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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Analysis of onset and severity of knock in SI engine based on in-cylinder pressure oscillations
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Analysis of onset and severity of knock in SI engine based on in-cylinder pressure oscillations

机译:基于缸内压力波动的SI发动机爆震起因和严重性分析

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This paper, based on pressure wave equation coupled with KIVA-3V combustion codes with reduced kinetics mechanism, analyzed and discussed the onset and severity of knock identified by different knock metrics in SI engine running at different speeds. The calculated results demonstrated that the knock onset defined by pressure oscillations characteristics here was approximately consistent with that defined by heat release. Meanwhile, the knock onset shifted backwards in high-speed region where relatively high flame propagation speed prevented the occurrence of auto-ignition, and thus knock intensity, characterized by knock metrics, MAPO and KI20, decreased observably. Visualized 3D calculation results were presented to show the flame propagation and pressure oscillation characteristics. Finally, the correlation between engine speed and the onset and severity of knock indicated that knock onset was highly correlated to engine speed, the knock intensity judged by MAPO and KI20 was accurate basically, and KI20 knock metric was better due to more pressure oscillations characteristics information contained. The comparison between experimental and calculated results indicated that the onset and intensity of knock can be characterized and quantified accurately with high-frequency pressure oscillations characteristics calculated with pressure wave equation.
机译:本文基于压力波方程,结合具有降低动力学机理的KIVA-3V燃烧规则,分析和讨论了在不同转速下SI发动机通过不同爆震指标识别出的爆震的发生和严重程度。计算结果表明,此处由压力振荡特性定义的爆震起始点与由热量释放定义的爆震起始点基本一致。同时,在较高的火焰传播速度阻止自燃的发生的高速区域中,爆震开始向后移动,因此,以爆震度量,MAPO和KI20为特征的爆震强度明显降低。呈现了可视化的3D计算结果,以显示火焰传播和压力振荡特性。最后,发动机转速与爆震起因和严重程度之间的相关性表明,爆震起因与发动机转速高度相关,由MAPO和KI20判断的爆震强度基本上是准确的,并且由于压力振荡特性信息更多,KI20的爆震指标更好包含。实验和计算结果的比较表明,利用由压力波方程计算出的高频压力振荡特性,可以准确地表征爆震的发生和强度。

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