气动弹性
结构工程
直升机旋翼
振动
扭转(腹足类)
颤振
情态动词
工程类
非线性系统
偏移量(计算机科学)
叶片单元动量理论
叶片单元理论
跨音速
涡轮叶片
转子(电动)
计算机科学
空气动力学
物理
机械工程
航空航天工程
材料科学
声学
涡轮机
医学
外科
量子力学
高分子化学
程序设计语言
作者
Donatien Cornette,Benjamin Kerdreux,Guilhem Michon,Yves Gourinat
出处
期刊:Journal of Computational and Nonlinear Dynamics
[ASME International]
日期:2014-05-20
卷期号:10 (6)
被引量:3
摘要
The dynamic loads transmitted from the rotor to the airframe are responsible for vibrations, discomfort and alternate stress on components. A new and promising way to minimize vibration is to reduce dynamic loads at their source by performing an aeroelastic optimization of the rotor. This optimization uses couplings between the flapwise-bending motion and the torsion motion. The impacts of elastic couplings (composite anisotropy) and inertial couplings (center-of-gravity offset) on blade dynamic behavior and on dynamic loads are evaluated in this paper. First, analytical results, based on a purely linear modal approach, are given to understand the influence of these couplings on blade dynamic behavior. Then, a complete nonlinear aeroelastic model of the rotor, including elastic and inertial couplings, is derived. Finally, this last model is used to improve a simplified but representative blade (homogeneous beam with constant chord) and results are presented.
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