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CFD Modeling of Gas Exchange, Fuel-Air Mixing and Combustion in Gasoline Direct-Injection Engines

机译:汽油直喷发动机燃气交换,燃料 - 空气混合和燃烧的CFD建模

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Gasoline, direct injection engines represent one of the most widely adopted powertrain for passenger cars. However, further development efforts are necessary to meet the future fuel consumption and emission standards imposing an efficiency increase and a reduction of particulate matter emissions. Within this context, computational fluid dynamics is nowadays a consolidated tool to support engine design; this work is focused on the development of a set of CFD models for the prediction of combustion in modern GDI engines. The one-equation Weller model coupled with a zero-dimensional approach to handle initial flame kernel growth was applied to predict flame propagation. To account for mixture fraction fluctuations which might lead to the presence of soot precursor species, burned gas chemical composition is computed using tabulated kinetics with a presumed probability density function. Assessment of the combustion model was done with experimental data of flame radius evolution at different operating conditions. Afterwards, simulations were carried out for a turbocharged gasoline, direct-injection engine with a variable valve actuation. Different operating points were considered including variations of speed and load: a detailed comparison was performed between computed and experimental data of in-cylinder pressure and apparent heat release rate.
机译:汽油,直喷发动机代表乘用车最广泛采用的动力总成之一。然而,需要进一步的发展努力,以满足未来的燃料消耗和排放标准,施加效率增加和降低颗粒物质排放。在这种情况下,表现出计算流体动力学是一种综合工具来支持发动机设计;这项工作专注于开发一套CFD模型,用于预测现代GDI发动机中的燃烧。耦合与零维方法来处理初始火焰内核生长的单位播放模型被应用于预测火焰传播。为了考虑可能导致烟灰前体种类存在的混合物的波动,使用制表的动力学计算燃烧的气体化学组合物,具有假定的概率密度函数。通过不同操作条件下的火焰半径演化的实验数据进行了燃烧模型的评估。然后,为涡轮增压汽油,具有可变阀致动的直喷发动机进行仿真。考虑不同的操作点包括速度和载荷的变化:在缸内压力和表观热释放率的计算和实验数据之间进行详细比较。

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