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Methods to Reduce End Gas Temperatures for Lower Knocking Sensitivity – A Simulation Study

机译:降低低爆震敏感性最终气温的方法 - 一种模拟研究

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Downsizing of gasoline engines by forced induction faces limitations of the engine speed range of maximum torque by irregular combustion, such as knock and/or pre-ignition. Reducing the end gas temperature can slow-down precursor reactions, thereby reducing the likelihood of undesired autoignition of mixture, and hence enable a further increase of mean effective pressure or compression ratio. While charge dilution e.g. by cooled EGR is one possible path toward this target, this paper focuses on methods that can be combined with EGR but also enable knock and fuel economy benefits it applied without. At the given example of a small gasoline engine, different measures will be analyzed and compared by engine process simulation: 1) Miller Cycle with early and with late intake valve closure 2) Turbo-cooling and 3) Controlled compression ratio using variable connecting rod length These technologies have effects on turbocharger matching and knock control. The different measures will be discussed and compared with regards to fuel economy and full load characteristics.
机译:通过强制诱导汽油发动机的缩小尺寸面向不规则燃烧的最大扭矩的发动机速度范围的限制,例如爆震和/或预点火。减少最终气体温度可以减缓前体反应,从而减少了不希望的混合物自燃的可能性,因此能够进一步增加平均有效的压力或压缩比。虽然电荷稀释时。通过冷却的EGR是一个可能的朝向该目标的路径,本文重点介绍了可以与EGR结合的方法,但也能够实现其施加的爆震和燃油经济性。在给定的小型汽油发动机的例子中,通过发动机过程模拟:1)米勒循环与早期和后期进气门闭合2)涡轮冷却和3)控制压缩比使用可变连接杆长度的不同措施这些技术对涡轮增压器匹配和爆震控制具有影响。将讨论各种措施,并与燃料经济性和满载特性进行比较。

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