首页> 外文期刊>Combustion Science and Technology >HOT SPOT FORMATION BY THE PROPAGATING FLAME AND THE INFLUENCE OF EGR ON KNOCK OCCURRENCE IN SI ENGINES
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HOT SPOT FORMATION BY THE PROPAGATING FLAME AND THE INFLUENCE OF EGR ON KNOCK OCCURRENCE IN SI ENGINES

机译:燃烧火焰引起的热点形成以及EGR对SI引擎中爆震的影响

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摘要

Two-dimensional and three-dimensional numerical simulations, which take into account both the low-temperature and high-temperature kinetics and yield correct induction times for hydrocarbon auto-ignition, are presented. The development of the autoignition is tightly connected to the formation of hot spots that evolved from the nonuniformities caused by pressure waves emitted by the propagating flame. It is shown that there is a considerable feedback: the propagating flame is accelerated by the temperature increase due to development of the cool flames in the end gas, and development of the autoignition is enhanced by the flame acceleration. Knocking onset is the self-ignition of the end-gas, which occurs as a result of combined effects of the end-gas compression by the moving piston during the compression stroke and by the propagating flame together with expanding combustion products. The calculated dependence of the temperature and pressure in the end gas on crank angle and predicted time of the autoignition onset for different engine operation conditions, in particular, for different percentage of EGR are found in a good agreement with the experimental data.
机译:提出了二维和三维数值模拟,其中考虑了低温和高温动力学,并为碳氢化合物自燃产生了正确的诱导时间。自燃的发展与热点的形成紧密相关,热点是由传播火焰发出的压力波引起的不均匀性演变而来的。结果表明存在大量反馈:由于末端气体中冷火焰的发展,温度升高使火焰传播加速,而火焰加速则促进了自燃的发展。爆震是终端气体的自燃,这是由于在压缩冲程期间运动的活塞,传播的火焰以及膨胀的燃烧产物共同产生的终端气体压缩的综合作用而发生的。对于不同的发动机工况,特别是对于不同的EGR百分比,计算得出的最终气体中的温度和压力对曲柄角的依赖性以及自动点火开始的预计时间与实验数据非常吻合。

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