Investigation of a Base-Isolator System’s Effects on the Seismic Behavior of a Historical Structure

The earthquake performance of structures with seismic isolation is much better than that of fixed-base structures, and the application of seismic insulation ensures both structural integrity and the protection of the items present in the structures. The base-isolation system is used to extend the fu...

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Main Author: Pınar Usta
Format: Article
Language:English
Published: MDPI AG 2021-05-01
Series:Buildings
Subjects:
Online Access:https://www.mdpi.com/2075-5309/11/5/217
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spelling doaj-2d2d1e74eb2240a6acf4ea4d4ef999b72021-06-01T00:38:02ZengMDPI AGBuildings2075-53092021-05-011121721710.3390/buildings11050217Investigation of a Base-Isolator System’s Effects on the Seismic Behavior of a Historical StructurePınar Usta0Department of Civil Engineering, Isparta University of Applied Science, Isparta 32200, TurkeyThe earthquake performance of structures with seismic isolation is much better than that of fixed-base structures, and the application of seismic insulation ensures both structural integrity and the protection of the items present in the structures. The base-isolation system is used to extend the fundamental period of vibration of the structure and to obtain higher value from base-isolated structures relative to the fixed-base structure. Historical masonry mosques could be strengthened using a base-isolation technique. In this study, a historical masonry mosque was organized and modelled using SAP2000 software. Nonlinear Time History analyses were carried out for the historical masonry structure, firstly for the fixed-base mosque and secondly for the base-isolated mosque with lead rubber bearing (LRB). The use of a base-isolator system caused an increase in the historical mosque’s period, reducing the displacements, acceleration, and force applied on the mosque and the resulting structural deformation; the results of the analysis indicate a significant improvement in the seismic behavior. The modelling results show that such historical masonry buildings (especially those with high and delicate minarets) can be vulnerable to major earthquakes, and it may be useful to examine strengthening strategies for these buildings.https://www.mdpi.com/2075-5309/11/5/217historical masonry structureseismic isolation retrofitseismic vulnerability assessment
collection DOAJ
language English
format Article
sources DOAJ
author Pınar Usta
spellingShingle Pınar Usta
Investigation of a Base-Isolator System’s Effects on the Seismic Behavior of a Historical Structure
Buildings
historical masonry structure
seismic isolation retrofit
seismic vulnerability assessment
author_facet Pınar Usta
author_sort Pınar Usta
title Investigation of a Base-Isolator System’s Effects on the Seismic Behavior of a Historical Structure
title_short Investigation of a Base-Isolator System’s Effects on the Seismic Behavior of a Historical Structure
title_full Investigation of a Base-Isolator System’s Effects on the Seismic Behavior of a Historical Structure
title_fullStr Investigation of a Base-Isolator System’s Effects on the Seismic Behavior of a Historical Structure
title_full_unstemmed Investigation of a Base-Isolator System’s Effects on the Seismic Behavior of a Historical Structure
title_sort investigation of a base-isolator system’s effects on the seismic behavior of a historical structure
publisher MDPI AG
series Buildings
issn 2075-5309
publishDate 2021-05-01
description The earthquake performance of structures with seismic isolation is much better than that of fixed-base structures, and the application of seismic insulation ensures both structural integrity and the protection of the items present in the structures. The base-isolation system is used to extend the fundamental period of vibration of the structure and to obtain higher value from base-isolated structures relative to the fixed-base structure. Historical masonry mosques could be strengthened using a base-isolation technique. In this study, a historical masonry mosque was organized and modelled using SAP2000 software. Nonlinear Time History analyses were carried out for the historical masonry structure, firstly for the fixed-base mosque and secondly for the base-isolated mosque with lead rubber bearing (LRB). The use of a base-isolator system caused an increase in the historical mosque’s period, reducing the displacements, acceleration, and force applied on the mosque and the resulting structural deformation; the results of the analysis indicate a significant improvement in the seismic behavior. The modelling results show that such historical masonry buildings (especially those with high and delicate minarets) can be vulnerable to major earthquakes, and it may be useful to examine strengthening strategies for these buildings.
topic historical masonry structure
seismic isolation retrofit
seismic vulnerability assessment
url https://www.mdpi.com/2075-5309/11/5/217
work_keys_str_mv AT pınarusta investigationofabaseisolatorsystemseffectsontheseismicbehaviorofahistoricalstructure
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