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      Frequency independent damped outrigger systems for multi‐mode seismic control of super tall buildings with frequency independent negative stiffness enhancement

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          Abstract

          Damped outrigger system is effective for improving energy dissipation for tall buildings. However, conventional damped outrigger (CDO) system with viscous damping has two limitations: (i) its maximum damping ratio cannot be improved when outrigger/column stiffness is inadequate; (ii) different modes achieve their maximum damping ratios at different outrigger damping values, and thus the dampers cannot be optimized to simultaneously reduce vibrations of multiple modes of concern to their minimum. In this paper, a purely frequency‐independent negative stiffness damped outrigger (FI‐NSDO) system is proposed by combining frequency‐independent damper (FID) and negative stiffness device (NSD). The damped outrigger with FID can achieve the maximum damping ratio for all modes as compared to frequency‐dependent damper like viscous damper. As the NSD has the features of assisting and enhancing motion and frequency‐independence, the utilization of NSD will considerably improve the maximum damping ratios when outrigger/column stiffness is inadequate and maintain the frequency‐independent feature of the whole system. Therefore, the FI‐NSDO has the capability of simultaneously increasing the damping ratios of all target modes to their maximum values. Analysis in frequency domain and time domain, demonstrate that the proposed FI‐NSDO performs better in controlling the multi‐mode vibration of seismic responses.

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          NGA-West2 Database

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            Fractional‐Derivative Maxwell Model for Viscous Dampers

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              Negative Stiffness Device for Seismic Protection of Structures

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                Author and article information

                Contributors
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                Journal
                Earthquake Engineering & Structural Dynamics
                Earthq Engng Struct Dyn
                Wiley
                0098-8847
                1096-9845
                July 2023
                April 24 2023
                July 2023
                : 52
                : 9
                : 2731-2754
                Affiliations
                [1 ] Key Laboratory of Urban Security and Disaster Engineering of Ministry of Education Beijing University of Technology Beijing China
                [2 ] Department of Architecture and Architectural Engineering Kyoto University Kyoto Japan
                [3 ] College of Civil Engineering Tongji University Shanghai China
                [4 ] Department of Civil & Environment Engineering Rice University Houston Texas USA
                [5 ] Department of Mechanical Engineering Rice University Houston Texas USA
                [6 ] Department of Material Science and Nano Engineering Rice University Houston Texas USA
                Article
                10.1002/eqe.3891
                c900363f-32b5-45ff-ad07-c9b629b97d03
                © 2023

                http://creativecommons.org/licenses/by-nc-nd/4.0/

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