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Integrated flight dynamics and aeroelasticity of flexible aircraft with application to swept flying wings

机译:灵活飞机的综合飞行动力学和气动弹性,适用于扫掠飞翼

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摘要

© 2015, American Institute of Aeronautics and Astronautics Inc. All Rights Reserved.The dynamics of flexible, swept flying wing (SFW) aircraft are described by a set of nonlinear, multi-disciplinary equations of motion. Aircraft structures are modeled using a geometrically-exact composite beam model which can, in general, capture large dynamic deformations and the interaction between rigid-body and elastic degrees-of-freedom. In addition, an implementation of the unsteady vortex-lattice method capable of handling arbitrary kinematics is used to capture the unsteady, three-dimensional flow-field around the aircraft as it deforms. Linearization of this coupled nonlinear description, which can in general be around a nonlinear equilibrium, is performed to yield linear time-invariant state-space models. Verification of aeroelastic stability analyses using these models is carried out. Subsequently, a set of SFW models are developed and the dynamic stability characteristics of these aircraft are investigated for a range of flight velocities and vehicle parameters.
机译:©2015,美国航空航天学会。保留所有权利。柔性的扫掠飞行翼(SFW)飞机的动力学由一组非线性的,多学科的运动方程来描述。使用几何精确的复合梁模型对飞机结构进行建模,该模型通常可以捕获较大的动态变形以及刚体与弹性自由度之间的相互作用。另外,能够处理任意运动学的非定常涡旋格方法的实现方式用于捕获飞机变形时围绕飞机的非定常三维流场。进行这种耦合的非线性描述的线性化(通常可以围绕非线性平衡进行),以生成线性时不变状态空间模型。使用这些模型对空气弹性稳定性分析进行了验证。随后,开发了一套SFW模型,并针对一系列飞行速度和飞行器参数研究了这些飞机的动态稳定性特征。

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    Simpson RJS; Palacios R;

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