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Performance-Based Seismic Design of Tuned-Inerter Dampers

  • Alin Radu*
  • , Irina Lazar
  • , Simon Neild
  • *Corresponding author for this work

Research output: Contribution to journalArticle (Academic Journal)peer-review

65 Citations (Scopus)
457 Downloads (Pure)

Abstract

This paper proposes a novel fully probabilistic framework for the performance-based seismic design of structures and uses tuned inerter dampers (TID) installed in civil engineering structures subjected to seismic loads to illustrate its applicability. The framework proposed is based on stochastic reduced-order models, which makes it computationally efficient and can be used for the design of TIDs installed in any complex nonlinear structures subjected to general nonstationary, non-Gaussian stochastic processes. In this study, the TID is installed in a multi-degree-of-freedom nonlinear structure that is subjected to synthetic seismic records. Numerical results show that the framework proposed is able to provide rigorous and robust values for the parameters of the TID. The design parameters obtained using the stochastic framework proposed are compared with benchmark deterministic approaches, tested also for a large data set of ground-motion real records. It is shown that the stochastic approach provides insightful designs of the TID that are consistent with the site seismicity and the frequency content of the stochastic excitation.

Original languageEnglish
Article numbere2346
Number of pages19
JournalStructural Control and Health Monitoring
Volume26
Issue number5
Early online date15 Mar 2019
DOIs
Publication statusPublished - 1 May 2019

Keywords

  • performance-based engineering
  • earthquake-risk reduction
  • Stochastic reduced-order models
  • tuned-inerter damper
  • control engineering
  • Vibration suppression

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