Optimum Earthquake Design Coefficients Based on Probabilistic Seismic Hazard Analyses: Theory and Applications

Author:

Ordaz Mario1,Salgado-Gálvez Mario A.2,Pérez-Rocha Luis E.3,Cardona Omar D.4,Mena-Hernández Ulises3

Affiliation:

1. Instituto de Ingeniería, UNAM, Ciudad Universitaria, Coyoacán 04510, DF, México

2. Centre Internacional de Metodes Numerics en Enginyeria, CIMNE, Barcelona, 08012, Spain

3. Instituto Nacional de Electricidad y Energías Limpias, Cuernavaca, 62490, Mexico

4. Universidad Nacional de Colombia, Campus Palogrande, IDEA. Cra. 27 No. 64-60, Manizales, Colombia

Abstract

It is common practice to define the seismic design coefficients for earthquake-resistant building codes by choosing a fixed return period, leaving aside considerations about structural vulnerability and acceptable risk levels. This paper reviews the theory of the optimum design, introduced from almost the beginning of the formal probabilistic seismic hazard analysis framework and presents the results of its application in Mexico and Colombia using national seismic hazard models for the two countries. The obtained optimum design coefficients are compared with the ones obtained with the fixed return period approach. Results are presented with the aim of starting to discuss alternative approaches to select, in a more sensible way, the seismic design values included in the building codes.

Publisher

SAGE Publications

Subject

Geophysics,Geotechnical Engineering and Engineering Geology

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