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Stability and Open-Loop Dynamics of Very Flexible Aircraft Including Free-Wake Effects

机译:包含自由尾迹效应的非常柔性飞机的稳定性和开环动力学

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摘要

The paper investigates the coupled nonlinear aeroelasticity and flight mechanics of very flexible lightweight aircraft. A geometrically-exact composite beam formulation is used to model the nonlinear flexible-body dynamics, including rigid-body motions. The aerodynamics are modeled by a general 3-D unsteady vortex-lattice method, which can capture the instantaneous shape of the lifting surfaces and the free wake, including large displacements and interference effects. The coupled governing equations are solved in a variety of ways, allowing linear and nonlinear time-domain simulations of the full vehicle and frequency-domain linear stability analysis around trimmed configurations. The resulting framework for the Simulation of High-Aspect Ratio Planes (SHARP) provides a medium-fidelity representation of flexible aircraft dynamics, based on an intuitive and easily linearizable structural representation using displacements and the Cartesian rotation vector, time-domain aerodynamics, and at relatively low computational costs. Previous verification studies on the structural dynamics and aerodynamics modules are complemented here with studies on the flexible-body implementation and on the integrated simulation methodology. A numerical investigation is finally presented on a representative high-altitude long-endurance model aircraft, investigating its stability properties and its open-loop dynamic response. Copyright © 2011 by Joseba Murua, Henrik Hesse, RafaelPalacios and Michael Graham.
机译:本文研究了非常灵活的轻型飞机的非线性气动弹性和飞行力学的耦合。几何精确的复合梁公式用于对非线性刚体动力学(包括刚体运动)建模。空气动力学是通过一般的3-D非定常涡旋网格方法建模的,该方法可以捕获升力表面的瞬时形状和自由尾迹,包括大位移和干扰效应。可以通过多种方式求解耦合的控制方程,从而可以对整车进行线性和非线性时域仿真,并可以在调整后的配置周围进行频域线性稳定性分析。由此产生的高长宽比平面模拟(SHARP)框架基于使用位移和笛卡尔旋转矢量,时域空气动力学以及直角坐标的直观且易于线性化的结构表示,提供了灵活的飞机动力学的中等逼真度表示。相对较低的计算成本。在此,对结构动力学和空气动力学模块的先前验证研究在此辅以有关柔性体实现和集成仿真方法的研究。最后,对具有代表性的高空长寿命模型飞机进行了数值研究,研究了其稳定性和开环动态响应。版权所有©2011,Joseba Murua,Henrik Hesse,RafaelPalacios和Michael Graham。

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