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Aeroelastic Analysis and Optimization of High-aspect-ratio Composite Forward-swept Wings

机译:高纵横比复合前掠翼的气动弹性分析与优化

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摘要

In order to analyze the effects of forward-swept angle and skin ply-orientation on the static and dynamic aeroelastic characteristics, the aeroelastic modeling and calculation for high-aspect-ratio composite wings with different forward-swept angles and skin ply-orientation are performed. This paper presents the results of a design study aiming to optimize wings with typical forward-swept angles and skin ply-orientation in an aeroelastic way by using the genetic/sensitivity-based hybrid algorithm. Under the conditions of satiated multiple constraints including strength, displacements, divergence speeds and flutter speeds, the studies are carried out in a bid to minimize the structural weight of a wing with the lay-up thicknesses of wing components as design variables. In addition, the effects of the power of span-wise variation function of lay-up thicknesses of skins and lugs on the optimized weights are also analyzed.
机译:为了分析前掠角和蒙皮取向对静态和动态气动弹性特性的影响,对不同前掠角和蒙皮取向的高纵横比复合机翼进行了气动弹性建模和计算。 。本文介绍了一项设计研究的结果,该研究旨在通过使用基于遗传/敏感度的混合算法,以气动弹性方式优化具有典型前掠角和蒙皮取向的机翼。在满足包括强度,位移,发散速度和扑动速度在内的多重约束的条件下,进行研究以使机翼的结构重量最小化,而机翼部件的叠置厚度是设计变量。另外,还分析了表皮和凸耳的叠置厚度的跨度方向变化函数的功效对优化权重的影响。

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