Simultaneous Multi-Objective Optimal Sizing of Energy Dissipative Steel Cushions for Transversal Loading

Author:

Güllü Ahmet1,Körpeoğlu Seda Göktepe2

Affiliation:

1. Department of Civil Engineering, Istanbul Gedik University, Istanbul, Turkey

2. Department of Mathematical Engineering, Yildiz Technical University, Istanbul, Turkey

Abstract

Current practice in structural engineering requires dissipating some part of seismic energy by sacrificial elements rather than structural members and/or joints. As an easy-to-produce and plug-and-play damper with stable hysteretic loops and large displacement capacity, steel cushion (SC) is a significant device to improve the seismic performance of the structures. It was stated in the previous studies that SC is less effective in the transversal direction. Hence, the efficiency of the damper is improved by optimal sizing through intelligent optimization techniques in this study. The complex optimization problem could be converted to a relatively simple mathematical problem since closed-form equations of the damper are exist in the literature. The optimal sizing problem was solved using two distinct methods namely the [Formula: see text]-constraint method and the elitist non-dominated sorting genetic algorithm (NSGA-II). The employed optimization methods were verified by each other as almost similar geometric ratios were obtained. The efficiency of the optimization is evaluated through finite element analysis (FEA). It is shown that the optimally sized SC is superior in terms of energy dissipation.

Publisher

World Scientific Pub Co Pte Ltd

Subject

Applied Mathematics,Mechanical Engineering,Ocean Engineering,Aerospace Engineering,Building and Construction,Civil and Structural Engineering

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1. Generalized Damped Outrigger Systems for Suppressing Multimode Vibrations of Tall Buildings;International Journal of Structural Stability and Dynamics;2023-06-29

2. Developing a Seismic Demand Hazard Curve for Seismic Pounding Risk Assessment of Adjacent Buildings;International Journal of Structural Stability and Dynamics;2023-06-06

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4. Multi-Objective Optimization of Viscous Damper Placement for Building Structures Subjected to Ground Motion;International Journal of Structural Stability and Dynamics;2022-09-28

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