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Reduced-Order Aeroelastic Models for Dynamics of Maneuvering Flexible Aircraft

机译:机动柔性飞机动力学的降阶气弹模型

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摘要

This paper investigates the model reduction, using balanced realizations, of the unsteady aerodynamics of maneuvering flexible aircraft. The aeroelastic response of the vehicle, which may be subject to large wing deformations at trimmed flight, is captured by coupling a displacement-based flexible-body dynamics formulation with an aerodynamic model based on the unsteady vortex lattice method. Consistent linearization of the aeroelastic problem allows the projection of the structural degrees of freedom on a few vibration modes of the unconstrained vehicle but preserves all couplings between the rigid and elastic motions and permits the vehicle flight dynamics to have arbitrarily large angular velocities. The high-order aerodynamic system, which defines the mapping between the small number of generalized coordinates and unsteady aerodynamic loads, is then reduced using the balanced truncation method. Numerical studies on a representative high-altitude, long-endurance aircraft show a very substantial reduction in model size, by up to three orders of magnitude, that leads to model orders (and computational cost) similar to those in conventional frequency-based methods but with higher modeling fidelity to compute maneuver and gust loads. Closed-loop results for a cantilever wing finally demonstrate the application of this approach in the synthesis of a robust stability augmentation system.
机译:本文使用平衡实现方法研究机动柔性飞机非定常空气动力学模型的简化。通过将基于位移的柔性体动力学公式与基于非定常涡流点阵法的空气动力学模型耦合,可以捕获可能在修剪飞行时机翼变形较大的车辆的空气弹性响应。气动弹性问题的一致线性化允许将结构自由度投影在不受约束的车辆的几种振动模式上,但保留了刚性运动和弹性运动之间的所有耦合,并允许车辆飞行动力学具有任意大的角速度。然后,使用平衡截断法来减少定义了少量广义坐标与不稳定空气载荷之间的映射的高阶空气动力学系统。对具有代表性的高空,长寿命飞机的数值研究表明,模型尺寸显着减小了多达三个数量级,这导致模型阶数(和计算成本)与传统基于频率的方法相似,但是具有更高的建模逼真度,可以计算机动和阵风载荷。悬臂机翼的闭环结果最终证明了该方法在鲁棒稳定性增强系统合成中的应用。

著录项

  • 来源
    《AIAA Journal》 |2014年第8期|1717-1732|共16页
  • 作者

    Henrik Hesse; Rafael Palacios;

  • 作者单位

    Imperial College, London, England SW7 2AZ, United Kingdom,Department of Aeronautics;

    Imperial College, London, England SW7 2AZ, United Kingdom,Department of Aeronautics;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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