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Large-Eddy Simulation and experimental study of cycle-to-cycle variations of stable and unstable operating points in a spark ignition engine

机译:火花点火发动机稳定和不稳定工作点逐周期变化的大涡模拟和实验研究

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摘要

This article presents a comparison between experiments and Large-Eddy Simulation (LES) of a spark ignition engine on two operating points: a stable one characterized by low cycle-to-cycle variations (CCV) and an unstable one with high CCV. In order to match the experimental cycle sample, 75 full cycles (with combustion) are computed by LES. LES results are compared with experiments by means of pressure signals in the intake and exhaust ducts, in-cylinder pressure, chemiluminescence and OH Planar Laser Induced Fluorescence (PLIF). Results show that LES is able to: (1) reproduce the flame behavior in both cases (low and high CCV) in terms of position, shape and timing; (2) distinguish a stable point from an unstable one; (3) predict quantitatively the CCV levels of the two fired operating points. For the unstable case, part of the observed CCV is due to incomplete combustion. The results are then used to analyze the incomplete combustion phenomenon which occurs for some cycles of the unstable point and propose modification of the spark location to control CCV.
机译:本文介绍了火花点火发动机的实验与大涡模拟(LES)在两个工作点之间的比较:一个稳定的特征(具有低的循环间变化(CCV))和一个不稳定的具有高CCV。为了匹配实验循环样本,LES计算了75个完整循环(燃烧)。通过进气道和排气道中的压力信号,缸内压力,化学发光和OH平面激光诱导荧光(PLIF),将LES结果与实验进行了比较。结果表明,LES能够:(1)在位置,形状和时间方面再现两种情况下(低CCV和高CCV)的火焰行为; (2)区分稳定点和不稳定点; (3)定量预测两个点火操作点的CCV水平。对于不稳定的情况,观察到的CCV的一部分归因于不完全燃烧。然后将结果用于分析不稳定点某些循环中发生的不完全燃烧现象,并提出修改火花位置以控制CCV的方法。

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