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Three-Way Catalyst Light-off During the NEDC Test Cycle: Fully Coupled 0D/1D Simulation of Gasoline Combustion, Pollutant Formation and Aftertreatment Systems

机译:NEDC测试循环期间的三元催化剂熄灭:汽油燃烧的完全耦合0d / 1d模拟,污染物形成和后处理系统

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The introduction of more stringent standards for engine emissions requires a steady development of engine control strategies in combination with efforts to optimize in-cylinder combustion and exhaust gas aftertreatment. With the goal of optimizing the overall emission performance this study presents the comprehensive simulation approach of a virtual vehicle model. A well-established 1D gas dynamics and engine simulation model is extended by four key features. These are models for combustion and pollutant production in the cylinder, a model for the conversion of pollutants in a catalyst and a model for the effect of manifold wall wetting and fuel evaporation. The general species transport feature is linking these models together as it allows transporting an arbitrary number of chemical species in the entire system. Finally this highly detailed engine model is integrated into a vehicle model.
机译:引入更严格的发动机排放标准需要稳定地开发发动机控制策略以及优化缸内燃烧和废气后处理的努力。通过优化整体排放性能的目标,本研究提出了虚拟车辆模型的综合模拟方法。建立了良好的1D气体动力学和发动机仿真模型由四个关键特征延伸。这些是燃烧和污染物在气缸中产生的模型,一种用于转化催化剂中污染物的模型以及歧管壁润湿和燃料蒸发的效果的模型。一般物种传输特征在于将这些模型连接在一起,因为它允许在整个系统中运输任意数量的化学物质。最后,这种高度详细的发动机模型集成到车型中。

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