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Comparative Analysis of Seismic–Induced Vibration Response Control in Multi–Inerter–Negative Stiffness Damped Outrigger Systems

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ORCID
Medium: Fachartikel
Sprache(n): Englisch
Veröffentlicht in: Buildings, , n. 3, v. 15
Seite(n): 441
DOI: 10.3390/buildings15030441
Abstrakt:

The functionality and structural safety of super high–rise buildings are significantly challenged during seismic events. Although conventional damped outrigger (CDO) systems effectively mitigate seismic–induced vibrations, the energy dissipation capacity remains inherently limited. An inerter, with lightweight tuning capabilities and dynamic negative stiffness characteristics, can significantly enhance energy dissipation efficiency when integrated with negative stiffness elements. To enhance the control performance of seismic–induced vibrations, this study proposes a multi–inerter–negative stiffness damped outrigger (INSDO) system and focuses on different INSDO combinations to improve the seismic responses of super high–rise buildings. Taking a dual–outrigger system as an example, this study systematically compares the seismic performances of five INSDO configurations. The results demonstrate that all these five outrigger configurations achieve notable damping performances, with the INSDO AND INSDO combination delivering optimal outcomes. This improvement is attributed to the synergistic interaction between the inerter and the negative stiffness elements, which enhances the damper’s hysteretic performance and significantly improves its energy dissipation capacity. The energy dissipation of the INSDO AND INSDO configuration exceeds that of the single INSDO system by 71.37%.

Copyright: © 2025 by the authors; licensee MDPI, Basel, Switzerland.
Lizenz:

Dieses Werk wurde unter der Creative-Commons-Lizenz Namensnennung 4.0 International (CC-BY 4.0) veröffentlicht und darf unter den Lizenzbedinungen vervielfältigt, verbreitet, öffentlich zugänglich gemacht, sowie abgewandelt und bearbeitet werden. Dabei muss der Urheber bzw. Rechteinhaber genannt und die Lizenzbedingungen eingehalten werden.

  • Über diese
    Datenseite
  • Reference-ID
    10815946
  • Veröffentlicht am:
    03.02.2025
  • Geändert am:
    03.02.2025
 
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