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A diagnostic bi-zonal combustion model for the study of knock in spark-ignition engines

机译:诊断性双区域燃烧模型,用于研究火花点火发动机的爆震

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摘要

A bi-zonal model for the combustion process in spark-ignition engines was developed to provide thermodynamic information, using experimental pressure records. The model was applied to the knock analysis, introducing a reduced kinetic mechanism. The unburned gas temperature in an adiabatically compressed core region is shown to be a good approximation for the reaction temperature. The activation energy of the forward rate of the isomerization reaction was determined for each of seven fuels by comparison with the experiments. It is shown that the activation energy has an almost linear dependence on the research octane number.
机译:使用实验压力记录,为火花点火发动机的燃烧过程建立了双区域模型,以提供热力学信息。该模型应用于爆震分析,引入了简化的动力学机制。绝热压缩堆芯区域中的未燃烧气体温度显示为反应温度的良好近似值。通过与实验比较,确定了七种燃料中每一种的异构化反应正向反应速率的活化能。结果表明,活化能与研究辛烷值几乎呈线性关系。

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