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Effects of fuel composition on charge preparation, combustion and knock tendency in a high performance GDI engine. Part II: Les analysis

机译:高性能GDI发动机中燃料成分对装料,燃烧和爆震趋势的影响。第二部分:Les分析

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摘要

As discussed in the Part I of this paper, a numerical activity is carried out in order to analyse the effects of fuel composition modelling in a turbocharged GDI engine for sport car applications. While Part I analyses the "ensemble averaged" macroscopic effects on spray evolution, mixture stratification, combustion and knock tendency, in Part II of this paper cycle-to-cycle variations are analysed and discussed using a multi-cycle LES numerical framework, again comparing results from a more traditional single-component fuel surrogate model to those of a multi-component one. A purposely developed numerical approach is applied to properly account for the effects of the Discrete-Continuous-Multi-Component fuel formulation on the charge preparation: just before the spark timing, each vaporized fuel fraction is lumped back into a single-component surrogate fuel to allow the combustion model (ECFM-3Z, in its LES formulation) to take place. At the beginning of a new injection process, the numerical framework for the injected spray is switched back to Multi-Component, thus allowing each fuel fraction to independently spread, vaporize and diffuse in the combustion chamber according to the cycle-specific characteristics. A detailed comparison between the two fuel formulations is carried out on both average and rms values of the most influencing fields just before the spark discharge.
机译:如本文第一部分中所述,进行了数值活动,以分析用于跑车的涡轮增压GDI发动机中燃料成分建模的效果。在第一部分分析了对喷雾演变,混合物分层,燃烧和爆震趋势的“总体平均”宏观影响的同时,在本文的第二部分中,使用多循环LES数值框架分析并讨论了循环间的变化,再次进行了比较从更传统的单组分燃料替代模型到多组分燃料模型的结果。应用了专门开发的数值方法来适当地考虑离散连续多组分燃料配方对装料准备的影响:在火花正时之前,将每个汽化的燃料馏分集中回到单组分替代燃料中,允许进行燃烧模型(以LES公式表示的ECFM-3Z)。在新的喷射过程开始时,用于喷射的喷雾的数值框架将切换回多组分,从而允许每个燃料组分根据特定于循环的特性在燃烧室中独立扩散,汽化和扩散。两种燃料配方之间的详细比较是在火花放电之前,根据影响最大的磁场的平均值和均方根值进行的。

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