Response of base-isolated liquid storage tanks

被引:65
作者
Jadhav, MB [1 ]
Jangid, RS [1 ]
机构
[1] Indian Inst Technol, Dept Civil Engn, Bombay 400076, Maharashtra, India
关键词
base isolation; liquid storage tank; elastomeric bearings; sliding system; approximate analysis; earthquake; system parameters;
D O I
10.1155/2004/276030
中图分类号
O42 [声学];
学科分类号
070206 ; 082403 ;
摘要
Seismic response of liquid storage tanks isolated by elastomeric bearings and sliding system is investigated under real earthquake ground motions. The continuous liquid mass of the tank is modeled as lumped masses known as sloshing mass, impulsive mass and rigid mass. The coupled differential equations of motion of the system are derived and solved in the incremental form using Newmark's step-by-step method with iterations. The seismic response of isolated tank is studied to investigate the comparative effectiveness of various isolation systems. A parametric study is also carried out to study the effect of important system parameters on the effectiveness of seismic isolation for liquid storage tanks. The various important parameters considered are: (i) aspect ratio of the tank and (ii) the time period of the isolation systems. It was observed that both elastomeric and sliding systems are found to be effective in reducing the earthquake forces of the liquid storage tanks. However, the elastomeric bearing with lead core is found to perform better in comparison to other systems. Further, an approximate model is proposed for evaluation of seismic response of base-isolated liquid storage tanks. A comparison of the seismic response evaluated by the proposed approximate method and an exact approach is made under different isolation systems and system parameters. It was observed that the proposed approximate analysis provides satisfactory response estimates of the base-isolated liquid storage tanks under earthquake excitation.
引用
收藏
页码:33 / 45
页数:13
相关论文
共 50 条
[31]   Parametric study of stochastic seismic responses of base-isolated liquid storage tanks under near-fault and far-fault ground motions [J].
Safari, Sina ;
Tarinejad, Reza .
JOURNAL OF VIBRATION AND CONTROL, 2018, 24 (24) :5747-5764
[32]   Parametric analysis of liquid storage tanks base isolated by curved surface sliding bearings [J].
Abali, Emre ;
Uckan, Eren .
SOIL DYNAMICS AND EARTHQUAKE ENGINEERING, 2010, 30 (1-2) :21-31
[33]   Pounding responses of a base-isolated liquid storage tank under bidirectional earthquakes [J].
Jing, Wei ;
Feng, Jie ;
Cheng, Xuansheng .
JOURNAL OF ASIAN ARCHITECTURE AND BUILDING ENGINEERING, 2024, 23 (01) :171-187
[34]   Seismic response of base-isolated structures during impact with adjacent structures [J].
Matsagar, VA ;
Jangid, RS .
ENGINEERING STRUCTURES, 2003, 25 (10) :1311-1323
[35]   Optimal design and seismic performance of base-isolated storage tanks using friction pendulum inerter systems [J].
Zhang, Li ;
Guo, Ming ;
li, Zhe ;
Zhu, Lijie ;
Meng, Yaolin .
STRUCTURES, 2022, 43 :234-248
[36]   Pounding Probability of Base-Isolated Steel Liquid Storage Tank Under Earthquake Actions [J].
Wei Jing ;
Jie Feng ;
Xuansheng Cheng .
Journal of Vibration Engineering & Technologies, 2021, 9 :1347-1357
[37]   Parametric Study of the Seismic Response of Base Isolated Liquid Storage Tanks with Lead-Core Elastomeric Bearings [J].
Yazici, G. .
ACTA PHYSICA POLONICA A, 2014, 125 (02) :382-384
[38]   Seismic Fragility of Fixed Base and Base Isolated Ground Supported Liquid Storage Tanks Considering Soil–Structure Interaction [J].
Kumar H. ;
Saha S.K. .
Journal of The Institution of Engineers (India): Series A, 2021, 102 (03) :829-839
[39]   Pounding Probability of Base-Isolated Steel Liquid Storage Tank Under Earthquake Actions [J].
Jing, Wei ;
Feng, Jie ;
Cheng, Xuansheng .
JOURNAL OF VIBRATION ENGINEERING & TECHNOLOGIES, 2021, 9 (06) :1347-1357
[40]   Seismic Response Mitigation of Base-Isolated Buildings [J].
Stanikzai, Mohammad Hamayoun ;
Elias, Said ;
Rupakhety, Rajesh .
APPLIED SCIENCES-BASEL, 2020, 10 (04)