Seismic damage evaluation of reinforced concrete slit walls

Author:

Baetu Sergiu Andrei,Barbat A H,Ciongradi Ioan Petru

Abstract

Purpose – The purpose of this paper is to investigate a dissipative reinforced concrete structural wall that can improve the behavior of a tall multi-storey building. The main objective is to evaluate the damage of a dissipative wall in comparison with that of a solid wall. Design/methodology/approach – In this paper, a comparative nonlinear dynamic analysis between a dissipative wall and a solid wall is performed by means of SAP2000 software and using a layer model. The solution to increase the seismic performance of a reinforced concrete structural wall is to create a slit zone with short connections. The short connections are introduced as a link element with multi-linear pivot hysteretic plasticity behavior. The behavior of these short connections is modeled using the finite element software ANSYS 12. In this study, the authors propose to evaluate the damage of reinforced concrete slit walls with short connections using seismic analysis. Findings – Using the computational model created in the second section of the paper, a seismic analysis of a dissipative wall from a multi-storey building was done in the third section. From the results obtained, the advantages of the proposed model are observed. Originality/value – A simple computational model was created that consume low processing resources and reduces processing time for a dynamic pushover analysis. Unlike other studies on slit walls with short connections, which are focussed mostly on the nonlinear dynamic behavior of the short connections, in this paper the authors take into consideration the whole structural system, wall and connections.

Publisher

Emerald

Subject

Computational Theory and Mathematics,Computer Science Applications,General Engineering,Software

Reference57 articles.

1. ANSYS 12 (2009), Structural Analysis Guide , ANSYS.

2. Aoyama, H. (2005), “Dr. Kiyoshi Muto (1903-1989)”, Structural Engineering International , Vol. 15 No. 1, pp. 50-52.

3. Băetu, S. and Ciongradi, I. (2011), “Nonlinear analysis models of the reinforced concrete structural walls”, Proceedings of International Conference DEDUCON – Sustainable Development in Civil Engineering, Iasi, Vol. 1, pp. A66-A83.

4. Băetu, S. and Ciongradi, I. (2012), “Nonlinear finite element analysis of reinforced concrete slit walls with ANSYS (II)”, Bulletin of the Polytechnic Institute of Iasi, Construction and Architecture section , Vol. LVIII No. 1, pp. 99-111.

5. Băetu, S. , Ciongradi, I. and Văsieş, G. (2010), “Static nonlinear analysis of structural reinforced concrete walls energy dissipaters with shear connections”, Computational Civil Engineering, International Symposium, Iasi, May 28.

Cited by 3 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Damage simulation algorithm for reinforced concrete structures under seismic loading;Proceedings of the Institution of Civil Engineers - Structures and Buildings;2021-02

2. Experimental study on mechanical behaviors of new shear walls built with precast concrete hollow moulds;European Journal of Environmental and Civil Engineering;2017-07-11

3. Seismic damage evaluation of reinforced concrete buildings with slit walls;Engineering Computations;2015-08-03

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