On Seismic Response Reduction of Adjacent Frame: Emphasis on the Different Characteristics of Earthquakes

被引:3
作者
Abbaszadeh, Mohammad Amin [1 ]
Hamidi, Hamed [1 ]
Amiri, Javad Vaseghi [1 ]
机构
[1] Babol Noshirvani Univ Technol, Fac Civil Engn, Babol, Iran
关键词
Friction damper; Base isolation; Adjacent structures; Near- and far-fault records; Seismic performance; DIRECTIVITY; DESIGN; ENERGY;
D O I
10.1007/s40999-021-00655-3
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
Seismic response reduction of adjacent frames with the use of dampers, base isolations, or hybrid controls has been considered in recent years. What makes this to be highly important are the different properties of input earthquake loadings that can lead to different results. In this study, friction dampers and LRB isolators were used as the passive energy absorbers and, accordingly, the performance of such devices subjected to a wide range of earthquake loadings has been studied. Two experimental samples were considered to be used as model verifications. Afterward, the frames were excited by three sets of far-fault, near-fault, and near-fault with pulse records, and then the seismic responses of the frames were evaluated in the forms of displacement, inter-story drift, and acceleration. Subsequently, efficient techniques for implementing passive control devices were proposed. The results showed that the hybrid control strategy (a combination of devices) is the most efficient technique for all three statuses; however, using the base-isolation technique can also lead to acceptable performance. When the height of the frame increases, the role of the damper in the reduction of inter-story drift decreases. Nevertheless, the maximum displacement caused by near-fault with pulse records in the base isolation deceives is the main concern in using such devices. The rate of reduction of structural drift in near-fault with pulse records by using hybrid control was significant so that in 3-, 5-, and 8-story frames this reduction was 77%, 85%, and 87%, respectively.
引用
收藏
页码:91 / 106
页数:16
相关论文
共 35 条
[1]   Effect of seismic pounding on buildings isolated by triple friction pendulum bearing [J].
Amiri, Gholamreza Ghodrati ;
Shakouri, Ayoub ;
Veismoradi, Sajad ;
Namiranian, Pejman .
EARTHQUAKES AND STRUCTURES, 2017, 12 (01) :35-45
[2]  
[Anonymous], 2017, Guidelines for Nonlinear Structural Analysis and Design of Buildings, Part IIa-Steel Moment Frames, DOI [10.6028/NIST.GCR.17-917-46v2, DOI 10.6028/NIST.GCR.17-917-46V2]
[3]   Seismic analysis of structures connected with friction dampers [J].
Bhaskararao, AV ;
Jangid, RS .
ENGINEERING STRUCTURES, 2006, 28 (05) :690-703
[4]   Characterization of forward-directivity ground motions in the near-fault region [J].
Bray, JD ;
Rodriguez-Marek, A .
SOIL DYNAMICS AND EARTHQUAKE ENGINEERING, 2004, 24 (11) :815-828
[5]  
Deierlein GG, 2010, 4 NEHRP
[6]  
Eem S, 2019, NUCL ENG TECHNOL, V51, P600
[7]   Near field domain effects and their consideration in the international and Italian seismic codes [J].
Grimaz, S. ;
Malisan, P. .
BOLLETTINO DI GEOFISICA TEORICA ED APPLICATA, 2014, 55 (04) :717-738
[8]   Seismic response of RC buildings subjected to fling-step in the near-fault region [J].
Hamidi, Hamed ;
Karbassi, Amin ;
Lestuzzi, Pierino .
STRUCTURAL CONCRETE, 2020, 21 (05) :1919-1937
[9]   Influence of ground motion duration and isolation bearings on the seismic response of base-isolated bridges [J].
Hassan, Afraa Labiba ;
Billah, A. H. M. Muntasir .
ENGINEERING STRUCTURES, 2020, 222
[10]   Assessment of ASCE 7-16 Seismic Isolation Bearing Torsional Displacement [J].
Hassan, Wael M. .
INTERNATIONAL JOURNAL OF CIVIL ENGINEERING, 2020, 18 (3A) :351-366