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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >Computational fluid dynamics study of the effects of the re-entrant lip shape and toroidal radii of piston bowl on a high-speed direct-injection diesel engine's performance and emissions
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Computational fluid dynamics study of the effects of the re-entrant lip shape and toroidal radii of piston bowl on a high-speed direct-injection diesel engine's performance and emissions

机译:计算流体动力学研究活塞碗的凹角形状和环形半径对高速直喷柴油机性能和排放的影响

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摘要

The piston bowl design is one of the most important factors that affect the air-fuel mixing and the subsequent combustion and pollutant formation processes in a direct-injection diesel engine. The bowl geometry and dimensions, such as the pip region, bowl lip area, and toroidal radius, are all known to have an effect on the in-cylinder mixing and combustion process. In order to understand better the effect of re-entrant geometry, three piston bowls with different toroidal radii and lip shapes were investigated using computational fluid dynamics engine modelling. KIVA3V with improved submodels was used to model the in-cylinder flows and combustion process, and it was validated on a high-speed direct-injection engine with a second-generation common-rail fuel injection system. The engine's performance, in-cylinder flow, and combustion, and emission characteristics were analysed at maximum power and maximum torque conditions and at part-load operating conditions. Three injector protrusions and injection timings were investigated at full-load and part-load conditions.
机译:活塞碗的设计是影响直接喷射柴油发动机中的空气燃料混合以及随后的燃烧和污染物形成过程的最重要因素之一。众所周知,转鼓的几何形状和尺寸(例如点子区域,转鼓唇缘面积和环形半径)都会影响缸内混合和燃烧过程。为了更好地理解凹腔几何形状的影响,使用计算流体力学引擎模型研究了三个具有不同环形半径和唇形的活塞碗。 KIVA3V具有改进的子模型,用于对缸内流动和燃烧过程进行建模,并且已在带有第二代共轨燃油喷射系统的高速直喷发动机上进行了验证。在最大功率和最大扭矩条件下以及部分负载工况下分析了发动机的性能,缸内流量,燃烧和排放特性。在满负荷和部分负荷条件下研究了三个喷射器的突出部分和喷射正时。

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