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Evaluation of the flame propagation within an SI engine using flame imaging and LES

机译:使用火焰成像和LES评估SI发动机内的火焰传播

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This work shows experiments and simulations of the fired operation of a spark ignition engine with port-fuelled injection. The test rig considered is an optically accessible single cylinder engine specifically designed at TU Darmstadt for the detailed investigation of in-cylinder processes and model validation. The engine was operated under lean conditions using iso-octane as a substitute for gasoline. Experiments have been conducted to provide a sound database of the combustion process. A planar flame imaging technique has been applied within the swirl-and tumble-planes to provide statistical information on the combustion process to complement a pressure-based comparison between simulation and experiments. This data is then analysed and used to assess the large eddy simulation performed within this work. For the simulation, the engine code KIVA has been extended by the dynamically thickened flame model combined with chemistry reduction by means of pressure dependent tabulation. Sixty cycles have been simulated to perform a statistical evaluation. Based on a detailed comparison with the experimental data, a systematic study has been conducted to obtain insight into the most crucial modelling uncertainties.
机译:这项工作显示了与端口燃料喷射的火花点火发动机的射击操作的实验和模拟。测试钻机考虑是一种用于光学触及的单缸发动机,专门用于达摩斯塔特,用于详细研究气缸过程和模型验证。使用异辛烷作为汽油的替代品,发动机在贫条件下操作。已经进行了实验以提供燃烧过程的声音数据库。平面火焰成像技术已经应用于旋流和滚动平面内,以提供关于燃烧过程的统计信息,以补充模拟和实验之间的基于压力的比较。然后分析该数据并用于评估在该工作中执行的大型涡流模拟。对于仿真,发动机代码Kiva通过动态增厚的火焰模型通过压力依赖性标记与化学减少相结合延伸。已经模拟了六十周的循环以进行统计评估。基于与实验数据的详细比较,已经进行了系统研究,以获得对最重要的建模不确定性的洞察力。

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