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Visualization of gasoline and exhaust gases distribution in a 4-valve SI engine; effects of stratification on combustion and pollutants

机译:在4阀Si发动机中可视化汽油和废气分布;分层对燃烧和污染物的影响

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An indirect method to map the burned gases in an SI engine has been developed. It is based on visualization by Laser Induced Fluorescence of the unburned mixture seeded with biacetyl. Both internally and externally recirculated burned gases are monitored. This diagnostic is complementary to the LIF technique applied to measure the gasoline distribution. These LIF gasoline and burned gases measurements are applied in a 4-valve optical access SI engine for a large range of operating conditions. These include variations of both fuel injection and burned gas recirculation modes causing different types of stratification leading to very distinct heat release and exhaust emissions characteristics. Tumble level and spark location are also modified. The observation of the actual stratification in the engine forms a sound basis explanation of the engine performance. Parameters allowing an optimization of NO_x and HC levels can be inferred, and in particular the effectiveness of recirculation and fuel injection strategies. The conclusions are confirmed by measurements in a single-engine cylinder conventional head with the same geometry.
机译:已经开发了一种映射SI发动机中燃烧的气体的间接方法。它基于激光诱导的未燃烧混合物的激光诱导荧光的可视化。监测内部和外部再循环的燃烧气体。该诊断与应用于测量汽油分布的LIF技术互补。这些生命汽油和燃烧的气体测量施加在4瓣光学接入Si发动机中,用于大量的操作条件。这些包括燃料喷射和燃烧的气体再循环模式的变化,导致不同类型的分层,导致非常明显的热释放和废气排放特性。还修改了滚筒水平和火花位置。观察发动机的实际分层形成了发动机性能的声音基础解释。可以推断出允许优化NO_X和HC水平的参数,特别是再循环和燃料喷射策略的有效性。通过具有相同几何形状的单引擎气缸传统头部的测量来确认结论。

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