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Constant Ductility Energy Factors for the Near-Fault Pulse-Like Ground Motions
This study is focused on the constant ductility energy factors for bilinear system under the near-fault pulse-like ground motions. The variation of energy factors is studied in consideration of the earthquake magnitude, rupture distance, damping ratios, and post-yield stiffness ratios. The results indicate that the near-fault pulse-like ground motions would increase the energy dissipation of structures. The energy factors are significantly influenced by the earthquake magnitude. The damping ratios have more obvious influences on the energy factors than the post-yield stiffness ratios. A predictive model is proposed for the application of constant ductility energy factors for near-fault pulse-like ground motions.
Constant Ductility Energy Factors for the Near-Fault Pulse-Like Ground Motions
This study is focused on the constant ductility energy factors for bilinear system under the near-fault pulse-like ground motions. The variation of energy factors is studied in consideration of the earthquake magnitude, rupture distance, damping ratios, and post-yield stiffness ratios. The results indicate that the near-fault pulse-like ground motions would increase the energy dissipation of structures. The energy factors are significantly influenced by the earthquake magnitude. The damping ratios have more obvious influences on the energy factors than the post-yield stiffness ratios. A predictive model is proposed for the application of constant ductility energy factors for near-fault pulse-like ground motions.
Constant Ductility Energy Factors for the Near-Fault Pulse-Like Ground Motions
Zhai, Changhai (Autor:in) / Ji, Duofa (Autor:in) / Wen, Weiping (Autor:in) / Lei, Weidong (Autor:in) / Xie, Lili (Autor:in)
Journal of Earthquake Engineering ; 21 ; 343-358
17.02.2017
16 pages
Aufsatz (Zeitschrift)
Elektronische Ressource
Englisch
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