Numerical Modeling of Structural Irregularities on Unsymmetrical Buildings

Since the formation of the world, it is known that the earthquakes in seismic-active regions are occurring in sequences and from their results there are losses to millions of people and buildings. As Turkey is located in one of the worldꞌs most active seismic zones there are many studies for minimiz...

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Bibliographic Details
Main Author: Halil Ibrahim Burgan
Format: Article
Language:English
Published: Faculty of Mechanical Engineering in Slavonski Brod, Faculty of Electrical Engineering in Osijek, Faculty of Civil Engineering in Osijek 2021-01-01
Series:Tehnički Vjesnik
Subjects:
TEC
Online Access:https://hrcak.srce.hr/file/375475
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spelling doaj-30ff6894ba0244d787f4e4440d1bb7262021-06-05T09:54:24ZengFaculty of Mechanical Engineering in Slavonski Brod, Faculty of Electrical Engineering in Osijek, Faculty of Civil Engineering in Osijek Tehnički Vjesnik1330-36511848-63392021-01-01283856861Numerical Modeling of Structural Irregularities on Unsymmetrical BuildingsHalil Ibrahim Burgan0Akdeniz University, Faculty of Engineering, Department of Civil Engineering, 07070, Konyaalti, Antalya, TurkeySince the formation of the world, it is known that the earthquakes in seismic-active regions are occurring in sequences and from their results there are losses to millions of people and buildings. As Turkey is located in one of the worldꞌs most active seismic zones there are many studies for minimizing the damages especially at buildings during earthquakes. In this study, the seismic analyses were handled for a 10-storey unsymmetrical (L-shaped) building according to the Turkish Earthquake Code (TEC). These analyses contain the controls of A1-torsional irregularity, B2-weak-storey irregularity, relative storey displacements and second order effects. Furthermore, due to the lack of symmetry of the building, model was analysed for both +X and +Y directions. In order to correct irregularities which would occur in building models, the shear walls will be placed in different +X and +Y axles and positions and the analyses were repeated. According to the results for the case of an earthquake the safest and the most economical building model was suggested. Loads in all analyses in the study were calculated using "Equivalent Earthquake Loading Method" stated in TEC. The results will reveal a new look especially in the earthquake engineering.https://hrcak.srce.hr/file/375475equivalent earthquake loading (EEL) methodnumerical modellingshear wallsTECtorsional irregularityweak-storey irregularity
collection DOAJ
language English
format Article
sources DOAJ
author Halil Ibrahim Burgan
spellingShingle Halil Ibrahim Burgan
Numerical Modeling of Structural Irregularities on Unsymmetrical Buildings
Tehnički Vjesnik
equivalent earthquake loading (EEL) method
numerical modelling
shear walls
TEC
torsional irregularity
weak-storey irregularity
author_facet Halil Ibrahim Burgan
author_sort Halil Ibrahim Burgan
title Numerical Modeling of Structural Irregularities on Unsymmetrical Buildings
title_short Numerical Modeling of Structural Irregularities on Unsymmetrical Buildings
title_full Numerical Modeling of Structural Irregularities on Unsymmetrical Buildings
title_fullStr Numerical Modeling of Structural Irregularities on Unsymmetrical Buildings
title_full_unstemmed Numerical Modeling of Structural Irregularities on Unsymmetrical Buildings
title_sort numerical modeling of structural irregularities on unsymmetrical buildings
publisher Faculty of Mechanical Engineering in Slavonski Brod, Faculty of Electrical Engineering in Osijek, Faculty of Civil Engineering in Osijek
series Tehnički Vjesnik
issn 1330-3651
1848-6339
publishDate 2021-01-01
description Since the formation of the world, it is known that the earthquakes in seismic-active regions are occurring in sequences and from their results there are losses to millions of people and buildings. As Turkey is located in one of the worldꞌs most active seismic zones there are many studies for minimizing the damages especially at buildings during earthquakes. In this study, the seismic analyses were handled for a 10-storey unsymmetrical (L-shaped) building according to the Turkish Earthquake Code (TEC). These analyses contain the controls of A1-torsional irregularity, B2-weak-storey irregularity, relative storey displacements and second order effects. Furthermore, due to the lack of symmetry of the building, model was analysed for both +X and +Y directions. In order to correct irregularities which would occur in building models, the shear walls will be placed in different +X and +Y axles and positions and the analyses were repeated. According to the results for the case of an earthquake the safest and the most economical building model was suggested. Loads in all analyses in the study were calculated using "Equivalent Earthquake Loading Method" stated in TEC. The results will reveal a new look especially in the earthquake engineering.
topic equivalent earthquake loading (EEL) method
numerical modelling
shear walls
TEC
torsional irregularity
weak-storey irregularity
url https://hrcak.srce.hr/file/375475
work_keys_str_mv AT halilibrahimburgan numericalmodelingofstructuralirregularitiesonunsymmetricalbuildings
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