Investigation of Wind and Temperature Dependence for Dimensioning of Laminated Inserts
This study proposes a review of different design approaches allowing to dimension a laminated insert connection. It focuses on façade assemblies, where the critical load is due to wind, and where the stiffness relies on a highly viscoelastic material SentryGlas®. The high variability of material st...
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Challenging Glass Conference
2020
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oai:doaj.org-article:d282b0f6cc7049a3b5b7f356df054cf82021-12-04T05:11:49ZInvestigation of Wind and Temperature Dependence for Dimensioning of Laminated Inserts10.7480/cgc.7.44772589-8019https://doaj.org/article/d282b0f6cc7049a3b5b7f356df054cf82020-09-01T00:00:00Zhttps://proceedings.challengingglass.com/index.php/cgc/article/view/261https://doaj.org/toc/2589-8019 This study proposes a review of different design approaches allowing to dimension a laminated insert connection. It focuses on façade assemblies, where the critical load is due to wind, and where the stiffness relies on a highly viscoelastic material SentryGlas®. The high variability of material stiffness is considered using three different approaches. The first approach determines critical wind speeds and temperature values using a site-specific probabilistic analysis. The second approach uses the First Order Reliability Method to perform a probabilistic design. The final approach suggests a method for evaluating the wind and temperature dependence. This method is based on the Monte-Carlo simulation method and shows potential for optimizing the dimensioning of such façade connections. Matthieu ThéséJorge HidalgoChallenging Glass ConferencearticleStructural glass, Laminated inserts, Structural reliability, Monte-Carlo simulationClay industries. Ceramics. GlassTP785-869ENChallenging Glass Conference Proceedings, Vol 7, Iss 1 (2020) |
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DOAJ |
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DOAJ |
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Structural glass, Laminated inserts, Structural reliability, Monte-Carlo simulation Clay industries. Ceramics. Glass TP785-869 |
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Structural glass, Laminated inserts, Structural reliability, Monte-Carlo simulation Clay industries. Ceramics. Glass TP785-869 Matthieu Thésé Jorge Hidalgo Investigation of Wind and Temperature Dependence for Dimensioning of Laminated Inserts |
description |
This study proposes a review of different design approaches allowing to dimension a laminated insert connection. It focuses on façade assemblies, where the critical load is due to wind, and where the stiffness relies on a highly viscoelastic material SentryGlas®. The high variability of material stiffness is considered using three different approaches. The first approach determines critical wind speeds and temperature values using a site-specific probabilistic analysis. The second approach uses the First Order Reliability Method to perform a probabilistic design. The final approach suggests a method for evaluating the wind and temperature dependence. This method is based on the Monte-Carlo simulation method and shows potential for optimizing the dimensioning of such façade connections.
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format |
article |
author |
Matthieu Thésé Jorge Hidalgo |
author_facet |
Matthieu Thésé Jorge Hidalgo |
author_sort |
Matthieu Thésé |
title |
Investigation of Wind and Temperature Dependence for Dimensioning of Laminated Inserts |
title_short |
Investigation of Wind and Temperature Dependence for Dimensioning of Laminated Inserts |
title_full |
Investigation of Wind and Temperature Dependence for Dimensioning of Laminated Inserts |
title_fullStr |
Investigation of Wind and Temperature Dependence for Dimensioning of Laminated Inserts |
title_full_unstemmed |
Investigation of Wind and Temperature Dependence for Dimensioning of Laminated Inserts |
title_sort |
investigation of wind and temperature dependence for dimensioning of laminated inserts |
publisher |
Challenging Glass Conference |
publishDate |
2020 |
url |
https://doaj.org/article/d282b0f6cc7049a3b5b7f356df054cf8 |
work_keys_str_mv |
AT matthieuthese investigationofwindandtemperaturedependencefordimensioningoflaminatedinserts AT jorgehidalgo investigationofwindandtemperaturedependencefordimensioningoflaminatedinserts |
_version_ |
1718372879119155200 |