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Cycle-by-cycle variations in spark ignition engine combustion - Part II: modeling of flame kernel displacements as a cause of cycle-by-cycle variations

机译:火花点火发动机燃烧中的循环逐循环变化。第二部分:火焰核心型位移的模型作为循环逐周期变化的原因

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A review of cycle-by-cycle variation in combustion and early flame histories is used to discuss the origins of cyclic variations in spark ignition engines. The hypothesis that cyclic variations are caused by the displacement of the flame kernel, is tested by means of a phenomenological turbulent entrainment combustion model. The model results are compared with experimental cycle-by-cycle combustion data, from a range of operating conditions that covers changes in: fuel, air fuel mixture, ignition timing and throttle setting. The combustion is characterized by the cycle-by-cycle variations in: the indicated mean effective pressure, the maximum pressure, the maximum rate of pressure rise, the burn rate and the flame speed. The model predicts correctly the effect of changes in the engine operating point on the cycle-by-cycle variations in combustion, and in many cases there is also good numerical agreement. This study concludes that displacement of the flame kernel during the early stages of combustion, has a major part in the origination of cycle-by-cycle variations in combustion.
机译:逐行燃烧和早期火焰历史中的逐周期变化述评用于讨论火花点火发动机的循环变化的起源。循环变化由火焰核的位移引起的假设通过现象学湍流夹带燃烧模型来测试。将模型结果与实验周期燃烧数据进行比较,从覆盖以下一系列操作条件:燃料,空气燃料混合物,点火正时和节气门设置。燃烧的特征在于:逐循环变化:指示的平均有效压力,最大压力,最大压力率,烧伤率和火焰速度。该模型可以正确预测发动机操作点在燃烧周期变化上的变化的影响,并且在许多情况下也有很好的数值协议。该研究得出结论,火焰核在燃烧早期阶段的位移,具有燃烧循环变化的主要部分。

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