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A NEW APPROACH TO REDUCE ENGINE-OUT EMISSIONS ENABLED BY TRAJECTORY-BASED COMBUSTION CONTROL

机译:一种新方法,减少基于轨迹的燃烧控制实现发动机排放的新方法

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Previously, the authors have proposed the concept of piston trajectory-based combustion control enabled by free piston engines (FPE). With this novel control method, the FPE realizes in-cycle real-time combustion control, in terms of adjusting the ignition timing and manipulating the in-cylinder temperature trace, through various piston trajectories and achieves higher thermal efficiency compared to the conventional internal combustion engines. In this paper, the effects of this new combustion control on engine-out emissions are studied. First, a model is developed that includes different piston trajectories in the FPE, a convective heat loss sub model and a reduced n-heptane reaction mechanism with major emissions species from diesel engines. Afterwards, a new approach which reduces the engine-out emissions by employing novel piston trajectories is described. At last, analyses of the simulation results demonstrating the variable piston trajectories' effects on CO and NO_x emissions are presented, which further reveal the advantages of the trajectory-based combustion control.
机译:此前,作者提出了由自由活塞发动机(FPE)启用的基于活塞轨迹的燃烧控制的概念。利用这种新型控制方法,根据调节点火正时和操纵缸内温度迹线,通过各种活塞轨迹来实现循环实时燃烧控制,与传统的内燃机相比,实现更高的热效率。本文研究了这种新的燃烧控制对发动机排放的影响。首先,开发一种模型,其包括FPE中的不同活塞轨迹,对流热损失子模型和具有来自柴油发动机的主要排放物种的二庚烷反应机理。之后,描述了一种通过采用新型活塞轨迹来减少发动机排放的新方法。最后,提出了展示了仿真结果的仿真结果,示出了可变活塞轨迹对CO和NO_X排放的影响,这进一步揭示了基于轨迹的燃烧控制的优点。

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