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CFD-Based research on control strategy of the opening of Active Grille Shutter on automobile

机译:基于CFD的汽车主动式格栅百叶窗打开控制策略研究

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Active Grille Shutter is a very promising technology to improve the performance and fuel economy of automotive engines. The engine room temperature and the automobile aerodynamic resistance should both been considered when controlling the opening of the Active Grille Shutter. A very complete geometric model was built for exterior of an automobile and interior of its engine room at a scale of 1:1 with different openings of the Active Grille Shutter. An aerodynamic drag coefficient variation curve at different grille openings was obtained through simulation analysis, which coincided with the actual aerodynamic drag coefficient. Research was made on the Active Grille Shutter opening control strategy based on computational fluid dynamics method and with radiator's heat dissipating capacity and the automobile aerodynamic drag coefficient as the evaluation parameters. The Active Grille Shutter opening control strategy was obtained, which guarantees that the automobile aerodynamic resistance is the lowest at different travel speeds, and the engine room temperature is within the optimal range.
机译:主动式格栅百叶窗是提高汽车发动机性能和燃油经济性的非常有前途的技术。控制主动式格栅百叶窗的打开时,应同时考虑发动机室温度和汽车的空气动力阻力。为汽车的外部及其引擎室的内部建立了一个非常完整的几何模型,比例为1:1,并具有主动格栅百叶窗的不同开口。通过仿真分析得到了不同格栅开口处的空气阻力系数变化曲线,与实际的空气阻力系数相吻合。基于计算流体动力学方法,以散热器的散热能力和汽车气动阻力系数为评估参数,对主动格栅百叶窗的打开控制策略进行了研究。获得了主动格栅百叶窗的打开控制策略,该策略确保了在不同行驶速度下汽车的空气动力阻力最低,并且发动机室温度处于最佳范围内。

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