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Liquid Fuel Impingement on the Piston Bowl of a Direct-Injection, Spark-Ignited (DISI) Engine Under Stratified Operation

机译:液体燃料冲击在分层操作下直接喷射,火花点燃(DISI)发动机的活塞碗上

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The behavior of the liquid fuel impinging on the piston top of a direct-injected, spark-ignited (DISI) engine operating under stratified conditions is investigated using floodlight laser-induced fluorescence (LIF). The combustion chamber geometry offers wall-guided stratification using a high-pressure injector impinging on an inclined piston bowl. The LIF signal is collected through the bottom of the quartz piston, allowing observation of the footprint of the spray during and after spray development. Nitrogen gas is used to replace air in order to minimize oxygen quenching and increase the signal. The results show that at typical piston top temperatures expected in warmed-up operation (150-180°C), a liquid film and ring around the area where the fuel jet impinges is present through the time of spark (20° before top center). The presence of the fuel film is not very sensitive to the surface temperature.
机译:采用泛光灯激光诱导的荧光(LiF)研究撞击在分层条件下的直接注射的火花点燃(DISI)发动机的活塞顶部的液体燃料的行为。燃烧室几何形状使用撞击倾斜的活塞碗的高压喷射器提供壁引导分层。通过石英活塞的底部收集LIF信号,允许在喷雾发育期间和之后观察喷雾的占地面积。氮气用于更换空气以最小化氧气淬火并增加信号。结果表明,在预热操作(150-180°C)中预期的典型活塞顶部温度下,液体膜和环绕燃料射流冲击的区域,通过火花(顶部中心20°20°) 。燃料膜的存在对表面温度不是非常敏感。

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