Distribution of strong earthquake input energy in tall buildings equipped with damped outriggers
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Date
2018
Authors
Mauricio Morales-Beltran
Gürsoy Turan
Umut Yildirim
Joop Paul
Journal Title
Journal ISSN
Volume Title
Publisher
John Wiley and Sons Ltd vgorayska@wiley.com Southern Gate Chichester West Sussex PO19 8SQ
Open Access Color
BRONZE
Green Open Access
Yes
OpenAIRE Downloads
14
OpenAIRE Views
9
Publicly Funded
No
Abstract
The seismic design of optimal damped outrigger structures relies on the assumption that most of the input energy will be absorbed by the dampers whilst the rest of the structure remains elastic. When subjected to strong earthquakes nevertheless the building structure may exhibit plastic hinges before the dampers begin to work. In order to determine to which extent the use of viscously damped outriggers would avoid damage both the host structure's hysteretic behaviour and the dampers' performance need to be evaluated in parallel. This article provides a parametric study on the factors that influence the distribution of seismic energy in tall buildings equipped with damped outriggers: First the influence of outrigger's location damping coefficients and rigidity ratios core-to-outrigger and core-to-column in the seismic performance of a 60-story building with conventional and with damped outriggers is studied. In parallel nonlinear behaviour of the outrigger with and without viscous dampers is examined under small moderate strong and severe long-period earthquakes to assess the hysteretic energy distribution through the core and outriggers. The results show that as the ground motion becomes stronger viscous dampers effectively reduce the potential of damage in the structure if compared to conventional outriggers. However the use of dampers cannot entirely prevent damage under critical excitations. © 2018 Elsevier B.V. All rights reserved.
Description
Keywords
Damped Outrigger, Energy Distribution, Hysteretic Energy, Strong Earthquakes, Tall Buildings, Viscous Damper, Buildings, Damping, Earthquake Effects, Earthquakes, Geophysics, Hysteresis, Seismology, Structural Optimization, Tall Buildings, Damped Outrigger, Energy Distributions, Hysteretic Energy, Strong Earthquakes, Viscous Dampers, Seismic Design, Buildings, Damping, Earthquake effects, Earthquakes, Geophysics, Hysteresis, Seismology, Structural optimization, Tall buildings, Damped outrigger, Energy distributions, Hysteretic energy, Strong earthquakes, Viscous dampers, Seismic design, damped outrigger, Viscous damper, Damped outrigger, 621, viscous damper, Energy distribution, tall buildings, hysteretic energy, strong earthquakes, Tall buildings, Viscous dampers, energy distribution, Hysteretic energy, Strong earthquakes
Fields of Science
02 engineering and technology, 0201 civil engineering
Citation
WoS Q
Scopus Q

OpenCitations Citation Count
22
Source
The Structural Design of Tall and Special Buildings
Volume
27
Issue
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CrossRef : 18
Scopus : 32
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