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Heat release in the end-gas prior to knock in lean, rich and stoichiometric mixtures with and without EGR

机译:在末端气体中的热释放在敲入瘦,富含和化学计量的混合物,没有EGR

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SI Engine knock is caused by autoignition in the unburnt part of the mixture (end-gas) ahead of the propagating flame. Autoignition of the end-gas occurs when the temperature and pressure exceeds a critical limit when comparatively slow reactions - releasing moderate amounts of heat - transform into ignition and rapid heat release. In this paper the difference in the heat released in the end-gas - by low temperature chemistry - between lean, rich, stochiometric, and stoichiometric mixtures diluted with cooled EGR was examined by measuring the temperature in the end-gas with Dual Broadband Rotational CARS. The measured temperature history was compared with an isentropic temperature calculated from the cylinder pressure trace. The experimentally obtained values for knock onset were compared with results from a two-zone thermodynamic model including detailed chemistry modelling of the end-gas reactions.
机译:Si发动机爆震是由混合物(终端气体)的未燃烧部分的自燃引起的。当温度和压力超过临界限制时发生终止的终止的反应 - 释放中等量的热转化进入点火和快速热释放时。在本文中,通过测量与双宽带旋转汽车的最终气体温度,通过低温化学 - 通过低温化学 - 通过低温化学释放的热量释放的热量 - 通过用双宽带旋转汽车的温度测量终端气体的温度来检查稀释的egr之间的化学计量混合物。将测量的温度历史与由气缸压力迹线计算的等熵温度进行比较。将实验获得的爆震发作值与来自双区热力学模型的结果进行比较,包括结束气体反应的详细化学建模。

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