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Large eddy simulation of turbulent combustion in a spark-assisted homogenous charge compression ignition engine

机译:火花辅助均质充量压燃式发动机湍流燃烧的大涡模拟

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摘要

A large eddy simuation (LES) model is presented for simulation of spark-assisted homogeneous charge compression ignition combustion. The model is based on tabulated chemical kinetic rate for ignition and flame surface density for flame propagation, taking into account interaction between flame propagation introduced by the spark and auto-ignition due to charge compression. The model is used to simulate the combustion process in an experimental HCCI engine, with operation conditions ranging from spark-ignition controlled flame propagation to auto-ignition controlled HCCI combustion. The model is shown to be able to predict the combustion behavior observed in previous engine experiments. With low initial temperature, the SI flame mode prevails; with high initial temperature, the HCCI mode prevails. With moderate initial temperature, the SI flame and HCCI ignition interact more closely, which results in higher sensitivity to the initial temperature and turbulence conditions. This may be the reason of the observed high cyclic variation in the experiments.
机译:提出了大涡模拟(LES)模型,用于模拟火花辅助均质充量压缩点火燃烧。该模型基于制表的燃烧化学动力学速率和火焰传播的火焰表面密度,并考虑了火花引入的火焰传播与由于电荷压缩而引起的自燃之间的相互作用。该模型用于模拟HCCI实验发动机的燃烧过程,其运行条件范围从火花点火控制的火焰传播到自动点火控制的HCCI燃烧。该模型显示出能够预测在先前发动机实验中观察到的燃烧行为。初始温度低时,SI火焰模式占优势。如果初始温度较高,则以HCCI模式为准。在适当的初始温度下,SI火焰和HCCI点火相互作用更加紧密,从而对初始温度和湍流条件具有更高的灵敏度。这可能是实验中观察到的高周期性变化的原因。

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