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BURN-RATE AND KNOCK REDUCTION IN THE SPARK IGNITION ENGINE

机译:火花点火发动机的燃烧率和爆震减少

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摘要

The dependence of knock on combustion chamber shape is investigated. Knock originating from the spark plug's ignition of the air-fuel charge ('spark knock') is assumed. Four general parameters that influence knock are isolated. Examination of the parameters reveal that manipulation of the burn history is favoured in curbing knock. By utilizing an existing model of knock, it was shown that slightly larger pressures and temperatures can be applied to an air-fuel charge for shorter times without knock. This explains the well-known observation that reducing the burn time in a spark ignition (SI) engine decreases the end-gas's propensity to knock. It was also shown that the increase in end-gas pressure and temperature associated with a higher burn rate is insufficient to re-introduce knock. Results for the engine data examined indicate that for a pressure trace at the onset of knock (reference trace), a twofold reduction in burn time can allow the combustion pressure to be scaled up by about 23% without knock occurring
机译:研究了爆震对燃烧室形状的依赖性。假定爆震源于火花塞点燃的空气燃料(“爆震爆震”)。隔离了影响爆震的四个通用参数。对参数的检查表明,燃烧历史的控制在抑制爆震方面是有利的。通过利用现有的爆震模型,表明可以在较短的时间内将较大的压力和温度施加到空气燃料充气中,而不会发生爆震。这解释了众所周知的观察结果,即减少火花点火(SI)发动机的燃烧时间会降低终端气体的爆震倾向。还显示出与较高燃烧速率相关的最终气体压力和温度的升高不足以重新引入爆震。检查的发动机数据结果表明,对于爆震开始时的压力曲线(参考曲线),燃烧时间的两倍减少可以使燃烧压力按比例增加约23%,而不会发生爆震

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