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Recent achievements in numerical simulation for aircraft power-plant configurations

机译:飞机动力装置配置数值模拟的最新成果

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The engine/airframe integration design is one key differentiating factor for making efficient transport aircraft and this topic will become more important for future aircraft as the turbofan engine diameter is increased leading to a stronger engine-airframe interaction. Hopefully, the capabilities of advanced numerical simulations allow the involved complex phenomena to be taken into account and this is illustrated in this paper through several research studies: the use of the Reynolds averaged Navier-Stokes equations together with the drag extraction techniques to predict the drag, the simulation of unsteady complex interaction between the jet and the pylon with the zonal detached eddy simulation method, the pylon and nacelle design through inulti disciplinary optimisation and the flow control technologies.
机译:发动机/机身集成设计是制造高效运输机的关键因素之一,随着涡轮风扇发动机直径的增加,导致发动机与机身之间的相互作用更强,这一主题对于未来的飞机将变得更加重要。希望先进的数值模拟功能能够考虑到所涉及的复杂现象,本文通过多项研究对此进行了说明:使用雷诺平均Navier-Stokes方程以及阻力提取技术来预测阻力,使用区域分离涡流模拟方法模拟射流与塔架之间的非稳态复杂相互作用,通过最后的学科优化和流量控制技术对塔架和机舱进行设计。

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  • 来源
    《The Aeronautical Journal》 |2013年第1188期|213-231|共19页
  • 作者单位

    Onera -The French Aerospace Lab Meudon, France;

    Onera -The French Aerospace Lab Meudon, France;

    Onera -The French Aerospace Lab Meudon, France;

    Onera -The French Aerospace Lab Meudon, France;

    Onera -The French Aerospace Lab Meudon, France;

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