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Predicting lubricant oil induced pre-ignition phenomena in modern gasoline engines: The reduced GasLube reaction mechanism

机译:预测现代汽油发动机的润滑油诱导的预点火现象:降低的储气反应机制

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Recent research highlights the influence of the presence of lubricant oil droplets on the combustion process in Direct Injection Spark Ignition (DISI) engines. Lubricant oil is considered to be the main responsible agent for the onset of pre-ignition phenomena, which can escalate highly undesired super-knock events. Moreover, lubricant oil plays a primary role in the generation of very fine soot particle emissions. In the present work, a reduced reaction mechanism is developed for modeling the combustion of gasoline-oil mixtures, allowing one to simulate the variation in ignitability of gasoline-like fuels induced by the presence of lubricant oil. In this study, a single hydrocarbon species, namely n-Hexadecane (n-C16H34), is shown to reproduce lubricant oil chemical and physical characteristics. Great effort has been performed to identify the most significant reaction pathways to reduce the complexity of the chemistry mechanism and the number of variables, while maintaining the important features of detailed mechanisms, for the highest computational efficiency. The proposed reduced mechanism has been validated for a wide range of operating conditions. It is employed for 3D simulations of experimental measurements in which iso-Octane was blended with different percentages of lubricant oil and its surrogates. Operating conditions representative of those of a typical turbocharged DISI engine are considered. The very good agreement obtained in the comparison with the experimental data confirms the effectiveness of the proposed "GasLube" mechanism in reproducing lubricant oil's influence on ignition propensity of gasoline-like fuels. Furthermore, the 3D numerical simulations allowed a detailed analysis of the ignition phenomenon, providing more insight into the basic processes of lubricant oil induced pre-ignition events in DISI gasoline engines.
机译:最近的研究突出了在直喷火花点火(DISI)发动机中燃烧过程中润滑油液滴的影响。润滑油被认为是前点火现象发作的主要责任剂,这可以升级高度不期望的超击败事件。此外,润滑油在产生非常细小的烟灰颗粒排放中起主要作用。在本作工作中,开发了一种减少的反应机理,用于建模汽油 - 油混合物的燃烧,允许一个人模拟通过润滑油存在诱导的汽油状燃料的可燃性的变化。在该研究中,显示单个烃类,即N-十六烷(N-C16H34),以再现润滑油化学物质和物理特性。已经进行了巨大的努力来确定最重要的反应途径,以降低化学机制的复杂性和变量的数量,同时保持最高的计算效率的详细机制的重要特征。提出的减少机制已被验证,可用于各种操作条件。它用于实验测量的3D模拟,其中异辛烷与不同百分比的润滑油及其替代物混合。考虑代表典型涡轮增压发动机的操作条件。与实验数据相比获得的非常良好的一致性证实了提出的“Gaslube”机制在再现润滑油对汽油燃料的点火局部影响方面的有效性。此外,3D数值模拟允许对点火现象进行详细分析,从而提供更多地深入了解润滑油诱导的Disi汽油发动机的预点火事件的基本过程。

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