Vibration control in buildings under seismic excitation using optimized tuned mass dampers

Authors

DOI:

https://doi.org/10.3221/IGF-ESIS.54.05

Keywords:

TMD, Vibration control, Optimization, Whale Optimization Algorithm, Interstory drift

Abstract

Earthquakes can cause vibration problems in many types of structures, generating large displacements. The interstory drift is a design criterion very used in seismic analysis and the structural control is an alternative to reduce these displacements and improve the performance of these structures adapting them to the imposed criteria. TMD is a device widely used due to the simple principle of operation and many successful applications in real life practice. This paper investigates the use of optimized TMD for reduction of maximum horizontal displacement at the top floor and interstory drift of a steel building under seismic excitation considering three scenarios: single TMD at the top floor; MTMD horizontally arranged at the top floor; and MTMD vertically arranged on the structure. By a metaheuristic optimization algorithm, the parameters and positions of the devices are obtained. Three real and one artificial earthquakes are employed in the simulations. The results showed that all proposed scenarios are efficient in reducing top floor response and interstory drift to values below of the interstory drift limits allowed by the standard code consulted. However, Scenario 2 presented the best reduction for the top displacement and interstory drift to the critical floor for the worst earthquake considered.

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Author Biography

  • Francisco da Silva Brandão, PPGEC/UFRGS and Centro Universitário Ritter dos Reis – UniRitter, Brazil

    Francisco Brandão received the Technical License in Electrotechnology by Instituto Federal de Educação, Ciência e Tecnologia do Ceará (IFCE) in 2012, the bachelor degree in Civil Engineering by Universidade Estadual Vale do Acaraú (UVA) in 2017 and the certification programme in Engineering and Maintenance Management by Faculdade Única de Ipatinga (FUNIP) in 2018. Currently he is master's student in Civil Engineering/Structures at Federal University of Rio Grande do Sul (PPGEC/UFRGS), member of the Laboratory of Rehabilitation and Buildings Durability (LAREB/UFC) and Professor at Centro Universitário Ritter dos Reis (UniRitter). His research fields are: dynamic of structures and earthquake engineering, structural analysis, structural optimization and building pathology.

Published

23-09-2020

Issue

Section

Structural Integrity and Durability of Structures

Categories

How to Cite

Vibration control in buildings under seismic excitation using optimized tuned mass dampers. (2020). Frattura Ed Integrità Strutturale, 14(54), 66-87. https://doi.org/10.3221/IGF-ESIS.54.05