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首页> 外文期刊>KSCE journal of civil engineering >Seismic performance evaluation of high voltage transmission towers in South Korea
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Seismic performance evaluation of high voltage transmission towers in South Korea

机译:韩国高压输电塔的抗震性能评估

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摘要

The electric power transmission network is a crucial lifeline in modern society, and it needs to be protected against extreme loading conditions such as in an earthquake. The seismic fragility curves of high voltage transmission towers in South Korea are developed based on the limit states that are defined in terms of yielding and buckling of the structural members of the towers. The finite element models of the representative transmission towers in South Korea are developed based on the assumption of linear elastic behavior, and a series of time history analyses are performed using a set of 20 recorded ground motions. The maximum likelihood estimation method is used to develop fragility curves from numerous simulations. It is concluded that the transmission towers are safe under a design level earthquake in South Korea. When a strong earthquake occurs, buckling of the members is more likely to occur before yielding in the axial direction in the case of the 765 kV and 345 kV transmission towers, while the opposite is observed for the 154 kV transmission tower.
机译:电力传输网络是现代社会中至关重要的生命线,需要保护其免受极端负载情况的影响,例如在地震中。韩国高压输电塔的地震易损性曲线是根据极限状态绘制的,极限状态根据电塔结构构件的屈服和屈曲定义。基于线性弹性行为的假设,开发了韩国代表性输电塔的有限元模型,并使用一组20个记录的地面运动进行了一系列时程分析。最大似然估计方法用于从众多模拟中得出脆性曲线。可以得出结论,在韩国进行设计级地震时,输电塔是安全的。当发生强地震时,对于765 kV和345 kV输电塔,构件在轴向屈服之前更容易发生屈曲,而对于154 kV输电塔则观察到相反的情况。

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