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    知识词典 论文期刊 地震工程与工程振动:英文版
A simplified fragility analysis of fan type cable stayed bridges地震工程与工程振动:英文版论文

 
【题名】:A simplified fragility analysis of fan type cable stayed bridges地震工程与工程振动:英文版论文(A simplified fragility analysis of fan type cable stayed bridgesDiZhenGongChengYuGongChengZhenDong:YingWenBanLunWen)
【关键词】:地震 成因分析 地层学 地球构造
【keywords】:DiZhen ChengYinFenXi DiCengXue DiQiuGouZao
【作者】:R.A.Khan,T.K.Datta,S.Ahmad,      【来源】: 知识词典
【期刊名称】:地震工程与工程振动:英文版(DiZhenGongChengYuGongChengZhenDong:YingWenBan)
【国际标准刊号】:1671-3664        【国内统一刊号】:23-1496
【作者单位】:[1]CivilEngineeringDepartment,JamiaMillialslamia,NewDelhi-25,lndia [2]CivilEngineeringDepartment,IndianInstituteofTechnology,NewDelhi-16,India [3]DepartmentofAppliedMechanics,IndianInstituteofTechnology,NewDelhi-16,India([1]CivilEngineeringDepartment,JamiaMillialslamia,NewDelhi-25,lndia [2]CivilEngineeringDepartment,IndianInstituteofTechnology,NewDelhi-16,India [3]DepartmentofAppliedMechanics,IndianInstituteofTechnology,NewDelhi-16,India)
【分类号】:P315.2      【页码】:-83-94      【出版年】:2005.1
【下载地址】:下载pdf全文
        A simplified fragility analysis of fan type cable stayed bridges using Probabilistic Risk Analysis (PRA) procedure is presented for determining their failure probability under random ground motion. Seismic input to the bridge support is considered to be a risk consistent response spectrum which is obtained from a separate analysis. For the response analysis, the bridge deck is modeled as a beam supported on springs at different points. The stiffnesses of the springs are determined by a separate 2D static analysis of cable-tower-deck system. The analysis provides a coupled stiffness matrix for the spring system. A continuum method of analysis using dynamic stiffness is used to determine the dynamic properties of the bridges .The response of the bridge deck is obtained by the response spectrum method of analysis as applied to multidegree of freedom system which duly takes into account the quasi - static component of bridge deck vibration. The fragility analysis includes uncertainties arising due to the variation in ground motion, material property, modeling, method of analysis, ductility factor and damage concentration effect. Probability of failure of the bridge deck is determined by the First Order Second Moment (FOSM) method of reliability. A three span double plane symmetrical fan type cable stayed bridge of total span 689 m, is used as an illustrative example. The fragility curves for the bridge deck failure are obtained under a number of parametric variations. Some of the important conclusions of the study indicate that (i) not only vertical component but also the horizontal component of ground motion has considerable effect on the probability of failure; (ii) ground motion with no time lag between support excitations provides a smaller probability of failure as compared to ground motion with very large time lag between support excitation; and (iii) probability of failure may considerably increase for soft soil condition.

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