Ratio of Hysteretic and Input Energy Spectra for Nonlinear Structures under Seismic Sequences

Author:

Serrano Juan A.1,Bojórquez Edén1,Bojórquez Juan1ORCID,Reyes-Salazar Alfredo1,Torres Ignacio1ORCID,Ruiz-García Jorge2ORCID,Formisano Antonio3ORCID,Fernández Eduardo4ORCID,Leyva Herian5,Llanes-Tizoc Mario D.1ORCID

Affiliation:

1. Facultad de Ingeniería, Universidad Autónoma de Sinaloa, Calzada de las Américas y B. Universitarios s/n, Culiacan C.P. 80040, Sinaloa, Mexico

2. Facultad de Ingeniería, Universidad Michoacana de San Nicolas, Morelia C.P. 04510, Michoacán, Mexico

3. Department of Structures for Engineering and Architecture (DiSt), University of Naples “Federico II“, 80125 Naples, Italy

4. Facultad de Contaduría y Administración, Universidad Autónoma de Coahuila, Blvd. Revolución Oriente No. 151, Torreón C.P. 27000, Coahuila, Mexico

5. Facultad de Ingeniería, Arquitectura y Diseño, Universidad Autónoma de Baja California, Carretera Ensenada-Tijuana No. 3917, Ensenada C.P. 22870, Baja California, Mexico

Abstract

In the last few years, several mainshock–aftershock sequences have demonstrated their effects on structures; especially after the occurrence of an earthquake with high magnitude, the number of aftershocks tends to increase. For this reason, several studies have been oriented to estimate the influence of aftershocks on the structural response, most of them in terms of peak or residual displacement; however, energy plays an important role for long-duration earthquakes. In this paper, several bilinear SDOF systems with different post-yielding stiffness are subjected to long-duration seismic sequences, considering different levels of intensity of the aftershocks with the aim to compute constant-ductility spectra for input energy (EI), hysteretic energy (EH) and the ratio between them (EH/EI). The results suggest that although the energy demands tend to increase as the intensity of the aftershock increases, it is observed that the ratio of input and hysteretic energy is very similar for the selected aftershock intensity levels; hence, analytical equations to predict this ratio are proposed. The equations can be used toward earthquake-resistant energy-based design of buildings.

Funder

El Consejo Nacional de Ciencia y Tecnología

Ciencia Básica

Universidad Autónoma de Sinaloa

Publisher

MDPI AG

Subject

Management, Monitoring, Policy and Law,Renewable Energy, Sustainability and the Environment,Geography, Planning and Development,Building and Construction

Reference69 articles.

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