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vol.47 issue2STUDY OF THE BEHAVIOUR OF STRUCTURES MADE WITH EXPANDED METAL UNDER AXIAL COMPRESSIONREINFORCED CONCRETE HAUNCHED BEAMS DEFICIENT IN SHEAR REHABILITATED WITH JACKETING OF MORTAR AND WELDED WIRE MESH author indexsubject indexarticles search
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Boletín Técnico

Print version ISSN 0376-723X

Abstract

MARINILLI, Angelo. SIMPLIFIED PROBABILISTIC ANALYSIS OF REINFORCED CONCRETE FRAMES UNDER SEISMIC ACTIONS . IMME [online]. 2009, vol.47, n.2, pp.27-36. ISSN 0376-723X.

 Proper seismic performance of a structure is highly dependent on the mechanical properties of structural materials. A stochastic analysis allows us to evaluate the effect of variability of such mechanical properties on seismic performance of structures. The goal of this investigation is to perform a simplified stochastic analysis of reinforced concrete frames under seismic loads. Simplified analyses were performed based on Rosenblueth’s Point Estimate Method, considering compressive concrete strength (f´c) and reinforcement steel yield stress (fy) as independent stochastic variables. Some application examples, focused on non-linear behavior, are presented concerning reinforced concrete cross-sections, structural members and frame structures. Seismic performance of frame structures was evaluated with pushover analyses. Results obtained with Point Estimate Method were validated with results obtained with Monte Carlo Simulation Method. It was concluded that Point Estimate Method can be used to perform simplified probabilistic analyses of structures under seismic actions. More refined results can be obtained with Monte Carlo Simulation Method, which requires a greater amount of numerical evaluation of seismic responses.

Keywords : reinforced concrete; frames, seismic behavior; Point Estimate Method; Monte Carlo Simulation Method.

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