Study on Application of Reinforcement Device to Provide Greater Dynamic Stability for Power Transmission Towers and its Effect

Kyeong-hyeon Yang, Choon-hee Bae, Nam-geun Jeong, Doo-young Kim, Sungmin Kim, Y. Jang
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Abstract

To verify that the friction damper used to high buildings as a kind of control technology of wind vibration can reduce dynamic behaviors of PTTs effectively, slip dampers in this paper are proposed to absorb the energy through relatively frictional movement of slip dampers applied to main post of a PTT (Power Transmission Tower) when dynamic displacement of a PTT occurs. The result of dynamic analysis is presented to determine the capacity of the damper system by controlling damping ratio on the resonance condition. It is observed that by installing slip dampers at a PTT the strain amplitudes of the main post caused by wind load are effectively reduced. Therefore it is shown that the proposed damper satisfies the strengthened wind-load design standards, and its efficacy was also validated experimentally by field testing.
提高输电塔动力稳定性的加固装置应用及效果研究
为了验证用于高层建筑的摩擦阻尼器作为一种风振控制技术能够有效地降低PTT的动力行为,本文提出了当PTT发生动力位移时,滑移阻尼器通过安装在PTT(输电塔)主柱上的滑移阻尼器的相对摩擦运动来吸收能量。给出了在共振条件下通过控制阻尼比来确定阻尼系统承载力的动态分析结果。结果表明,在PTT上安装滑移阻尼器可以有效地减小风荷载引起的主柱应变幅值。结果表明,该阻尼器满足强化风荷载设计标准,并通过现场试验验证了其有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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