Comparison of seismic performance of strengthened historical masonry buildings under different structural designs

The subject of this study is the investigation of historical masonry buildings under earthquake loads. During any earthquake the behaviour of the structural system of masonry buildings is very complicated, and the shear resistances are very low. The masonry building’s wall materials, thickness, heig...

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Published inTransactions on the built environment Vol. 113; pp. 287 - 294
Main Authors ISLER, O, OZTAS, V
Format Conference Proceeding Journal Article
LanguageEnglish
Published Southampton WIT 2010
W I T Press
Subjects
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ISBN9781845644666
1845644662
ISSN1746-4498
1743-3509
DOI10.2495/SU100251

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Abstract The subject of this study is the investigation of historical masonry buildings under earthquake loads. During any earthquake the behaviour of the structural system of masonry buildings is very complicated, and the shear resistances are very low. The masonry building’s wall materials, thickness, height and workmanship have a significant affect on the stability and shear resistance of the buildings. The dimensions of wall openings for windows and doors and their placing in the wall, and continuous walls or non continuous walls are also important for stability. In order to prepare a weak masonry building for a possible and heavily damaging earthquake, the structural system needs strengthening to increase its seismic performance. In this study, in order to strengthen masonry buildings, two different strengthening structural models are considered. Firstly, the masonry building is strengthened with the additional RC shear walls, secondly; the walls of the masonry building are strengthened with the FRP/GFRP grid bonded. For example, an existing and historical masonry building chosen from Istanbul is considered. Their structural systems, with strengthened and non strengthened examples, are analyzed under earthquake loads. The results of the analyses are investigated and the obtained seismic performances of the different strengthened structural systems are compared between each other. Consequently, seismic performance and lateral displacements are improved by strengthening with additional RC shear walls and/or FRP/GFRP grid bonded systems. The analyses also show the displacements of the strengthened systems are reduced and these are improved 9 and 4 times according to the present building, respectively. Finally, to maintain
AbstractList The subject of this study is the investigation of historical masonry buildings under earthquake loads. During any earthquake the behaviour of the structural system of masonry buildings is very complicated, and the shear resistances are very low. The masonry building’s wall materials, thickness, height and workmanship have a significant affect on the stability and shear resistance of the buildings. The dimensions of wall openings for windows and doors and their placing in the wall, and continuous walls or non continuous walls are also important for stability. In order to prepare a weak masonry building for a possible and heavily damaging earthquake, the structural system needs strengthening to increase its seismic performance. In this study, in order to strengthen masonry buildings, two different strengthening structural models are considered. Firstly, the masonry building is strengthened with the additional RC shear walls, secondly; the walls of the masonry building are strengthened with the FRP/GFRP grid bonded. For example, an existing and historical masonry building chosen from Istanbul is considered. Their structural systems, with strengthened and non strengthened examples, are analyzed under earthquake loads. The results of the analyses are investigated and the obtained seismic performances of the different strengthened structural systems are compared between each other. Consequently, seismic performance and lateral displacements are improved by strengthening with additional RC shear walls and/or FRP/GFRP grid bonded systems. The analyses also show the displacements of the strengthened systems are reduced and these are improved 9 and 4 times according to the present building, respectively. Finally, to maintain
Author OZTAS, V
ISLER, O
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  fullname: OZTAS, V
  organization: Department of Theory of Structure, Istanbul Technical University, Turkey
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Keywords Grid
Construction materials
Shear strength
Windows
Masonry
Wall thickness
Reinforced structure
Earthquakes
Building stock
Shear wall
High rise building
Civil engineering
Structural analysis
Damaging
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Snippet The subject of this study is the investigation of historical masonry buildings under earthquake loads. During any earthquake the behaviour of the structural...
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StartPage 287
SubjectTerms Applied sciences
Aseismic buildings
Bonding strength
Building structure
Buildings
Buildings. Public works
Computation methods. Tables. Charts
Construction (buildings and works)
Construction materials
Earthquake damage
Earthquake loads
Earthquakes
Exact sciences and technology
Fundamental areas of phenomenology (including applications)
Glass fiber reinforced plastics
Historical buildings
Lateral displacement
Masonry
Masonry structure
Materials
Physics
Seismic activity
Seismic design
Seismic engineering
Seismic response
Seismic stability
Shear strength
Shear walls
Solid mechanics
Structural analysis. Stresses
Structural and continuum mechanics
Structural damage
Structural models
Vibration, mechanical wave, dynamic stability (aeroelasticity, vibration control...)
Title Comparison of seismic performance of strengthened historical masonry buildings under different structural designs
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