'Performance-Based' Seismic Methodology and Its Application in Seismic Design of Reinforced Concrete Structures
Commenced in January 2007
Frequency: Monthly
Edition: International
Paper Count: 32799
'Performance-Based' Seismic Methodology and Its Application in Seismic Design of Reinforced Concrete Structures

Authors: Jelena R. Pejović, Nina N. Serdar

Abstract:

This paper presents an analysis of the “Performance-Based” seismic design method, in order to overcome the perceived disadvantages and limitations of the existing seismic design approach based on force, in engineering practice. Bearing in mind, the specificity of the earthquake as a load and the fact that the seismic resistance of the structures solely depends on its behaviour in the nonlinear field, traditional seismic design approach based on force and linear analysis is not adequate. “Performance-Based” seismic design method is based on nonlinear analysis and can be used in everyday engineering practice. This paper presents the application of this method to eight-story high reinforced concrete building with combined structural system (reinforced concrete frame structural system in one direction and reinforced concrete ductile wall system in other direction). The nonlinear time-history analysis is performed on the spatial model of the structure using program Perform 3D, where the structure is exposed to forty real earthquake records. For considered building, large number of results were obtained. It was concluded that using this method we could, with a high degree of reliability, evaluate structural behavior under earthquake. It is obtained significant differences in the response of structures to various earthquake records. Also analysis showed that frame structural system had not performed well at the effect of earthquake records on soil like sand and gravel, while a ductile wall system had a satisfactory behavior on different types of soils.

Keywords: Ductile wall, frame system, nonlinear time-history analysis, performance-based methodology, RC building.

Digital Object Identifier (DOI): doi.org/10.5281/zenodo.1123711

Procedia APA BibTeX Chicago EndNote Harvard JSON MLA RIS XML ISO 690 PDF Downloads 1449

References:


[1] ASCE41 American Society of Civil Engineers. (2007), Seismic Rehabilitation of Existing Buildings, American Society of Civil Engineers.
[2] CEN European Committee for Standardization. (2004), Eurocode 8 Design of structures for earthquake resistance Part 1: General rules, seismic actions and rules for buildings, European Committee for Standardization.
[3] Aničić, D., Fajfar, P., Petrović, B., Szavits-Nossan, A., Tomašević, M. (1900), Earthquake Engineering Building Book (In Montenegrin).
[4] CEN European Committee for Standardization: Eurocode 2 - Design of concrete structures Part 1: General rules and rules for buildings (2004), European standard EN 1992-1, CEN, BrusselsMoehle, J. P., (2005). Nonlinear analysis for Performance-Based earthquake engineering. The structural design of tall and special buildings 14, 385-400.
[5] Perform 3D Product of Computers & Structures, Inc. (2006), Perform Components and elements, Computers and Structures, Inc BerkeleyB. Smith, “An approach to graphs of linear forms (Unpublished work style),” unpublished.
[6] Ambraseys N., Smit P., Berardi R., Rinaldis D., Cotton F. and Berge-Thierry C. (2000), Dissemination of European Strong-Motion Data, CD-ROM collection, European Council, Environment and Climate Research
[7] Moehle, J. P., (2005). Nonlinear analysis for Performance-Based earthquake engineering. The structural design of tall and special buildings 14, 385-400.
[8] Janković, S. (2003), Probabilistic seismic analysis of reinforced concrete frames, PhD dissertation, Faculty of Civil engineering, University of Montenegro, Podgorica, 220pp. (In Montenegrin).
[9] Shome, N. (1999), Probabilistic Seismic Demand Analysis of Nonlinear structures, Doctoral Dissertation, Stanford University, Stanford, 320 pp.
[10] Paulay T., Priestley N., (1992) Seismic design of reinforced concrete and masonry buildings, 1992; ISBN-10:0471549150