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Auto-ignited kernels during knocking combustion in a spark-ignition engine

机译:在火花点火发动机中爆震燃烧过程中的自动点燃核

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In this study, auto-ignition of end-gas due to flame propagation and intensity oscillations caused by Shockwaves that occur during knocking combustion were visualized in a compression-expansion engine using a high-speed video camera Chemical luminescence emissions of the end-gas were detected to analyze the chemical reactions caused by the auto-ignition. Four main conclusions were drawn from this study. When the end-gas region was compressed due to the propagating flame front, auto-ignited kernels appeared near a negative curvature of the flame front This negative curvature was related to low-temperature chemistry. The large amount of unburned mixture generated a strong pressure wave caused by the auto-ignited kernels explosion. Visualized images of a regular propagating flame front and auto-ignited kernels confirmed that the knocking intensity had a strong relationship with the mass fraction of the unburned mixture. Oscillations of OH* radicals were synchronized with the in-cylinder pressure oscillations, which were produced due to the resulting Shockwave, Before auto-ignition of the end-gas occurred, weak OH* radicals and very weak HCHO* radicals appeared in the end-gas region due to low-temperatuie chemistry. The OH* radicals played an important role in the low-temperature kinetic reactions. This confirms low-temperature chemical reaction of auto-ignited kernel in the end gas region, OH* radicals are a good indicator of the transition from low-temperature chemistry to high-temperature auto-ignition.
机译:在本研究中,由于爆震燃烧期间发生的火焰传播和强度振荡引起的末端气体的自动点火在压缩 - 膨胀发动机中使用最终气体的高速摄像机化学发光排放来了解在压缩 - 膨胀发动机中。检测到分析由自动点火引起的化学反应。从这项研究中得出了四个主要结论。当由于传播火焰前沿而被压缩时,在火焰前沿的负曲率附近出现自动点火核,这种负曲率与低温化学有关。大量的未燃烧混合物产生由自动点燃的核爆炸引起的强烈的压力波。经常传播火焰前部和自动点火核的可视化图像证实,爆震强度与未燃烧混合物的质量分数具有强烈的关系。 OH的振动*基团用缸内压力振荡,这是由于产生的所产生的冲击波同步,最终气体的自动点火之前发生,弱OH *自由基和非常弱的HCHO *基团出现在最终由于低温化学而导致的气体区域。 OH *基团在低温动力学反应中发挥了重要作用。这证实了在最终气体区域中自燃核的低温化学反应,OH *自由基是从低温化学到高温自动点火的过渡的良好指标。

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