Author:
Bouzid Leyla,Hamizi Mohand,Hannachi Naceur-Eddine,Nekmouche Aghiles,Akkouche Karim
Abstract
Purpose
The purpose of this study is to establish a relationship between causes and effects, the respect of materials characteristics values [concrete compressive strength (fc) and steel yield stress (fy)] and the norms of the construction dispositions value (covers). This study is motivated by the post-seismic damages related to the plastification of the reinforced concrete (RC)/beams sections, named plastic hinges. The results are given by fragility curves representing the failure probability (Pf) of the plastic hinges versus covers value.
Design/methodology/approach
A mechanical-reliability coupling methodology is proposed and performed on three frames (three, six and nine storey). For each frame, seven covers the value of reinforcement steel bars has been taken into account in the beams. After definition of the limit state function G(x), a process of idea to twin-track; deterministic and probabilistic, is considered. Thus, numerical simulations are carried out under ETABS© software, to extract a soliciting moments Ms(x). Then, ultimate moments Mu(x), the result of reliability approach are calculated using Monte Carlo Simulations. In this step, two random variables; concrete compressive strength in 28 days of age (fc) and steel yield stress (fy), have been studied.
Findings
In the mechanical study, the results show that, the first plastic hinge appears at the beams for all frames. In the reliability study, the (fy) variation shows that all plastic hinges are in failure domain, nevertheless, the (fc) variation leads to have all sections in the safety domain, except A7 and B7 models. The failure probability (Pf) calculation according to (fc) and (fy) shows that an absolute error of 0.5 cm in the steel bars covers can switch the frame from the safety domain to the failure domain.
Originality/value
The plastic hinges reliability of the RC/ frame structures is independent on the high of the structure. The (fc) random variable according to the used distribution law does not affect the reliability (safety or failure). However, the impact of the steel yield stress variation (fy) is not negligible. The errors in covers affect considerably the strength of the elements.
Subject
Electrical and Electronic Engineering,Mechanical Engineering,Mechanics of Materials,Geotechnical Engineering and Engineering Geology,Civil and Structural Engineering
Reference81 articles.
1. AFPS. Association française du Génie Parasismique (2003), “Le séisme du 21 Mai 2003 en Algérie.Rapport préliminaire de la mission”, Algérie, available at: www.afps-seisme.org/eng/PUBLI/Reports-on-missions/AFPS-Rapport-mission-2003-Seisme-Boumerdes-Algerie (accessed 25 March 2019)
2. Nonlinear analysis of a building surmounted by a reinforced concrete water tank under hydrostatic load;Advances in Engineering Software,2017
3. Mecano-reliability analysis applied to RC tank under seismic loads according to the Algerian seismic standard;Asian Journal of Civil Engineering,2019
4. Sensitivity and fragility analysis of steel moment frames subjected to progressive collapse;Asian Journal of Civil Engineering,2018
5. Fragility curves production by seismicimprovement of the high-dimensional model representation method;Engineering Computations,2019
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