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Effects of advanced injection strategies on the in-cylinder air-fuel homogeneity of diesel engines

机译:先进喷射策略对柴油机缸内空气 - 燃料均匀性的影响

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摘要

The air???fuel mixing quality in the combustion chamber of a diesel engine is very critical for controlling the ignition and the combustion quality of direct-injection diesel engines. With a view to understanding the air???fuel mixing behaviour and the effect of the mixture quality on the emissions formation, an innovative approach with a new quantitative factor of the in-cylinder air???fuel homogeneity, called the homogeneity factor, was used, and its characteristics under various injection conditions were analysed with computational fluid dynamics simulations. By investigating the effect of advanced injection strategies on the homogeneity of the mixture and the emissions production, the study suggested that the homogeneity factor is greatly affected by the pulse number of injections, the injection timing and the dwell angle between two injections. The more advanced the injection taking place in the cylinder, the earlier the air???fuel mixing quality reaches a high level. Although the homogeneity factor is not sufficiently precise by itself to reflect the emissions formation, the results demonstrated that most often, the higher the homogeneity available in the cylinder, the more nitrogen oxides and the less soot were formed
机译:柴油机燃烧室中的空气燃料混合质量对于控制直喷柴油机的点火和燃烧质量非常关键。为了了解空气-燃料混合行为以及混合气质量对排放物形成的影响,提出了一种新颖的方法,采用了缸内空气-燃料均匀性的新定量因子,称为均匀性因子,使用它,并通过计算流体动力学模拟分析了其在各种注入条件下的特性。通过研究先进的喷射策略对混合物均匀性和排放产生的影响,研究表明,均匀性因子受喷射次数,喷射时间和两次喷射之间的停留角的影响很大。气缸中的喷射越先进,空气-燃料混合质量就达到较高水平的时间越早。尽管均匀性因子本身不够精确以反映排放物的形成,但结果表明,大多数情况下,钢瓶中可用的均匀性越高,形成的氮氧化物越多,烟灰越少

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