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Suppressing Wind-Induced Oscillations of Prismatic Structures by Dynamic Vibration Absorbers

机译:通过动态振动吸收器抑制棱镜结构的棱柱振荡

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摘要

The suppression of oscillations of an elastically mounted prism under galloping by a dynamic vibration absorber (DVA) with linear damping and stiffness is investigated. A model considering the dynamic coupling of the prism and the DVA is constructed, with the aerodynamic loads acting on the system represented by a quasi-steady approximation. Based on the coupled nonlinear governing equations of motion, a linear analysis is first conducted to explore the coupled frequency and damping, and the onset speed of galloping in the presence of the DVA. Subsequently, the normal form of the Hopf bifurcation for the coupled system near the onset of galloping is derived to characterize the type of instability (supercritical or subcritical), while evaluating the effects of the DVA parameters. The results show that with appropriate parametric values, the DVA has great impact on the onset speed of galloping and can significantly alleviate the oscillation amplitude of the prism.
机译:研究了具有线性阻尼和刚度的动态减振和刚度的动态振动吸收器(DVA)下弹性安装棱镜的振动的抑制。 考虑棱镜和DVA的动态耦合的模型是构造的,具有作用在由准稳态近似的系统上的空气动力载荷。 基于运动的耦合非线性控制方程,首先进行线性分析以探索耦合频率和阻尼,以及在DVA的存在下疾驰的起始速度。 随后,推导出疾驰发作附近的耦合系统的跳频分叉的正常形式,以表征不稳定性(超临界或亚临界)的类型,同时评估DVA参数的效果。 结果表明,采用适当的参数值,DVA对起始速度产生很大影响,并且可以显着减轻棱镜的振幅振荡。

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