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Performance-based Seismic Design of a Pendulum Tuned Mass Damper System
The study implements the performance-based analysis and design methodology to assess the seismic vulnerability of a coal-fired power plant and to optimally design its equivalent pendulum-type tuned mass damper system such that the direct losses are minimized. A building-specific total loss ratio is developed to link the component level losses with the total repair cost of the original structure. The optimal system configuration is finally derived for cases with the minimum loss. The study demonstrates a systematic way of achieving the optimal pendulum-type tuned mass damper design with considerations of uncertainties in earthquake inputs and the combined component level damages.
Performance-based Seismic Design of a Pendulum Tuned Mass Damper System
The study implements the performance-based analysis and design methodology to assess the seismic vulnerability of a coal-fired power plant and to optimally design its equivalent pendulum-type tuned mass damper system such that the direct losses are minimized. A building-specific total loss ratio is developed to link the component level losses with the total repair cost of the original structure. The optimal system configuration is finally derived for cases with the minimum loss. The study demonstrates a systematic way of achieving the optimal pendulum-type tuned mass damper design with considerations of uncertainties in earthquake inputs and the combined component level damages.
Performance-based Seismic Design of a Pendulum Tuned Mass Damper System
Shu, Zhan (Autor:in) / Li, Shuang (Autor:in) / Sun, Xiaofeng (Autor:in) / He, Minjuan (Autor:in)
Journal of Earthquake Engineering ; 23 ; 334-355
07.02.2019
22 pages
Aufsatz (Zeitschrift)
Elektronische Ressource
Englisch
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