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Nonlinear Static Aeroelasticity of High Aspect Ratio Wing Aircraft by FEM and Multibody Methods

机译:高长宽比飞机机翼的非线性静气动弹性的有限元和多体方法

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摘要

Two procedures for the nonlinear static aeroelastic analysis of flexible high aspect ratio wing aircraft subject to geometric nonlinearities are developed. The two approaches are based on the nonlinear Finite Element Method and on multibody dynamics, and employ aerodynamic formulations based on Doublet Lattice Method and strip theory respectively. Static aeroelastic results in terms of wing integrated loads at various trim conditions for a very flexible aircraft test case are presented and compared to the linear ones. Significant differences are found between linear and nonlinear approaches and attention is drawn to the importance of the follower force effects of the aerodynamics and of considering large displacements and rotations, identified as the main sources of the discrepancies, for the static flight loads computation and subsequent structural sizing of the wing.
机译:提出了两种在几何非线性条件下对柔性高长宽比机翼飞机进行非线性静态气动弹性分析的程序。两种方法均基于非线性有限元法和多体动力学,并分别采用基于Doublet Lattice方法和条形理论的空气动力学公式。给出了在一个非常灵活的飞机测试用例中,在各种修整条件下机翼综合载荷方面的静态气动弹性结果,并将其与线性试验结果进行了比较。在线性方法和非线性方法之间发现了显着差异,并引起了人们的关注:空气动力学的追随者力效应的重要性,以及考虑到较大的位移和旋转,这被认为是差异的主要来源,用于静态飞行载荷计算和后续结构机翼尺寸。

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