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A numerical investigation on the potentials of water injection to increase knock resistance and reduce fuel consumption in highly downsized GDI engines

机译:高压GDI发动机抗撞击抗抗冲抗力潜力的数值研究,降低燃油消耗

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3D CFD analyses are used to analyse the effects of port-injection of water in a high performance turbocharged GDI engine. Particularly, water injection is adopted to replace mixture enrichment while preserving, if not improving, indicated mean effective pressure and knock resistance. A full-load / maximum power engine operation of a currently made turbocharged GDI engine is investigated comparing the actual adopted fuel-only rich mixture to stoichiometric-to-lean mixtures, for which water is added in the intake port under constant charge cooling in the combustion chamber. In order to find the optimum fuel/water balance, preliminary analyses are carried out using a chemical reactor to evaluate the effects of charge dilution and mixture modification on both autoignition delays and laminar flame speeds. Thanks to the lower chemical reactivity of the diluted end gases, the water-injected engine allows the spark advance (SA) to be increased; as a consequence, engine power target is met, or even crossed, with a simultaneous relevant reduction of fuel consumption.
机译:3D CFD分析用于分析高性能涡轮增压GDI发动机中水的效果。特别地,采用水注射来替代混合物富集,同时保持富含混合物,如果没有改善,表明平均有效压力和抗抗冲击性。研究了当前制造的涡轮增压发动机的全负载/最大电力发动机运行比较将实际采用的富含燃料的富含混合物进行比较,以将水在进气口中加入恒定电荷冷却的水中燃烧室。为了找到最佳的燃料/水平衡,使用化学反应器进行初步分析,以评估电荷稀释和混合改性对自燃延迟和层流速度的影响。由于稀释端气体的较低的化学反应性,水注入发动机允许增加火花提前(SA);因此,满足发动机功率目标,甚至交叉,同时燃料消耗的同时减少。

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