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Numerical Simulation Analysis into Effects of Piston Bowl Geometry on Combustion Process for a High Power Density Diesel Engine

机译:活塞碗几何对高功率密度柴油发动机燃烧过程的数值模拟分析

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Piston bowl geometry has important effects on diesel engine combustion. Especially for a high power density engine, much more fuel requires to burn across the cylinder in a short period after the top dead centre (TDC). Therefore the piston bowl geometry plays a critical role for the air/fuel mixing process and the combustion process. In this paper, a 3-D in-cylinder combustion modeling was carried out for a high power density engine. The ω type of bowl shape was described by seven independent parameters. Five of them are conducted to investigate their effects on the combustion process. The results show that the bowl diameter has significant effects on combustion both in the pre-mixing combustion period and in the diffusion combustion period. There exists an optimized bowl diameter value to obtain a highest indicated power. The re-entrant angle has an important effect on pre-mixing combustion and there also exists an optimized value to reach a highest indicated power. The bottom concave arc radius has significant effects on premixing combustion but has little effects on the diffusion combustion. The smaller concave arc radius gives higher indicated power. The central depth and the bottom convex arc radius have noticeable effects on pre-mixing combustion, but have little effects on the diffusion combustion.
机译:活塞碗几何形状对柴油发动机燃烧具有重要影响。特别是对于高功率密度发动机,在顶部死亡中心(TDC)之后的短时间内,更加燃料需要在圆柱体上燃烧。因此,活塞碗几何形状对空气/燃料混合过程和燃烧过程起着关键作用。本文对高功率密度发动机进行了3-D缸内燃烧建模。仪表形状的ω类型由七个独立参数描述。其中五项进行了调查它们对燃烧过程的影响。结果表明,碗直径在预混合燃烧时段和扩散燃烧时段中对燃烧具有显着影响。存在优化的碗直径值,以获得最高指示的功率。再参赛角对预混合燃烧具有重要作用,并且还存在优化的值以达到最高指示的功率。底部凹入弧半径对预混合燃烧具有显着影响,但对扩散燃烧几乎没有影响。较小的凹入电弧半径可提供更高的指示功率。中央深度和底部凸弧半径对预混合燃烧具有显着的影响,但对扩散燃烧几乎没有影响。

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