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Aerodynamic damping model in vortex-induced vibrations for wind engineering applications

机译:涡旋诱导风力工程应用振动空气动力学阻尼模型

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The paper addresses the modelling of aeroelastic forces in vortex-induced vibrations (VIV) and aims to provide a suitable model to predict cross-wind oscillations of circular structures. The Van der Pol and Rayleigh oscillators - non-linear physical systems, which attain limit cycles under self-induced vibrations - are often applied in literature to describe the aeroelastic force. Among VIV models, the paper focuses on the model developed by Vickery and Basu (1983). In the paper, the quadrature component of the force as a function of the oscillation amplitude in lock-in is investigated through forced-vibration wind tunnel experiments on a circular cylinder. In presence of aeroelastic interaction, the positive quadrature component corresponds to energy transferred to the structure, which then acts as negative aerodynamic damping. The experiments reveal an amplitude-dependent behaviour of the aerodynamic damping with positive curvature. The experimental curve can be applied as modification of the Vickery and Basu model and used to predict the oscillation of circular structures under vortex-excitation. In the paper, it is applied to the response of a cantilever beam. The prediction is validated through free-vibration wind tunnel experiments. The consistency of results is promising.
机译:本文解决了涡旋诱导的振动(VIV)中的空气弹力的建模,并旨在提供合适的模型来预测圆形结构的横向风振荡。 van der POL和瑞利振荡器 - 非线性物理系统,在自诱导的振动下获得极限循环 - 通常在文献中应用以描述空气弹力。在VIV模型中,该文件侧重于Vickery和Basu(1983)开发的模型。在本文中,通过在圆筒上的强制振动风隧道实验研究了作为锁定中的振动幅度的函数的力的正交分量。在空气弹性相互作用的存在下,正交成分对应于转移到结构的能量,然后作为负空气动力学阻尼。实验揭示了阳性曲率的空气动力学阻尼的幅度依赖性行为。实验曲线可以应用于VICKERY和BASU模型的改进,并用于预测涡旋激励下的圆形结构的振荡。在本文中,它应用于悬臂梁的响应。通过自由振动风洞实验验证预测。结果的一致性是有前途的。

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