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首页> 外文期刊>International Journal of Automotive Engineering >Investigation of Scavenging, Combustion and Knock in a Two-Stroke SI Engine Operated with Gasoline and CNG
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Investigation of Scavenging, Combustion and Knock in a Two-Stroke SI Engine Operated with Gasoline and CNG

机译:汽油和压缩天然气驱动的二冲程SI发动机的扫气,燃烧和爆震研究

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The paper reports a combined experimental and numerical investigation of a small unit displacement two-stroke SI engine operated with either Gasoline and Natural Gas (CNG).It is widely recognized that for two-stroke, crankcase scavenged, carbureted engines the scavenging patterns (fuel short-circuiting, residual gas distribution, point wise lambda field, etc.) plays a fundamental role on both engine performance and tailpipe emissions. To properly characterize the engine behavior in terms of scavenging patterns and combustion, a detailed multi-cycle 3D-CFD analysis of the scavenging process is at first performed starting from preliminary 1D computed boundary conditions provided by a in-house developed 1D model of the whole engine.In order to assess the accuracy of the adopted numerical approach, comparisons between numerical forecasts and experimental measurements of the instantaneous in-cylinder pressure history for steady-state operations of the engine are at first performed and shown in the paper. Subsequently, the activity is focused on the investigation of knock occurrence. In order to limit the computational cost of the simulations, calculations are at first carried out within the 1D modeling framework, where customized quasi-dimensional combustion and knock models are used. In particular, the 1D model is used to compute a numerical knock index which can be useful to address the tuning of the spark advance, given a prescribed and controlled percentage of knock released heat. At the end of the simulation process, the 1D knock index is qualitatively compared to results obtained from full 3D knocking analyses for different in-cylinder compositions and spark timings. The intrinsic knock-resistance of the CNG fuel is finally numerically exploited, through variations of both compression ratio and spark advance.
机译:本文报告了结合汽油和天然气(CNG)的小排量二冲程SI发动机的实验和数值研究的综合研究。众所周知,对于二冲程,曲轴箱扫气,化油发动机,其扫气方式(燃油)短路,残余气体分布,逐点λ场等)对发动机性能和排气管排放都起着根本性的作用。为了从扫气方式和燃烧方面正确表征发动机性能,首先从内部开发的整体一维模型提供的初步一维计算边界条件开始,对扫气过程进行详细的多周期3D-CFD分析为了评估所采用数值方法的准确性,首先对数值预测与发动机稳态运行的瞬时缸内压力历史记录的实验测量值进行了比较,并在本文中进行了显示。随后,该活动的重点是调查爆震的发生。为了限制模拟的计算成本,首先在1D建模框架内进行计算,其中使用定制的准维燃烧和爆震模型。特别地,一维模型用于计算数值爆震指数,在给定和受控百分比的爆震释放热量的情况下,该数值爆燃指数可用于解决火花提前的调整。在模拟过程的最后,将1D爆震指数与从不同气缸内组成和火花正时的完整3D爆震分析获得的结果进行定性比较。通过压缩比和火花提前的变化,最终在数值上利用了CNG燃料的固有抗爆震性。

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