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樊剑,龙晓鸿,赵军.计算近场地震作用下隔震结构支座破坏易损性曲线的概率凸集混合模型[J].计算力学学报,2014,31(2):199~204
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计算近场地震作用下隔震结构支座破坏易损性曲线的概率凸集混合模型
A hybrid probabilistic and convex model for caculating the vulnerability curve of the failure of isolation bearing under near-fault earthquake ground motion
投稿时间:2012-09-18  修订日期:2012-12-05
DOI:10.7511/jslx201402010
中文关键词:  隔震结构  近场地震  易损性曲线  支座破坏  凸集
英文关键词:base-isolated structure  near-fault earthquake ground motion  vulnerability curve  bearing failure  convex model
基金项目:国家自然科学基金(51078166,51278213);中央高校基本科研业务费专项(2012TS006)资助项目.
作者单位E-mail
樊剑 华中科技大学 土木工程与力学学院, 武汉 430074
华中科技大学 控制结构湖北省重点实验室, 武汉 430074 
fan-jian@126.com 
龙晓鸿 华中科技大学 土木工程与力学学院, 武汉 430074  
赵军 华中科技大学 土木工程与力学学院, 武汉 430074  
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中文摘要:
      用凸集模型模拟隔震结构参数的不确定性,而用随机模型模拟地震动输入的不确定性,提出了计算近场地震作用下在考虑双不确定性因素时隔震结构支座发生破坏的易损性曲线计算新方法;计算结果将给隔震支座力学参数的设计提供参考;通过计算对比可知,若不考虑结构参数不确定性将低估隔震支座破坏的地震易损性;对计算实例中基底最大位移敏感度分析发现,隔震支座的力学参数(如屈服力、屈服后刚度等)对基底最大位移影响较大,上部结构质量的影响次之,而上部结构的刚度对其影响不大;此外,本文的研究内容也为考虑结构参数和输入地震动双不确定性因素的情况下,计算各类结构地震易损性曲线提供了一种新的思路和途径。
英文摘要:
      Uncertain parameters of base-isolated structure are described as convex model and uncertain earthquake ground motions are described as probabilistic model,a new method for calculating vulnerability curve of the failure of isolation bearing under near-fault earthquake ground motions is presented.The results of the calculation provide reference for the choice of the isolator's mechanical parameters;From calculation and comparison it can been seen that if the uncertainty of structural parameters aren't considered,the earthquake vulnerability of the failure of isolation bearing would been underestimated;According to the sensitivity analysis of the maximum base displacement,the mechanical parameters of the isolation bearing have great influence on the maximum base displacement followed by the mass of super-structure and the influence of the stiffness of superstructure is small.In addition,the study contents in the dissertation provide a new idea and approach to calculate the earthquake vulnerability curve of various structures,considering the uncertainty of structural parameters and earthquake ground motions simultaneously.
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