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2021 | OriginalPaper | Buchkapitel

Assessment of Plastic Energy Demand Spectra on Frame Systems

verfasst von : Ahmet Anıl Dindar, Gökhan Polat, Cem Yalçın, Ercan Yüksel, Hasan Özkaynak, Oral Büyüköztürk

Erschienen in: Energy-Based Seismic Engineering

Verlag: Springer International Publishing

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Abstract

Determination of structural resistance to seismic loads is a complex problem. To overcome the complexity, simple but efficient methods have been developed for engineers. In that process for the sake of simplicity and practicality, certain assumptions are made in defining seismic demand. One of the them is energy dissipation by structural members during seismic actions. However, energy dissipation is directly related to damage occurrence and propagation in the member. Calculation of plastic energy to be dissipated by structural member requires definition of energy demand on the structural system. This study aims to assess plastic energy spectrum approach on frame type reinforced concrete structures. Plastic energy demand values on three frame systems representing low- to mid-rise buildings are obtained from plastic energy spectrum and also nonlinear time history analysis (NLTH). Plastic energy spectrum is taken from the previous study of the authors. Comprehensive NLTH analyses on selected frame systems are conducted on the pre-designed systems which consists of concentrated plastic hinges. Moment and rotation response time histories of the structural members are used in calculation of energy dissipation. Comparisons between spectra- and NLTH-based results are made on three systems. For low-rise system, both plastic energy dissipation values are found approximate whereas for mid-rise systems, plastic energy spectrum is found conservative. The numerical examples reveal that plastic energy spectrum is a robust concept for energy-based design methodologies.

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Literatur
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Zurück zum Zitat Galé-Lamuela, D., Donaire-Avila, J., Escolano-Margarit, D., et al.: Energy dissipation capacity of rc columns subjected to unidirectional and bidirectional seismic loading. In: Papadrakakis, M., Fragiadakis, M. (eds.) COMPDYN 2019 7th ECCOMAS Thematic Conference on Computational Methods in Structural Dynamics and Earthquake Engineering, pp. 2316–2331. Crete, Greece (2019) Galé-Lamuela, D., Donaire-Avila, J., Escolano-Margarit, D., et al.: Energy dissipation capacity of rc columns subjected to unidirectional and bidirectional seismic loading. In: Papadrakakis, M., Fragiadakis, M. (eds.) COMPDYN 2019 7th ECCOMAS Thematic Conference on Computational Methods in Structural Dynamics and Earthquake Engineering, pp. 2316–2331. Crete, Greece (2019)
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Zurück zum Zitat Lucchini, A., Mollaioli, F.: Energy-based seismic design methodology. In: 16th World Conference on Earthquake Engineering, Santiago, Chile, 9–13 Jan 2017 Lucchini, A., Mollaioli, F.: Energy-based seismic design methodology. In: 16th World Conference on Earthquake Engineering, Santiago, Chile, 9–13 Jan 2017
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Zurück zum Zitat Dindar AA (2009) Energy-based earthquake response analysis and design of reinforced concrete SDOF columns. Boğaziçi University Dindar AA (2009) Energy-based earthquake response analysis and design of reinforced concrete SDOF columns. Boğaziçi University
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Zurück zum Zitat Ministry of Environment and Urban (2018) Turkish Building Seismic Code Ministry of Environment and Urban (2018) Turkish Building Seismic Code
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Metadaten
Titel
Assessment of Plastic Energy Demand Spectra on Frame Systems
verfasst von
Ahmet Anıl Dindar
Gökhan Polat
Cem Yalçın
Ercan Yüksel
Hasan Özkaynak
Oral Büyüköztürk
Copyright-Jahr
2021
DOI
https://doi.org/10.1007/978-3-030-73932-4_1