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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >Prediction of knock onset and the autoignition site in spark-ignition engines
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Prediction of knock onset and the autoignition site in spark-ignition engines

机译:火花点火发动机爆震的发生和自燃点的预测

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摘要

A three-dimensional model of knock is developed to predict knock occurrence and the autoignition site in spark-ignition engines. A premixed turbulent combustion model, which falls within the flame area evolution category, and a flame wall quenching model are applied to simulate flame propagation. A reduced kinetic model is used to simulate autoignition in the unburned gas region. Engine experiments are performed to calibrate the reduced kinetic model and to verify the results of this modelling. A spark plug integrated pressure transducer and 11 ion probes are installed in the cylinder head to detect knock occurrences, flame arrival angles and autoignition sites. The model predictions show good agreement with the cylinder pressures, flame arrival angles, knock occurrences and autoignition site of the engine experiments with the variations in spark timing.
机译:建立了爆震的三维模型,以预测爆震发生和火花点火发动机中的自动点火位置。属于火焰区域演变类别的预混湍流燃烧模型和火焰壁淬火模型用于模拟火焰传播。简化的动力学模型用于模拟未燃气体区域的自燃。进行发动机实验以校准简化的动力学模型并验证该建模结果。气缸盖中安装了集成火花塞的压力传感器和11个离子探针,以检测爆震发生,火焰到达角度和自燃点。模型预测表明,与气缸压力,火焰到达角度,爆震发生和发动机实验的自燃点以及火花正时的变化具有很好的一致性。

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