journal article Jan 25, 2002

A new modelling strategy for the behaviour of shear walls under dynamic loading

Abstract
AbstractA new simplified modelling strategy to simulate the non‐linear behaviour of reinforced concrete shear walls under dynamic loading is presented. The equivalent reinforced concrete (ERC) model is derived from the framework method and uses lattice meshes for concrete and reinforcement bars and uniaxial constitutive laws based on continuum damage mechanics and plasticity. Results show the capacity of the model to analyse structures having different slenderness and boundary conditions. For low reinforcement ratios however, results are sensitive to the angle formed by the diagonals of the concrete lattice and the horizontal bars. The method is compared with the shear multi‐layered beam model that uses Timoshenko multi‐layered 2D beam elements and biaxial constitutive laws. Comparisons for both models with experimental results of two research programs (one organized by NUPEC and the other by COGEMA and EDF) are provided. ERC is a simplified method that intends to save computer time and allows parametrical studies. Copyright © 2002 John Wiley & Sons, Ltd.
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References
24
[1]
Mazars J (1998)
[2]
RagueneauF.Fonctionnement dynamique des structures en béton. Influence des comportements hystérétiques locaux. Ph.D. Dissertation ENS Cachan: France 1999.
[3]
MazarsJ KotronisP CrémerC.Analyses of seismic behaviour of structural walls with various reinforcements and boundary conditions. Twelfth World Conference on Earthquake Engineering Auckland New Zealand 2000; (CD) no. 2370.
[4]
OECD.Seismic shear wall ISP. NUPEC'S seismic ultimate dynamic response test. Comparison Report. OCDE/GD(96)188 1996.
[5]
PegonP MagonetteG MolinaFJ VerzelettiG DyngelandT NegroP TirelliD TognoliP.Programme SAFE:Rapport du testT5. EC JRC: Ispra Italy 1988.
[6]
PegonP MagonetteG MolinaFJ VerzelettiG DyngelandT NegroP TirelliD TognoliP.Programme SAFE:Rapport du testT12. EC JRC: Ispra Italy 1998.
[7]
Hrennikoff A "Solution of problems of elasticity by the framework method" Journal of Applied Mechanics (1941) 10.1115/1.4009129
[8]
Ritter W "Die bauweise hennebique" Schweizerische Bauzeitung (1899)
[9]
Mörsch E (1909)
[10]
Kupfer H "Erweiterung der Morschen Fachwerkanalogie mit Hilfe des Prinzips vom Minimum der Formanderungsarbeit" Comite Euro‐International du Béton, Bulletin d'Information (1964)
[11]
Schlaich J "Towards a consistent design of structural concrete" Journal of Prestressed Concrete Institute (1987)
[12]
Collins MP "Shear and torsion design of prestressed and non‐prestressed concrete beams" Journal of Prestressed Concrete Institute (1980)
[15]
Mander JB "Shear‐flexure interaction seismic analysis and design" Seminar on post‐peak behaviour of RC structures subjected to seismic loads. Recent advances and challenges on analysis and design (1999)
[16]
Niwa J "Lattice model prediction for ultimate deformation of RC columns subjected to cyclic loading" Seminar on post‐peak behaviour of RC structures subjected to seismic loads. Recent advances and challenges on analysis and design (1999)
[17]
Tanabe T "Development of lattice equivalent continuum model for analysis of cyclic behaviour or reinforced concrete" Seminar on post‐peak behaviour of RC structures subjected to seismic loads. Recent advances and challenges on analysis and design (1999)
[19]
Ghavamian Sh "Stratégie de calculs simplifiés pour l'analyse du comportement des structures en béton armé: le code EFICOS" Revue française de génie civil (1998)
[21]
La BorderieCL.Phénomènes unilatéraux dans un matériau endommageable: modélisation et application à l'analyse des structures en béton. Ph.D. Dissertation 1991 Université Paris 6 France.
[22]
ArmstrongPJ FrederickCO.A mathematical representation of the multiaxial Bauschinger effect. G.E.G.B Report RD/B/N 731 1966.
[23]
Kotronis P (2000)
[24]
KotronisP.Cisaillement dynamique de murs en béton armé. Modèles simplifiés 2D et 3D. Ph.D. Dissertation ENS Cachan: France 2000.
Cited By
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Computer Methods in Applied Mechani...
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Citations
24
References
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Published
Jan 25, 2002
Vol/Issue
31(4)
Pages
937-954
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Cite This Article
J. Mazars, P. Kotronis, L. Davenne (2002). A new modelling strategy for the behaviour of shear walls under dynamic loading. Earthquake Engineering & Structural Dynamics, 31(4), 937-954. https://doi.org/10.1002/eqe.131
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