Structural Engineering and Mechanics

Volume 90, Number 3, 2024, pages 313-323

DOI: 10.12989/sem.2024.90.3.313

Response transformation factors and hysteretic energy distribution of reinforced concrete braced frames

Herian A. Leyva, Edén Bojórquez, Juan Bojórquez, Alfredo Reyes, Fabrizio Mollaioli, Omar Payán, Leonardo Palemón and Manual A. Barraza

Abstract

Most of existing buildings in Mexico City are made of reinforced concrete (RC), however, it has been shown that they are very susceptible to narrow-band long duration ground motions. In recent years, the use of dual systems composed by Buckling Restrained Braces (BRB) has increased due to its high energy dissipation capacity under reversible cyclical loads. Therefore, in this work the behavior of RC buildings with BRB is studied in order to know their performance, specifically, the energy distribution through height and response transformation factors between the RC and simplified systems are estimated. For this propose, seven RC buildings with different heights were designed according to the Mexico City Seismic Design Provisions (MCSDP), in addition, equivalent single degree of freedom (SDOF) systems were obtained. Incremental dynamic analyses on the buildings under 30 narrow-band ground motions in order to compute the relationship between normalized hysteretic energy, maximum inter-story drift and roof displacement demands were performed. The results shown that the entire structural frames participate in energy dissipation and their distribution is independent of the global ductility. The results let propose energy distribution equations through height. Finally, response transformation factors between the SDOF and multi degree of freedom (MDOF) systems were developed aimed to propose a new energy-based approach of BRB reinforced concrete buildings.

Key Words

buckling restrained braces; dual systems; energy distribution; hysteretic energy; transformation factors

Address

Herian A. Leyva: Facultad de Ingeniería, Arquitectura y Diseño, Universidad Autónoma de Baja California, Ensenada 22860, México Edén Bojórquez, Juan Bojórquez, Alfredo Reyes: 2acultad de Ingeniería, Universidad Autónoma de Sinaloa, Culiacán 80040, México Fabrizio Mollaioli: Department of Structural and Geotechnical Engineering, Sapienza University of Rome, Rome, Italy Omar Payán: Department of Mechanical and Mechatronic Engineering, Tecnológico Nacional de México Campus Culiacán, México Leonardo Palemón: Departamento de Ingeniería Civil, Universidad Autónoma del Carmen, Cd. del Carmen, Campeche 24180, México Manual A. Barraza: Facultad de Ingeniería, Arquitectura y Diseño, Universidad Autónoma de Baja California, Ensenada 22860, México