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FLIGHT LOADS PREDICTION OF HIGH ASPECT RATIO WING AIRCRAFT USING MULTIBODY DYNAMICS

机译:使用多体动力学的高纵横比翼飞机的飞行负荷预测

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A framework based on multibody dynamics has been developed for the static and dynamic aeroelastic analyses of flexible high aspect ratio wing aircraft subject to structural geometric nonlinearities. Multibody dynamics allows kinematic nonlinearities and nonlinear relationships in the forces definition and is an efficient and promising methodology to model high aspect ratio wings, which are known to be prone to structural nonlinear effects because of the high deflections in flight. The multibody dynamics framework developed employs quasi-steady aerodynamics strip theory and discretizes the wing as a series of rigid bodies interconnected by beam elements, representative of the stiffness distribution, which can undergo arbitrarily large displacements and rotations. The method is applied to a flexible high aspect ratio wing commercial aircraft and both trim and gust response analyses are performed in order to calculate flight loads. These results are then compared to those obtained with the standard linear aeroelastic approach provided by the Finite Element solver Nastran. Nonlinear effects come into play mainly because of the need of taking into account the large deflections of the wing for flight loads computation and of considering the aerodynamic forces as follower forces.
机译:已经开发了一种基于多体动力学的框架,用于柔性高纵横比翼飞机受到结构几何非线性的静态和动态空气弹性分析。多体动力学允许力定义中的运动非线性和非线性关系,并且是模拟高纵横比翅膀的有效和有希望的方法,这已知由于飞行中的高偏转而易于构造非线性效应。开发的多体动力学框架采用准稳态空气动力学条形理论,并将机翼离散地作为由梁元件互连的一系列刚体,其代表刚度分布,其可以经过任意大的位移和旋转。该方法应用于柔性高纵横比翼商用飞机,并且进行修整和阵风响应分析以计算飞行负荷。然后将这些结果与由有限元求解器Nastran提供的标准线性空气弹性方法获得的结果进行比较。非线性效应主要是因为需要考虑机翼的大偏转,并且考虑到从动力的空气动力。

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