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Energy-based Design of Dissipative Bracing Systems for Seismic Retrofitting of RC Buildings
This study introduces an energy-based design approach for retrofitting existing reinforced concrete (RC) buildings through passive Energy Dissipative Bracing (EDB) systems. The proposed method is particularly suitable for low - to medium-rise buildings characterized by column-driven failure. It is grounded in the principle of optimizing strength distribution, facilitating a well-balanced damage distribution and energy dissipation throughout the structure to prevent concentration at any single storey. The efficacy of this method is assessed through non-linear dynamic analyses conducted on three reinforced concrete frames originally designed using outdated codes. Furthermore, a comparative analysis is carried out, comparing the results obtained from the proposed approach with those derived from two alternative procedures from the existing literature..
Energy-based Design of Dissipative Bracing Systems for Seismic Retrofitting of RC Buildings
This study introduces an energy-based design approach for retrofitting existing reinforced concrete (RC) buildings through passive Energy Dissipative Bracing (EDB) systems. The proposed method is particularly suitable for low - to medium-rise buildings characterized by column-driven failure. It is grounded in the principle of optimizing strength distribution, facilitating a well-balanced damage distribution and energy dissipation throughout the structure to prevent concentration at any single storey. The efficacy of this method is assessed through non-linear dynamic analyses conducted on three reinforced concrete frames originally designed using outdated codes. Furthermore, a comparative analysis is carried out, comparing the results obtained from the proposed approach with those derived from two alternative procedures from the existing literature..
Energy-based Design of Dissipative Bracing Systems for Seismic Retrofitting of RC Buildings
Lecture Notes in Civil Engineering
Sigaher, Ani Natali (Herausgeber:in) / Sutcu, Fatih (Herausgeber:in) / Yenidogan, Cem (Herausgeber:in) / Rahmat Rabi, Raihan (Autor:in) / Monti, Giorgio (Autor:in)
World Conference on Seismic Isolation ; 2023 ; Antalya, Türkiye
Seismic Isolation, Energy Dissipation and Active Vibration Control of Structures ; Kapitel: 22 ; 277-287
22.09.2024
11 pages
Aufsatz/Kapitel (Buch)
Elektronische Ressource
Englisch
Energy-dissipative braces , gravity-load-designed structures , hysteretic energy , optimum strength distribution , energy balance Engineering , Geoengineering, Foundations, Hydraulics , Geotechnical Engineering & Applied Earth Sciences , Fire Science, Hazard Control, Building Safety , Cultural Heritage
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