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Cycle-by-Cycle Analysis of Cold Crank-Start in a GDI Engine

机译:GDI发动机中冷曲轴开始的周期循环分析

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The first 3 cycles in the cold crank-start process at 20°C are studied in a GDI engine. The focus is on the dependence of the HC and PM/PN emissions of each cycle on the injection strategy and combustion phasing of the current and previous cycles. The PM/PN emissions per cycle decrease by more than an order of magnitude as the crank-start progresses from the 1st to the 3rd cycle, while the HC emissions stay relatively constant. The wall heat transfer, as controlled by the combustion phasing, during the previous cycles has a more significant influence on the mixture formation process for the current cycle than the amount of residual fuel. The results show that the rise in HC emissions caused by the injection spray interacting with the intake valves and piston crown is reduced as the cranking process progresses. Combustion phasing retard significantly reduces the PM emission. The HC emissions, however, are relatively not sensitive to combustion phasing in the range of interest.
机译:在GDI发动机中研究了20°C的冷曲柄开始过程中的前3个循环。重点是HC和PM / PN排放的依赖性每个循环对喷射策略和电流和先前循环的燃烧相位。当曲柄开始从第1到第3循环开始,每个循环的PM / PN排放量减小超过一个数量级,而HC排放保持相对恒定。通过燃烧序列控制的壁传热在先前的循环期间对电流循环的混合物形成过程具有比残余燃料的量更大的影响更大。结果表明,随着起动过程的进展,通过喷射喷射与进气门和活塞冠引起的HC排放的升高减少。燃烧阶段延迟显着降低PM排放。然而,HC排放对令人兴趣范围内的燃烧相位相对不敏感。

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