Ductility of wide-beam RC frames as lateral resisting system

被引:0
作者
Fernando Gómez-Martínez
Adolfo Alonso-Durá
Flavia De Luca
Gerardo M. Verderame
机构
[1] University of Naples Federico II,Department of Structures for Engineering and Architecture, DIST
[2] Polytechnic University of Valencia,Department of Mechanics of the Continuum Media and Theory of Structures
[3] University of Bristol,Department of Civil Engineering
来源
Bulletin of Earthquake Engineering | 2016年 / 14卷
关键词
Wide beams; Deep beams; Seismic codes; Effective width; Behaviour factor; Chord rotation; Ductility; Effective period;
D O I
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中图分类号
学科分类号
摘要
Some Mediterranean seismic codes consider wide-beam reinforced concrete moment resisting frames (WBF) as horizontal load carrying systems that cannot guarantee high ductility performances. Conversely, Eurocode 8 allows High Ductility Class (DCH) design for such structural systems. Code prescriptions related to WBF are systematically investigated. In particular, lesson learnt for previous earthquakes, historical reasons, and experimental and numerical studies underpinning specific prescriptions on wide beams in worldwide seismic codes are discussed. Local and global ductility of WBF are then analytically investigated through (1) a parametric study on chord rotations of wide beams with respect to that of deep beams, and (2) a spectral-based comparison of WBF with conventional reinforced concrete moment resisting frames (i.e. with deep beams). Results show that the set of prescriptions given by modern seismic codes provides sufficient ductility to WBF designed in DCH. In fact, global capacity of WBF relies more on the lateral stiffness of the frames and on the overstrength of columns rather than on the local ductility of wide beams, which is systematically lower with respect to that of deep beams.
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页码:1545 / 1569
页数:24
相关论文
共 103 条
[1]  
Arslan MH(2007)What is to be learned from damage and failure of reinforced concrete structures during recent earthquakes in Turkey? Eng Fail Anal 14 1-22
[2]  
Korkmaz HH(2007)Seismic behavior of RC side beam-column connections under dynamic loading J Earthquake Eng 11 493-511
[3]  
Benavent-Climent A(2010)An energy-based procedure for the assessment of seismic capacity of existing frames: application to RC wide beam systems in Spain Soil Dyn Earthq Eng 30 354-367
[4]  
Benavent-Climent A(2009)Exterior wide beam-column connections in existing RC frames subjected to lateral earthquake loads Eng Struct 31 1414-1424
[5]  
Zahran R(2010)Interior wide beam-column connections in existing RC frames subjected to lateral earthquake loading Bull Earthq Eng 8 401-420
[6]  
Benavent-Climent A(2000)Refined force reduction factors for seismic design Eng Struct 22 1244-1260
[7]  
Cahís X(2008)Simplified pushover-based vulnerability analysis for large-scale assessment of RC buildings Eng Struct 30 804-820
[8]  
Zahran R(1999)A displacement-based approach for vulnerability evaluation of classes of buildings J Earthquake Eng 3 411-438
[9]  
Benavent-Climent A(2005)A multilevel approach to the capacity assessment of existing RC buildings J Earthquake Eng 9 1-22
[10]  
Cahís X(2010)Revisiting Eurocode 8 formulae for periods of vibration and their employment in linear seismic analysis Earthquake Eng Struct Dynam 39 223-235