSION IGNITION (MPCI): CONTROLLABLE, HIGH EFFICIENCY AND CLEAN COMBUSTION MODE IN DIRECT INJECTION ENGINES
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GASOLINE MULTIPLE PREMIXED COMPRESSION IGNITION (MPCI): CONTROLLABLE, HIGH EFFICIENCY AND CLEAN COMBUSTION MODE IN DIRECT INJECTION ENGINES

机译:汽油多种预混合压缩点火(MPCI):直接喷射发动机中的可控制,高效和清洁燃烧模式

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摘要

A novel combustion concept namely "multiple premixed compression ignition" (MPCI) in gasoline direct injection compression ignition (GDICI) regime is proposed. Its predominant feature is the first premixed and followed quasi-premixed combustion processes in a sequence of "spray-combustion-spray-combustion". The multiple-stage premixed combustion decouples the pressure rise with pollutants formation process, which means the pressure rise rate and emissions can be reduced simultaneously, while achieving a high thermal efficiency. The gasoline MPCI mode has been demonstrated in a research engine with a compression ratio of 18.5. Gasoline with the research octane number (RON) of 94.4 was tested under 1400 rpm, 0.6 MPa IMEP conditions, without EGR and intake boosting. A parameter study of common rail pressure and intake temperature was implemented to investigate their effects on the performance of MPCI mode. Compared to the single-stage diffusion combustion in traditional diesel engines, the gasoline MPCI mode achieves lower emissions of soot, NO, CO, as well as slightly higher indicated efficiency, with a penalty of higher THC emissions when the common rail pressure is larger than 80 MPa in this study. With intake temperature sweeping, the gasoline MPCI mode also has the foregoing advantages compared to the diesel under the same operating conditions.
机译:提出了一种新颖的燃烧概念,即汽油直接喷射压缩点火(GDICI)方案中的“多重预混压缩点火”(MPCI)。其主要特征是按照“喷雾燃烧-喷雾燃烧”的顺序进行的第一个预混合和随后的准预混合燃烧过程。多级预混燃烧使压力上升与污染物形成过程脱钩,这意味着压力上升率和排放量可以同时降低,同时实现高热效率。汽油MPCI模式已经在研究引擎中得到了证明,压缩比为18.5。在1400 rpm,0.6 MPa IMEP条件下测试了研究辛烷值(RON)为94.4的汽油,没有EGR和进气增加。进行了共轨压力和进气温度的参数研究,以研究它们对MPCI模式性能的影响。与传统柴油机中的单级扩散燃烧相比,汽油MPCI模式实现了更低的烟尘,NO,CO排放,以及更高的指示效率,当共轨压力大于在这项研究中为80 MPa。通过进气温度扫描,与相同运行条件下的柴油相比,汽油MPCI模式还具有上述优点。

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