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Aerodynamic optimization of civil aircraft with wing-mounted engine jet based on adjoint method

机译:基于伴随法的机翼喷气发动机民航飞机气动优化

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An engine jet simulation method based on the isentropic relations and sonic formula is developed to study the effect of engine jet on the aircraft exterior flowfield. The engine jet simulation method is integrated into the high-fidelity optimization framework aiming at aerodynamic optimization of the civil aircraft with wing-mounted engine. The 462 wing shape variables and 3 engine position variables of a typical long-range twin-aisle transport aircraft are chosen to investigate the integrated aerodynamic design of aircraft and powered engine. The results show that 2.7% drag reduction is achieved compared to the baseline configuration. The spanwise lift is close to elliptical distribution and the pressure recover is smoothed to weaken shock wave. The high suction peak on the lower wing surface around engine is removed, and the unfavorable coupling between engine and wing is decreased in the optimization process. Given these achievements, the developed method has the potential to be a useful tool in aerodynamic design problems with engine jet, such as the aft-mounted business jet, and the wing-mounted civil aircraft. (C) 2019 Elsevier Masson SAS. All rights reserved.
机译:提出了一种基于等熵关系和声波公式的发动机射流仿真方法,以研究发动机射流对飞机外部流场的影响。发动机射流仿真方法被集成到高保真优化框架中,旨在对带有机翼发动机的民用飞机进行空气动力学优化。选择典型的远程双通道运输飞机的462机翼形状变量和3个发动机位置变量来研究飞机和动力发动机的集成空气动力学设计。结果表明,与基线配置相比,阻力降低了2.7%。翼展方向升力接近椭圆形分布,并且压力恢复平滑以减弱冲击波。在优化过程中,消除了发动机下部机翼表面上的高吸力峰值,并减少了发动机与机翼之间的不利耦合。鉴于这些成就,开发的方法有可能成为解决发动机喷气机(例如后置公务机和机翼民用飞机)的空气动力学设计问题的有用工具。 (C)2019 Elsevier Masson SAS。版权所有。

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