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The effect of hydrogen addition on combustion and emission characteristics of an n-heptane fuelled HCCI engine

机译:加氢对正庚烷燃料HCCI发动机燃烧和排放特性的影响

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摘要

The mechanisms of the influence of hydrogen enrichment on the combustion and emission characteristics of an n-heptane fuelled homogeneous charge compression ignition (HCCI) engine was numerically investigated using a multi-zone model. The model calculation successfully captured the most available experimental data. The results show that hydrogen addition retards combustion phasing of an n-heptane fuelled HCCI engine due to the dilution and chemical effects, with the dilution effect being more significant. It is because of the chemical effect that combustion duration is reduced at a constant compression ratio if an appropriate amount of hydrogen is added. As a result of retarded combustion phasing and reduced combustion duration, hydrogen addition increases indicated thermal efficiency at a constant combustion phasing. Hydrogen addition reduces indicated specific unburned hydrocarbon emissions, but slightly increases normalized unburned hydrocarbon emissions that are defined as the emissions per unit burned n-heptane mass. The increase in normalized unburned hydrocarbon emissions is caused by the presence of more remaining hydrocarbons that compete with hydrogen for some key radicals during high temperature combustion stage. At a given hydrogen addition level, N2O emissions increases with overly retarding combustion phasing, but hydrogen addition moderates this increase in N2O emissions.
机译:使用多区域模型,数值研究了富氢对正庚烷燃料均质充量压缩点火(HCCI)发动机燃烧和排放特性的影响机理。模型计算成功捕获了最可用的实验数据。结果表明,由于稀释和化学作用,加氢会延迟正庚烷燃料的HCCI发动机的燃烧阶段,稀释作用更为显着。由于化学作用,如果添加适量的氢气,燃烧持续时间将以恒定的压缩比降低。由于延迟的燃烧阶段和缩短的燃烧持续时间,在恒定的燃烧阶段,氢气的添加增加了热效率。氢的添加减少了指示的未燃烧碳氢化合物的特定排放量,但稍微增加了标准化的未燃烧碳氢化合物的排放量,定义为未燃烧正庚烷的单位燃烧量。标准化未燃烧碳氢化合物排放量的增加是由于存在更多的剩余碳氢化合物,这些碳氢化合物在高温燃烧阶段会与氢竞争某些关键自由基。在给定的氢气添加量下,N2O排放量会随着燃烧相位的过度延迟而增加,但是氢气的添加会缓和N2O排放量的这种增加。

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