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首页> 外文期刊>Earthquake and structures: An International journal of earthquake engineering & earthquake effects on structures >Collapse simulations of a long span transmission tower-line system subjected to near-fault ground motions
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Collapse simulations of a long span transmission tower-line system subjected to near-fault ground motions

机译:长跨度传输塔线系统的折叠模拟近故障地面运动

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摘要

Observations from past strong earthquakes revealed that near-fault ground motions could lead to the failure, or even collapse of electricity transmission towers which are vital components of an overhead electric power delivery system. For assessing the performance and robustness, a high-fidelity three-dimension finite element model of a long span transmission tower-line system is established with the consideration of geometric nonlinearity and material nonlinearity. In the numerical model, the Tian-Ma-Qu material model is utilized to capture the nonlinear behaviours of structural members, and the cumulative damage D is defined as an index to identify the failure of members. Consequently, incremental dynamic analyses (IDAs) are conducted to study the collapse fragility, damage positions, collapse margin ratio (CMR) and dynamic robustness of the transmission towers by using twenty near-fault ground motions selected from PEER. Based on the bending and shear deformation of structures, the collapse mechanism of electricity transmission towers subjected to Chi-Chi earthquake is investigated. This research can serve as a reference for the performance of large span transmission tower line system subjected to near-fault ground motions.
机译:过去强烈地震的观察显示,近断层地面运动可能导致失败,甚至是作为架空电力输送系统的重要组成部分的电力传动塔的故障。为了评估性能和鲁棒性,通过考虑几何非线性和材料非线性,建立了长跨度传输塔线系统的高保真三维有限元模型。在数值模型中,利用Tian-MA-Qu材料模型来捕获结构构件的非线性行为,累积损伤D被定义为识别成员故障的索引。因此,通过使用从对等中选择的二十个接近故障接地运动来研究增量动态分析(IDA)以研究崩溃脆性,损坏位置,损坏边缘比(CMR)和传动塔的动态鲁棒性。基于结构的弯曲和剪切变形,研究了经受赤驰地震的电力传动塔的塌陷机构。该研究可以作为对近故障地面运动进行大跨度传输塔线系统的性能的参考。

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