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首页> 外文期刊>Journal of Fluids and Structures >Developing a reduced order model from structural kinematic measurements of a flexible finite span wing in stall flutter
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Developing a reduced order model from structural kinematic measurements of a flexible finite span wing in stall flutter

机译:在稳定扑腾中柔性有限跨度翼的结构运动测量的减少阶模型

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摘要

Experiments were conducted on a flexible, finite-span cyber-physical wing model in the wind tunnel to study the structural kinematics for a wing undergoing stall flutter. The wing model was designed to be weak in torsion and stiff in bending to exhibit stall flutter oscillations. The physical deformation of the wing surface was mapped at 38%, 58%, 78%, and 98% span using a stereo vision motion tracking system. From these measurements, the wing motion is decomposed and shown to consist of a principally torsional (pitching) oscillation consistent with the first mode for a cantilevered beam in free vibration. A two equation empirical model of the wing motion was then developed and compared to the measured stall flutter motion. (C) 2017 Elsevier Ltd. All rights reserved.
机译:在风洞中的柔性有限的网络物理翼模型进行实验,以研究磨损的翼翼的结构运动学。 机翼模型设计成弱扭转和弯曲件以表现出扭转颤动振荡。 使用立体视觉运动跟踪系统,翼面的物理变形以38%,58%,78%和98%的跨度映射。 从这些测量中,翼运动被分解并示出,该主要扭转(俯仰)振荡包括与在自由振动中的悬臂梁的第一模式一致。 然后开发了两个方程的翼运动经验模型,并与测量的失速颤动运动进行了比较。 (c)2017 Elsevier Ltd.保留所有权利。

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