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INTERACTION OF FLAME PROPAGATION AND PRESSURE WAVES DURING KNOCKING COMBUSTION IN SPARK-IGNITION ENGINES

机译:火花点火发动机燃烧过程中火焰传播和压力波的相互作用

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摘要

Knocking combustion in spark-ignition (SI) engines is a typical abnormal combustion phenomenon that severely limits engine performance and thermal efficiency. However, its mechanism has not so far been completely revealed, such as the origin of pressure oscillation with tremendous amplitude and broken mechanisms of the engine body when knock occurs. This article systematically reviews the series of physical and chemical phenomena involved in knocking combustion, including auto-ignition, gas-dynamic waves, cavity resonance, and auto-ignited flame propagation. Significant research has shown that the rapid heat release of end-gas auto-ignition and subsequent strong pressure waves play a crucial role during knocking combustion. A methodology of the interaction of flame propagation and pressure waves has been proposed to reveal knock formation in terms of positive feedback between strengthened pressure waves and auto-ignited flame propagation. Also, new suggestions on the weakness in prior research of knocking combustion have also been discussed in the present article.
机译:火花点火(SI)发动机的爆燃是典型的异常燃烧现象,严重限制了发动机性能和热效率。然而,到目前为止,它的机理还没有被完全揭示出来,例如,当发生爆震时,巨大幅度的压力振荡的起因以及发动机机体的断裂。本文系统地回顾了爆震中涉及的一系列物理和化学现象,包括自燃,气体动力学波,腔共振和自燃火焰传播。大量研究表明,终端气体自燃的快速放热以及随后产生的强烈压力波在爆燃过程中起着至关重要的作用。已经提出了一种火焰传播与压力波相互作用的方法,以根据加强的压力波与自燃火焰传播之间的正反馈揭示爆震的形成。此外,本文还讨论了有关爆震燃烧现有研究中的弱点的新建议。

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