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地震动空间变化对高压输电塔线体系地震反应的影响
引用本文:田利,李宏男,王文明.地震动空间变化对高压输电塔线体系地震反应的影响[J].振动与冲击,2013,32(8):79-87.
作者姓名:田利  李宏男  王文明
作者单位:1.山东大学土建与水利学院,山东 济南 250061;2. 大连理工大学建设工程学部,辽宁 大连 116024
基金项目:国家自然科学基金(51208285),国家自然科学基金重点项目(50638010);中国博士后科学基金(2012M521338);山东大学自主创新基金(2011GN051)
摘    要:通过数值模拟研究了地震动空间变化对高压输电塔线体系地震反应的影响。建立了输电塔线耦联体系三维有限元模型,考虑了输电线的几何非线性特征;在考虑地震动的行波效应、部分相干效应和局部场地效应以及多维性基础上,依据功率谱密度函数、相干函数和《电力设施抗震设计规范》模拟了空间变化地震动时程;分别研究了地震动空间变化的行波效应、部分相干效应和局部场地效应对输电塔线体系地震反应的影响。研究结果表明,地震动空间变化对输电塔线体系地震反应影响显著,忽略这些因素将会低估结构的反应。因此对于输电线路实际工程的抗震设计,需要考虑地震动空间变化效应的影响。

关 键 词:地震动空间变化  高压输电塔-线体系  行波效应  部分相干效应  局部场地效应  
收稿时间:2012-2-8
修稿时间:2012-5-10

GROUND MOTION SPATIAL VARIATION EFFECTS ON SEISMIC RESPONSE OF POWER TRANSMISSION TOWER-LINE SYSTEM
TIAN Li,LI Hong-nan,WANG Wen-ming.GROUND MOTION SPATIAL VARIATION EFFECTS ON SEISMIC RESPONSE OF POWER TRANSMISSION TOWER-LINE SYSTEM[J].Journal of Vibration and Shock,2013,32(8):79-87.
Authors:TIAN Li  LI Hong-nan  WANG Wen-ming
Affiliation:1. School of Civil and Hydraulic Engineering, Shandong University, Jinan, 250061, Shandong Province, China; 2. Faculty of Infrastructure Engineering, Dalian University of Technology, Dalian, 116024, Liaoning Province, China
Abstract:In this paper, ground motion spatial variation effects on seismic response of power transmission tower-line system are studied by numerical simulation. A three-dimensional finite element model of transmission tower-line coupled system considering the geometric nonlinearity of transmission line is established. Based on wave passage effect, coherency loss effect, different local site effect and multi-dimensional nature of ground motion, spatially varying ground motion time histories are simulated according to power spectral density function, coherency loss function and Code for Design of Seismic of Electrical Installations. The effects of wave passage effect, coherency loss effect and different local site effect on seismic response of transmission tower-line system are investigated, respectively. The results show that ground motion spatial variation effects have significant influence on the seismic response of transmission tower-line system, and neglecting these effects will underestimate the response of structure. Ground motion spatial variation effects should be considered in seismic design of transmission line practical engineering.
Keywords:ground motion spatial variation                                                      power transmission tower-line system                                                      wave passage effect                                                      coherency loss effect                                                      different local site effect
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