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Optimum design of viscoelastic dynamic neutralizers for overhead transmission lines: distributed excitation model

机译:架空输电线路粘弹性动态中和器的优化设计:分布式激励模型

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It is well known that overhead transmission lines are particularly prone to aeolian excitations. Because of those excitations and of their own characteristics, the lines may work in resonance, with high vibration amplitudes, which could lead to fatigue. To increase the life time of those structures, dynamic neutralizers are used. The dynamic neutralizers used nowadays are extremely efficacious at some discrete frequencies, but very disappointing away from those, still within the frequency range of concern. The employment of viscoelastic dynamic neutralizers aims to control the vibrations in a wide frequency band, due to the large damping usually introduced by viscoelastic materials. In this work, a fresh methodology to optimally design a system of viscoelastic dynamic neutralizers is proposed, regarding the excitation as distributed along the line, which simulates the real action of the wind. Results based on numerical simulations over a 30 m long experimental line are presented.
机译:众所周知,架空传输线特别容易发生风成因。由于这些激励和它们自身的特性,这些线可能会以高振动幅度共振地工作,这可能会导致疲劳。为了增加这些结构的使用寿命,使用了动态中和器。如今使用的动态中和器在某些离散频率下极为有效,但仍然令人担忧,但仍处于令人关注的频率范围内。粘弹性动态中和器的使用旨在控制宽频带的振动,因为粘弹性材料通常会引入较大的阻尼。在这项工作中,针对沿线分布的激励,提出了一种优化设计粘弹性动态中和器系统的新方法,该方法模拟了风的真实作用。给出了基于30 m长实验线上数值模拟的结果。

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