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Simulation of Cumulative Absolute Velocity Consistent Endurance Time Excitations
Endurance time method is a dynamic analysis in which structures are subjected to increasing excitations. These excitations are generated to be compatible with ground motions. Conventional excitation generating processes take into consideration the dynamic characteristics related to intensity and frequency contents of ground motions; however, duration-related characteristics have never been considered directly. In this study, the existing methodology is extended to include Cumulative Absolute Velocity as a duration-related parameter in the generating process. These newly generated excitations are then employed to estimate nonlinear responses of three concrete structures as case studies. Results show sound consistency with incremental dynamic analysis.
Simulation of Cumulative Absolute Velocity Consistent Endurance Time Excitations
Endurance time method is a dynamic analysis in which structures are subjected to increasing excitations. These excitations are generated to be compatible with ground motions. Conventional excitation generating processes take into consideration the dynamic characteristics related to intensity and frequency contents of ground motions; however, duration-related characteristics have never been considered directly. In this study, the existing methodology is extended to include Cumulative Absolute Velocity as a duration-related parameter in the generating process. These newly generated excitations are then employed to estimate nonlinear responses of three concrete structures as case studies. Results show sound consistency with incremental dynamic analysis.
Simulation of Cumulative Absolute Velocity Consistent Endurance Time Excitations
Mashayekhi, Mohammadreza (author) / Estekanchi, Homayoon E. (author) / Vafai, Abolhassan (author) / Mirfarhadi, Seyyed Ali (author)
Journal of Earthquake Engineering ; 25 ; 892-917
2021-04-16
26 pages
Article (Journal)
Electronic Resource
Unknown
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