Semi-active stiffness dampers for seismic control of structures

被引:8
作者
Kori, Jagadish G. [1 ]
Jangid, R. S. [1 ]
机构
[1] Indian Inst Technol, Dept Civil Engn, Bombay 400076, Maharashtra, India
关键词
structural control; semi-active control; variable stiffness damper; control algorithms; earthquake; OF-THE-ART; RESPONSE CONTROL; ISOLATED BUILDINGS; CONTROL-SYSTEMS;
D O I
10.1260/136943307782417744
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
This paper describes the application of semi-active variable stiffness damper (SAVSD) for response control of the seismically excited structure. The SAVSD consists of hydraulic damper connected in the form of bracing in a selected story of frame structure. The SAVSD changes its stiffness depending upon the structural response and accordingly adds the control forces in the structural system. In this paper, the comparative study and the performance of SAVSD under different ratios of damper stiffness to structural story stiffness is presented. The specific objective of this study is to evaluate the optimum value of damper stiffness ratio and its importance in structural response reduction. The optimum stiffness ratio is investigated for the structure subjected to four different types of earthquake ground motions. Here, the switching control law and newly proposed modified switching control law are used and the results are compared with uncontrolled and passive control cases. A numerical study is performed on five and ten-story shear building with different configurations of damper placement. The numerically evaluated optimum parametric values are considered for the analysis of the optimum damper placement in the structure. It is revealed that, the proposed modified switching control law is very effective in reducing the story displacements and inter-story drifts without increasing the top floor accelerations. The numerical results of various analyses indicate that SAVSD shows better performance over the passive dampers in reducing the structural responses.
引用
收藏
页码:501 / 524
页数:24
相关论文
共 17 条
[1]   Applications of some semiactive control systems to benchmark cable-stayed bridge [J].
Agrawal, AK ;
Yang, JN ;
He, WL .
JOURNAL OF STRUCTURAL ENGINEERING, 2003, 129 (07) :884-894
[2]   Study of a semi-active stiffness damper under various earthquake inputs [J].
Djajakesukma, SL ;
Samali, B ;
Nguyen, H .
EARTHQUAKE ENGINEERING & STRUCTURAL DYNAMICS, 2002, 31 (10) :1757-1776
[3]  
He W.L., 2001, J BRIDGE ENG, V6, P376, DOI DOI 10.1061/(ASCE)1084-0702(2001)6:6(376)
[4]   SEISMIC RESPONSE CONTROLLED STRUCTURE WITH ACTIVE VARIABLE STIFFNESS SYSTEM [J].
KOBORI, T ;
TAKAHASHI, M ;
NASU, T ;
NIWA, N ;
OGASAWARA, K .
EARTHQUAKE ENGINEERING & STRUCTURAL DYNAMICS, 1993, 22 (11) :925-941
[5]   Seismic response control of smart sliding isolated buildings using variable stiffness systems: An experimental and numerical study [J].
Nagarajaiah, S ;
Sahasrabudhe, S .
EARTHQUAKE ENGINEERING & STRUCTURAL DYNAMICS, 2006, 35 (02) :177-197
[6]   Short time Fourier transform algorithm for wind response control of buildings with variable stiffness TMD [J].
Nagarajaiah, S ;
Varadarajan, N .
ENGINEERING STRUCTURES, 2005, 27 (03) :431-441
[7]  
Nagarajaiah S., 1998, P 2 WORLD C STRUCTUR, V1, P397
[8]   A STFT semiactive controller for base isolated buildings with variable stiffness isolation systems [J].
Narasimhan, S ;
Nagarajaiah, S .
ENGINEERING STRUCTURES, 2005, 27 (04) :514-523
[9]   Active variable stiffness system with non-resonant control [J].
Nasu, T ;
Kobori, T ;
Takahashi, M ;
Niwa, N ;
Ogasawara, K .
EARTHQUAKE ENGINEERING & STRUCTURAL DYNAMICS, 2001, 30 (11) :1597-1614
[10]  
RAMARATNAM A, 2006, J SOUND VIBRATION, V291, P285