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Study of the mixture formation processes inside a modern direct-injection gasoline engine

机译:研究现代直喷汽油发动机内的混合物形成过程

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摘要

The combustion process inside a direct injection spark ignition engine with charge stratification is a very complex process with a large number of variables existing for the definition of the engine characterization map. In this work, two different tracer-based laser-induced fluorescence techniques were applied to analyse the charge motion during the mixing process. For two different operation points with and without a complex in-cylinder flowfield, the two-line excitation LIF technique was applied for temperature and residual gas fraction imaging, and the FARLIF technique for fuel/air ratio imaging. It was found that the mixing of air and residual gas was very fast, and hence no inhomogeneities were found at ignition time. For the mixture preparation process, the swirl makes it difficult to position the fuel vapour cloud near the spark plug at ignition. As a solution to overcome this, a double-injection strategy was applied. With careful parameter choice, depending on the second injection mass and timing, the desired charge situation could be achieved.
机译:具有充气分层的直喷式火花点火发动机内部的燃烧过程是一个非常复杂的过程,其中存在许多变量,用于定义发动机特征图。在这项工作中,两种不同的基于示踪剂的激光诱导荧光技术被应用于分析混合过程中的电荷运动。对于有和没有复杂缸内流场的两个不同操作点,两线激励LIF技术用于温度和残留气体分数成像,FARLIF技术用于燃料/空气比成像。发现空气和残留气体的混合非常快,因此在点火时未发现不均匀性。对于混合物的制备过程,涡旋使得难以在点火时将燃料蒸气云定位在火花塞附近。作为克服此问题的解决方案,应用了双重注入策略。通过仔细选择参数,取决于第二次喷射质量和时间,可以实现所需的充气情况。

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