Application of Hybrid Simulation to Fragility Assessment of Self-centering Energy Dissipative (SCED) Bracing System
Substructure hybrid simulation has been actively investigated in recent years. The simulation method allows for the assessment of seismic performance of structures by representing critical components with physical specimens and the rest of the structure with numerical models. In this study the syste...
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ndltd-LACETR-oai-collectionscanada.gc.ca-OTU.1807-363692013-11-02T03:43:49ZApplication of Hybrid Simulation to Fragility Assessment of Self-centering Energy Dissipative (SCED) Bracing SystemKammula, ViswanathHybrid-SimulationSelf-CenteringFragility AnalysisModel Updation0543Substructure hybrid simulation has been actively investigated in recent years. The simulation method allows for the assessment of seismic performance of structures by representing critical components with physical specimens and the rest of the structure with numerical models. In this study the system level performance of a six-storey structure with self-centering energy dissipative (SCED) braces was validated through pseudo dynamic (PsD) hybrid simulation. Fragility curves are derived for the SCED system. The study presents the configuration of the hybrid simulation and discusses some of the practical intricacies in performing PsD hybrid simulations. In addition the study addresses some of the challenges associated with the substructuring process during a hybrid simulation. Two techniques, extensive analytical study and model updation, are discussed to improve the response from the hybrid simulation accounting for the variation in global response of a structural system depending on which structural element was represented as a physical specimen.Oh-Sung, Kwon2012-112013-09-05T14:26:46ZNO_RESTRICTION2013-09-05T14:26:46Z2013-09-05Thesishttp://hdl.handle.net/1807/36369en_ca |
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en_ca |
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Hybrid-Simulation Self-Centering Fragility Analysis Model Updation 0543 |
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Hybrid-Simulation Self-Centering Fragility Analysis Model Updation 0543 Kammula, Viswanath Application of Hybrid Simulation to Fragility Assessment of Self-centering Energy Dissipative (SCED) Bracing System |
description |
Substructure hybrid simulation has been actively investigated in recent years. The simulation method allows for the assessment of seismic performance of structures by representing critical components with physical specimens and the rest of the structure with numerical models. In this study the system level performance of a six-storey structure with self-centering energy dissipative (SCED) braces was validated through pseudo dynamic (PsD) hybrid simulation. Fragility curves are derived for the SCED system. The study presents the configuration of the hybrid simulation and discusses some of the practical intricacies in performing PsD hybrid simulations. In addition the study addresses some of the challenges associated with the substructuring process during a hybrid simulation. Two techniques, extensive analytical study and model updation, are discussed to improve the response from the hybrid simulation accounting for the variation in global response of a structural system depending on which structural element was represented as a physical specimen. |
author2 |
Oh-Sung, Kwon |
author_facet |
Oh-Sung, Kwon Kammula, Viswanath |
author |
Kammula, Viswanath |
author_sort |
Kammula, Viswanath |
title |
Application of Hybrid Simulation to Fragility Assessment of Self-centering Energy Dissipative (SCED) Bracing System |
title_short |
Application of Hybrid Simulation to Fragility Assessment of Self-centering Energy Dissipative (SCED) Bracing System |
title_full |
Application of Hybrid Simulation to Fragility Assessment of Self-centering Energy Dissipative (SCED) Bracing System |
title_fullStr |
Application of Hybrid Simulation to Fragility Assessment of Self-centering Energy Dissipative (SCED) Bracing System |
title_full_unstemmed |
Application of Hybrid Simulation to Fragility Assessment of Self-centering Energy Dissipative (SCED) Bracing System |
title_sort |
application of hybrid simulation to fragility assessment of self-centering energy dissipative (sced) bracing system |
publishDate |
2012 |
url |
http://hdl.handle.net/1807/36369 |
work_keys_str_mv |
AT kammulaviswanath applicationofhybridsimulationtofragilityassessmentofselfcenteringenergydissipativescedbracingsystem |
_version_ |
1716613001179561984 |