Energy-based Approach for Dissipative Structural Glass System in Seismic Regions

Current design codes and standards provide limited indications for advanced analysis and earthquake engineering of structural glass applications in seismic regions. This work provides an energy-based approach for efficient design and structural performance evaluation of structural glass systems in s...

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Autores principales: Manuel Santarsiero, Kosmas Moupagitsoglou
Formato: article
Lenguaje:EN
Publicado: Challenging Glass Conference 2018
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Acceso en línea:https://doaj.org/article/165ff380862b4a7f99072e2154b84483
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spelling oai:doaj.org-article:165ff380862b4a7f99072e2154b844832021-12-04T05:12:23ZEnergy-based Approach for Dissipative Structural Glass System in Seismic Regions10.7480/cgc.6.22002589-8019https://doaj.org/article/165ff380862b4a7f99072e2154b844832018-05-01T00:00:00Zhttps://proceedings.challengingglass.com/index.php/cgc/article/view/91https://doaj.org/toc/2589-8019Current design codes and standards provide limited indications for advanced analysis and earthquake engineering of structural glass applications in seismic regions. This work provides an energy-based approach for efficient design and structural performance evaluation of structural glass systems in seismic regions. The analytical formulation of the energy-based approach for dissipative non-linear structural glass systems is firstly presented. A practical application is then described by means of analytical and numerical studies. The results show that the combination of appropriate structural design with advanced non-linear analysis allows the achievement of highly efficient design and satisfactory performances comparable to the ones of other common structural systems. Manuel SantarsieroKosmas MoupagitsoglouChallenging Glass ConferencearticleEarthquake engineeringDissipative structural designStructural glassEnergy-based approachClay industries. Ceramics. GlassTP785-869ENChallenging Glass Conference Proceedings, Vol 6, Iss 1 (2018)
institution DOAJ
collection DOAJ
language EN
topic Earthquake engineering
Dissipative structural design
Structural glass
Energy-based approach
Clay industries. Ceramics. Glass
TP785-869
spellingShingle Earthquake engineering
Dissipative structural design
Structural glass
Energy-based approach
Clay industries. Ceramics. Glass
TP785-869
Manuel Santarsiero
Kosmas Moupagitsoglou
Energy-based Approach for Dissipative Structural Glass System in Seismic Regions
description Current design codes and standards provide limited indications for advanced analysis and earthquake engineering of structural glass applications in seismic regions. This work provides an energy-based approach for efficient design and structural performance evaluation of structural glass systems in seismic regions. The analytical formulation of the energy-based approach for dissipative non-linear structural glass systems is firstly presented. A practical application is then described by means of analytical and numerical studies. The results show that the combination of appropriate structural design with advanced non-linear analysis allows the achievement of highly efficient design and satisfactory performances comparable to the ones of other common structural systems.
format article
author Manuel Santarsiero
Kosmas Moupagitsoglou
author_facet Manuel Santarsiero
Kosmas Moupagitsoglou
author_sort Manuel Santarsiero
title Energy-based Approach for Dissipative Structural Glass System in Seismic Regions
title_short Energy-based Approach for Dissipative Structural Glass System in Seismic Regions
title_full Energy-based Approach for Dissipative Structural Glass System in Seismic Regions
title_fullStr Energy-based Approach for Dissipative Structural Glass System in Seismic Regions
title_full_unstemmed Energy-based Approach for Dissipative Structural Glass System in Seismic Regions
title_sort energy-based approach for dissipative structural glass system in seismic regions
publisher Challenging Glass Conference
publishDate 2018
url https://doaj.org/article/165ff380862b4a7f99072e2154b84483
work_keys_str_mv AT manuelsantarsiero energybasedapproachfordissipativestructuralglasssysteminseismicregions
AT kosmasmoupagitsoglou energybasedapproachfordissipativestructuralglasssysteminseismicregions
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