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Analytical Study on Wind-induced Vibration of Transmission Line Systems in Mountainous Areas

机译:山区传输线系统风力振动的分析研究

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This paper describes a method for analyzing wind-induced vibrations of transmission towers coupled with power lines in mountainous areas. The time histories of wind speed acting on transmission line systems are simulated with the harmony superposition method. It discusses the mean displacements at towers' tip, the unbalanced tensions and uplift forces of towers which are in different elevations and wind directions. It also discusses the vibration frequency spectrums of tower. The numerical results show that the mean displacement at tower' tip and uplift force of tower which is at the top of mountain are maximal. However, the unbalanced tension of tower which is on the hillside is maximal. It is concluded that the displacement at tower's tip is mainly influenced by the vibration of wires. However, velocity and acceleration at tower's tip are mainly imposed by the primary frequency and first mode shape of tower.
机译:本文介绍了一种用于分析风力诱导的传动塔的振动,其悬挂在山区的电力线。用和谐叠加法模拟了在传输线系统上作用的风速的时间历史。它讨论了塔尖的平均位移,塔的不平衡张力和升降力,塔的塔在不同的高度和风向上。它还讨论了塔的振动频谱。数值结果表明,位于山顶的塔的尖端和隆起力的平均位移是最大的。然而,在山坡上的塔的不平衡张力是最大的。结论是,塔尖的位移主要受电线振动的影响。然而,塔尖的速度和加速度主要由塔的主要频率和第一模式形状施加。

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