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The effect of stiffness and geometric parameters on the nonlinear aeroelastic performance of high aspect ratio wings

机译:刚度和几何参数对高长宽比机翼非线性气动弹性性能的影响

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摘要

The increase in wing aspect ratio is gaining interest among aircraft designers in conventional and joined-wing configurations due to the higher lift-to-drag ratios and longer ranges. However, current transport aircraft have relatively small aspect ratios due their increased structural stiffness. The more flexible the wing is more prone to higher deflections under the same operating condition, which may result in a geometrical nonlinear behavior. This nonlinear effect can lead to the occurrence of aeroelastic instabilities such as flutter sooner than in an equivalent stiffer wing. In this work, the effect of important stiffness (inertia ratio and torsional stiffness) and geometric (sweep and dihedral angles) design parameters on aeroelastic performance of a rectangular high aspect ratio wing model is assessed. The torsional stiffness was observed to present a higher influence on the flutter speed than the inertia ratio. Here, the decrease of the inertia ratio and the increase of the torsional stiffness results in higher flutter and divergence speeds. With respect to the geometric parameters, it was observed that neither the sweep angle nor the dihedral angle variations caused a substantial influence on the flutter speed, which is mainly supported by the resulting smaller variations in torsion and bending stiffness due to the geometric changes.
机译:由于更高的升阻比和更长的航程,机翼纵横比的增加在常规和联合机翼配置中引起了飞机设计者的关注。然而,当前的运输飞机由于其增加的结构刚度而具有相对较小的纵横比。在相同的工作条件下,机翼越灵活,挠度越大,这可能导致几何非线性行为。这种非线性效应会导致气动弹性不稳定性(如颤振)的发生比同等刚度的机翼更快。在这项工作中,评估了重要的刚度(惯性比和扭转刚度)和几何(扫掠角和二面角)设计参数对矩形高纵横比机翼模型的气动弹性性能的影响。与惯性比相比,观察到扭转刚度对颤振速度的影响更大。在此,惯性比的减小和扭转刚度的增大导致更高的颤动和发散速度。关于几何参数,观察到后掠角和二面角变化均未对扑动速度产生实质性影响,这主要由由于几何变化而导致的较小的扭转和弯曲刚度变化所支持。

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