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Analysis of Diesel Engine In-Cylinder Air-Fuel Mixing with Homogeneity Factor : Combined Effects of Pilot Injection Strategies and Air Motion

机译:具有均匀性因子的柴油机缸内空燃混合分析:                     先导喷射策略与空气运动的综合效应

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摘要

With a view to understanding the air-fuel mixing behavior and the effects of the mixture quality on the emissions formation and engine performance, a new quantitative factor of the in-cylinder air-fuel homogeneity named Homogeneity Factor (HF) has been developed. Its characteristics under various injection conditions and air swirl motions within the cylinder have been investigated with CFD simulation. The results have shown that air-fuel homogeneity is essentially affected by the spatial and temporal fuel distribution within the combustion chamber. Higher injection pressure, longer dwell time and increased pilot fuel quantities can contribute to better mixing quality resulting in increased HF and optimum engine performance with low fuel consumption and soot emissions. With regard to the in-cylinder air motion, increasing swirl ratio enhances the air-fuel mixing quality which has been reflected in the variation of the HF. As a result, increased in-cylinder pressure and temperature caused by the optimized air-fuel mixing improved the combustion efficiency
机译:为了理解空燃混合行为以及混合气质量对排放物形成和发动机性能的影响,已经开发了一种新的缸内空燃均匀性定量因子,称为均质因子(HF)。通过CFD仿真研究了其在各种喷射条件下以及气缸内空气涡流运动的特性。结果表明,空气-燃料均匀性基本上受燃烧室内的空间和时间燃料分布的影响。更高的喷射压力,更长的停留时间和更多的引燃燃料量可有助于提高混合质量,从而提高HF并优化发动机性能,同时降低燃料消耗和烟尘排放。关于缸内空气运动,增加的涡流比可以提高空燃混合质量,这已经反映在HF的变化中。结果,优化的空燃比导致缸内压力和温度升高,从而提高了燃烧效率

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