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Wind Tunnel Study on Wind-Induced Vibration Responses of a UHV Transmission Tower-Line System

机译:特高压输电塔线系统风致振动响应的风洞研究

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This paper presents an experimental investigation on the wind-induced vibration of a transmission tower-line system. A discrete stiffness method is applied to design the aero-elastic model on the basis of similarity theory. The dynamic characteristics of the single tower and the tower-line system are identified and the displacement responses at different positions are obtained under a variety of wind speeds. The mean and the RMS of the displacements as well as their spectra are discussed. Moreover, the test results and the codal specifications are compared in terms of the wind-induced vibration coefficient. The first natural frequency of the single tower is slightly larger than that of the tower-line system. But the damping ratio of the former is smaller than that of the latter, especially in the direction normal to the conductors. At the wind attack angle of 90°, the conductors significantly increase the longitudinal and lateral displacement RMS as well as the longitudinal mean displacement. And more complicated forms of vibration are aroused by the conductors, especially in the lateral direction. The wind-induced vibration coefficient show a notable rise at the position of cross arm, which cannot be characterized by Chinese code. Besides, the wind-induced vibration coefficient specified by the code is much smaller than test results thus the codal value seems to be unsafe for the UHV transmission tower.
机译:本文对输电塔线系统的风振进行了实验研究。在相似理论的基础上,采用离散刚度法设计气动弹性模型。识别了单塔和塔线系统的动态特性,并在各种风速下获得了不同位置的位移响应。讨论了位移的均值和均方根值及其频谱。此外,根据风致振动系数比较了测试结果和测试规范。单塔的第一固有频率略大于塔线系统的固有频率。但是,前者的阻尼比要小于后者,尤其是在垂直于导体的方向上。在90°的迎风角下,导线会显着增加纵向和横向位移RMS以及纵向平均位移。导体会引起更复杂的振动形式,尤其是在横向方向上。风振系数在横臂位置有明显的上升,这不能用中文代码来表征。此外,该规范规定的风致振动系数远小于测试结果,因此,对于超高压输电塔而言,该尾气值似乎是不安全的。

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