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On the modeling and analysis of a vibration absorber for overhead powerlines with multiple resonant frequencies

机译:具有多个谐振频率的架空电力线减振器的建模与分析

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Stockbridge dampers are primarily used to suppress or reduce Aeolian vibrations of transmission lines. The number of resonant frequencies characterizes the effectiveness of the Stockbridge damper. Aeolian vibrations refers to the vibration of conductor cables in the range of 3-150 Hz. Unlike the primitive Stockbridge damper which has only two resonant frequencies, the asymmetric Stockbridge damper exhibits up to four resonant frequencies. The numerical simulations and parametric studies conducted previously showed a correlation between the increase of natural frequencies and the change in the geometry of the counterweight. This paper presents an analytical model of a novel Aeolian vibration damper with an increased number of resonant frequencies. The analytical model is used to deduce the resonant frequencies of the damper. A 3D finite element model is developed to validate the analytical model. The natural frequencies and the subsequent mode shapes of both analytical and finite element models are presented. Experiment is conducted to validate the proposed models.
机译:Stockbridge阻尼器主要用于抑制或减少传输线的风振。共振频率的数量表征了Stockbridge阻尼器的有效性。风振是指导体电缆在3-150 Hz范围内的振动。与原始的斯托克布里奇阻尼器只有两个谐振频率不同,不对称的斯托克布里奇阻尼器具有多达四个谐振频率。先前进行的数值模拟和参数研究表明,固有频率的增加与配重的几何形状变化之间存在相关性。本文提出了一种具有增加的共振频率的新型风振减振器的分析模型。分析模型用于推导阻尼器的共振频率。开发了3D有限元模型来验证分析模型。给出了解析模型和有限元模型的固有频率和随后的模态。进行实验以验证所提出的模型。

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