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Cycle-to-Cycle Variations Based Unsteady Effects on Spray Combustion in Internal Combustion Engines by Using LES

机译:使用LES基于内燃机中喷射燃烧的循环到周期变化

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Cycle-to-cycle variations of combustion processes strongly affect the emissions, specific fuel consumption as well as work output. Especially Direct Injection Spark-Ignition (DISI) engines are very sensitive to cyclic fluctuations within the combustion chamber. Multi-cycle Large Eddy Simulation (LES) based analysis has been used for investigating unsteady effects of spray combustion processes and misfires. A realistic four-stroke DISI internal combustion engine configuration was taken under consideration. The effects of variable spray boundary conditions on spray combustion are discussed first. A qualitative analysis of the intensity of cycle-to-cycle variations of in-cylinder pressure is presented for various combinations of injection parameters and ignition points. Finally, the effect of ignition probability and analysis of misfires are pointed out. The described above processes were discussed in terms of mean and standard deviation of temperature, velocity and pressure.
机译:燃烧过程的循环变化强烈影响排放,特定的燃料消耗以及工作输出。特别是直接喷射火花点火(DISI)发动机对燃烧室内的循环波动非常敏感。基于多循环的大涡模拟(LES)的分析用于研究喷雾燃烧过程和失火的不稳定影响。考虑了一个现实的四冲程禁止内燃机配置。首先讨论了可变喷雾边界条件对喷雾燃烧的影响。针对注射参数和点火点的各种组合,提出了对缸内压力的周期到循环变化强度的定性分析。最后,指出了点火概率和错误分析的影响。以温度,速度和压力的平均值和标准偏差讨论上述方法。

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