Seismic fragility of base-isolated water storage tanks under non-stationary earthquakes

被引:0
作者
Sandip Kumar Saha
Vasant A. Matsagar
Arvind K. Jain
机构
[1] Indian Institute of Technology (IIT) Delhi,Department of Civil Engineering
来源
Bulletin of Earthquake Engineering | 2016年 / 14卷
关键词
Base-isolated; Earthquake; Fragility; Isolation; Lead-rubber bearing; Monte Carlo simulation; Tank; Uncertainty;
D O I
暂无
中图分类号
学科分类号
摘要
Seismic fragility curves for fixed-base and base-isolated liquid storage tanks are developed under non-stationary earthquakes, and their seismic performance are compared. The correlation between different earthquake intensity measure (IM) parameters and peak response quantities of the base-isolated liquid storage tanks are investigated. The failure criteria are chosen based on (1) the elastic buckling strength of the tank wall, which is defined in terms of critical base shear and critical overturning moment, and (2) in terms of the critical isolation displacement. The uncertainty involved is considered in the earthquake characteristics. Non-stationary earthquake ground motions are generated using Monte Carlo (MC) simulation. Influence of the isolator characteristic parameters and modeling approaches on the seismic fragility of the base-isolated liquid storage tanks is also investigated. Peak ground acceleration is found to be the well correlated IM parameter with the peak response quantities of the base-isolated liquid storage tanks. Substantial decrease in the seismic fragility of the base-isolated liquid storage tanks is observed as compared to the fixed-base tanks. Significant influence of the isolator characteristic parameters on the seismic fragility of the base-isolated liquid storage tanks are reported in the present study.
引用
收藏
页码:1153 / 1175
页数:22
相关论文
共 80 条
[1]  
Buckle IG(1990)Seismic isolation: history, application, and performance: a world view Earthq Spectra 6 161-202
[2]  
Mayes RL(2004)Seismic fragility of typical bridges in moderate seismic zones Eng Struct 26 187-199
[3]  
Choi E(1990)Teflon bearings in base isolation. Part 2: modeling J Struct Eng (ASCE) 116 455-474
[4]  
DesRoches R(2013)Equivalent linear stochastic seismic analysis of cylindrical base-isolated liquid storage tanks J Constr Steel Res 83 166-176
[5]  
Nielson B(2004)Seismic base isolation: an overview Curr Sci 87 1426-1430
[6]  
Constantinou MC(2006)Reliability analysis of randomly vibrating structures with parameter uncertainties J Sound Vib 297 1000-1024
[7]  
Mokha AM(1983)Behavior of unanchored oil storage tanks: imperial Valley earthquake J Tech Topics Civ Eng (ASCE) 109 23-40
[8]  
Reinhorn AM(1983)Vibration studies and tests of liquid storage tanks Earthq Eng Struct Dynam 11 179-206
[9]  
Curadelli O(1981)Earthquake response of deformable liquid storage tanks J Appl Mech (ASME) 48 411-418
[10]  
Deb SK(2008)Recent advances in nonlinear passive vibration isolators J Sound Vib 314 371-452