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Understanding the correlation between auto-ignition, heat release and knocking characteristics through optical engines with high compression ratio

机译:通过高压缩比的光学引擎了解自燃,放热和爆震特性之间的关系

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摘要

Improving compression ratio is an effective way to meet higher thermal efficiency and lower CO2 emissions for internal combustion engines. However, the severe thermodynamic condition under low speed and high road may promote the possibility of auto-ignition and damage engine body if it is uncontrollable. Therefore, further study on the correlation between auto-ignition and knocking characteristics are necessary for modern engines with high compression ratio. In this study, combined with high-speed direct photography and simultaneous pressure acquisition, flame images and in-cylinder pressures characterizing auto-ignition, heat release rate and knocking combustion were studied based on optical engine experiments. The results show that auto-ignition occurs in all engine cycles under current critical knocking conditions, and fast SI flame speed cycles is more likely to facilitate end-gas auto-ignition. However, the auto-ignition flame speed is comparable to the SI flame and auto-ignition is not a sufficient condition for knock: for some cycles multipoint auto-ignitions occur near the SI flame front and result in two peak heat release rate, which is beneficial to engine thermal efficiency. Further analysis shows that there is no obvious pertinence between knock intensity and auto-ignition onset while knock intensity strongly depends on the peak HRR per unit volume. High peak HRR per unit volume always results in knocking combustion. The current study shall give insights into utilizing auto-ignition in high compression ratio SI engines.
机译:改善压缩比是满足内燃机更高的热效率和更低的二氧化碳排放量的有效途径。但是,在无法控制的情况下,低速和高道路下的严酷热力学条件可能会增加自动点火的可能性,并损坏发动机机体。因此,对于具有高压缩比的现代发动机,有必要进一步研究自燃与爆震特性之间的相关性。在这项研究中,结合高速直接摄影和同时进行压力采集,基于光学引擎实验研究了表征自燃,放热率和爆震燃烧的火焰图像和缸内压力。结果表明,在当前的临界爆震条件下,所有发动机循环中都会发生自动点火,而快速的SI火焰速度循环更可能促进终端气体的自动点火。但是,自燃火焰的速度与SI火焰相当​​,并且自燃还不是爆震的充分条件:对于某些循环,SI火焰前沿附近会发生多点自燃,并导致两个峰值放热率,即有利于发动机的热效率。进一步的分析表明,爆震强度与自燃开始之间没有明显的相关性,而爆震强度很大程度上取决于每单位体积的峰值HRR。每单位体积的高峰值HRR总是导致爆震。当前的研究应提供在高压缩比SI发动机中利用自动点火的见识。

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