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A Parametric Study of Nonlinear Seismic Response Analysis of Transmission Line Structures

机译:传输线结构非线性地震响应分析的参数研究

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摘要

A parametric study of nonlinear seismic response analysis of transmission line structures subjected to earthquake loading is studied in this paper. The transmission lines are modeled by cable element which accounts for the nonlinearity of the cable based on a real project. Nonuniform ground motions are generated using a stochastic approach based on random vibration analysis. The effects of multicomponent ground motions, correlations among multicomponent ground motions, wave travel, coherency loss, and local site on the responses of the cables are investigated using nonlinear time history analysis method, respectively. The results show the multicomponent seismic excitations should be considered, but the correlations among multicomponent ground motions could be neglected. The wave passage effect has a significant influence on the responses of the cables. The change of the degree of coherency loss has little influence on the response of the cables, but the responses of the cables are affected significantly by the effect of coherency loss. The responses of the cables change little with the degree of the difference of site condition changing. The effect of multicomponent ground motions, wave passage, coherency loss, and local site should be considered for the seismic design of the transmission line structures.
机译:本文研究了地震作用下输电线路结构的非线性地震反应分析。传输线由电缆元素建模,电缆元素基于实际项目考虑了电缆的非线性。使用基于随机振动分析的随机方法生成不均匀的地面运动。利用非线性时程分析方法分别研究了多分量地震动,多分量地震动之间的相关性,波传播,相干损耗和局部位置对电缆响应的影响。结果表明,应考虑多分量地震激励,但可以忽略多分量地震动之间的相关性。波浪通过效应对电缆的响应有重大影响。相干损耗程度的变化对电缆的响应影响很小,但是电缆的响应会受到相干损耗影响的显着影响。电缆的响应随现场条件变化程度的不同而变化很小。传输线结构的抗震设计应考虑多分量地面运动,波通过,相干损失和局部位置的影响。

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