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地震动的频谱特性和持时对结构地震反应的影响研究及其现状
引用本文:陈亮,章劲松.地震动的频谱特性和持时对结构地震反应的影响研究及其现状[J].四川建筑科学研究,2011,37(6):157-159.
作者姓名:陈亮  章劲松
作者单位:1. 合肥工业大学土木与水利工程学院,安徽合肥,230009
2. 安徽交通职业技术学院土木工程系,安徽合肥,230051
基金项目:安徽省交通科技进步计划项目(200907001);安徽省教学研究项目(2008jxym597)
摘    要:多年来,国内外地震工程界存在着一个严重缺陷,即地震学与结构抗震两者之间缺乏联系.随着基于性能的地震工程学(PBEE)的出现以及不断发展,地震学的重要性日益凸显.在结构抗震设计和分析中,强震地面运动特性的变异性对于结构地震需求的影响最大,其主要可以用幅值、频谱特性和持时3个基本要素来表示.震害经验表明,各类结构的震害表现为这3个基本要素综合影响的结果.因此,通过研究强震地面运动特性对于结构地震需求的影响,将地震工程学与结构抗震有机地结合起来是一个必然的发展趋势.

关 键 词:桥梁工程  基于性能的地震工程学  结构地震反应  强震地面运动  频谱  持时

A state-of-the-art review on the research on effects of frequency content and duration of earthquake ground motions on structural seismic response
CHEN Liang , ZHANG Jinsong.A state-of-the-art review on the research on effects of frequency content and duration of earthquake ground motions on structural seismic response[J].Building Science Research of Sichuan,2011,37(6):157-159.
Authors:CHEN Liang  ZHANG Jinsong
Affiliation:(1.School of Civil Engineering,Hefei University of Technology,Hefei 230009,China; 2.Department of Civil Engineering,Anhui Communications Vocational and Technical College,Hefei 230051,China)
Abstract:The lack of a relationship between seismology and seismic resistance of structures has been a serious disadvantage in domestic and foreign earthquake engineering community over the years.Seismology is becoming more important than before with the appearance and development of performance-based earthquake engineering(PBEE).The uncertainties of earthquake ground motions,especially amplitude,frequency content and duration,are the most important factors which can influence structural seismic demands.Previous seismic disasters have shown that the comprehensive effect of three essential characteristics dramatically effected collapse and failure of all kinds of structures.Earthquake engineering and seismic resistance of structures can be combined through the research on the influence of characteristics of earthquake ground motions on structural seismic demands.
Keywords:bridge engineering  performance-based earthquake engineering  structural seismic response  earthquake ground motion  frequency content  duration
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