Effects of near-fault ground motions on the nonlinear dynamic response of base-isolated r.c. framed buildings

被引:144
作者
Mazza, Fabio [1 ]
Vulcano, Alfonso [1 ]
机构
[1] Univ Calabria, Dipartimento Modellist Ingn, I-87036 Arcavacata Di Rende, Cosenza, Italy
关键词
base-isolation; framed building; near-fault ground motions; aseismic design; seismic code; nonlinear modeling; SEISMIC ISOLATION BEARINGS; RUBBER BEARINGS; AXIAL-LOAD; MODEL;
D O I
10.1002/eqe.1126
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
Near-fault ground motions are characterized by long-period horizontal pulses and high values of the ratio between the peak value of the vertical acceleration, PGAV, and the analogous value of the horizontal acceleration, PGAH, which can become critical for base-isolated (BI) structures. The objective of the present work is to check the effectiveness of the base isolation of framed buildings when using High-Damping-Rubber Bearings (HDRBs), taking into consideration the combined effects of the horizontal and vertical components of near-fault ground motions. To this end, a numerical investigation is carried out with reference to BI reinforced concrete buildings designed according to the European seismic code (Eurocode 8). The design of the test structures is carried out in a high-risk region considering (besides the gravity loads) the horizontal seismic loads acting alone or in combination with the vertical ones and assuming different values of the ratio between the vertical and horizontal stiffnesses of the HDRBs. The nonlinear seismic analysis is performed using a step-by-step procedure based on a two-parameter implicit integration scheme and an initial-stress-like iterative procedure. At each step of the analysis, plastic conditions are checked at the potential critical sections of the girders (i.e. end sections of the sub-elements in which a girder is discretized) and columns (i.e. end sections), where a bilinear momentcurvature law is adopted; the effect of the axial load on the ultimate bending moment (M-N interaction) of the columns is also taken into account. The response of an HDRB is simulated by a model with variable stiffness properties in the horizontal and vertical directions, depending on the axial force and lateral deformation, and linear viscous damping. Copyright (c) 2011 John Wiley & Sons, Ltd.
引用
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页码:211 / 232
页数:22
相关论文
共 29 条
[1]  
[Anonymous], 2003, 8 CEN EUR EUR COMM S
[2]  
ASSISi, 2003, A0301 ASSISI
[3]  
ASSISi: (Anti-Seismic Systems International Society), 2009, P 11 WORLD C SEISM I
[4]  
Benedetti D, 1999, Eur Earthq Eng, V3, P3
[5]  
CASCIARO R, 1975, MECCANICA, V3, P156
[6]  
Christopoulos C., 2007, Principles of Passive Supplemental Damping and Seismic Isolation
[7]  
Cuomo G, 2007, 13 IT C EARTHQ ENG P
[8]   NONLINEAR ELASTIC DEFORMATIONS AND STABILITY OF LAMINATED RUBBER BEARINGS [J].
DAMBROSIO, P ;
DETOMMASI, D ;
MARZANO, S .
JOURNAL OF ENGINEERING MECHANICS-ASCE, 1995, 121 (10) :1041-1048
[9]  
Dolce M., 2004, P 13 WORLD C EARTHQ
[10]   Base isolation for near-fault motions [J].
Jangid, RS ;
Kelly, JM .
EARTHQUAKE ENGINEERING & STRUCTURAL DYNAMICS, 2001, 30 (05) :691-707