Seismic response of seismic isolated structures subject to near fault and far fault ground motions

Seismic isolation systems are one of the most effective technologies for protecting structures from lateral loading, improving the seismic performance of the buildings against dynamic loads and base-isolated buildings have benefits in mitigating damage to the superstructure. non-linear time history...

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Published inJournal of Engineering Research - Egypt Vol. 6; no. 5; pp. 75 - 82
Main Authors Al-Khuraybi, Sahir R., Khalifah, Tariq M., al-Kurani, Tamir M., Muhammad, Raniya
Format Journal Article
LanguageEnglish
Published Tanta, Egypt Tanta University, Faculty of Engineering 01.12.2022
Faculty of Engineering, Tanta University
Subjects
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ISSN2356-9441
2735-4873
DOI10.21608/erjeng.2022.166478.1103

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Abstract Seismic isolation systems are one of the most effective technologies for protecting structures from lateral loading, improving the seismic performance of the buildings against dynamic loads and base-isolated buildings have benefits in mitigating damage to the superstructure. non-linear time history analysis is used to investigate the seismic response of fixed base and base-isolated building frames under far-fault ground motions and near-fault ground motions with fling step and forward directivity characteristics. peak floor displacement, inter-story drift, absolute acceleration, base shear, and isolator displacement are some of the response characteristics that have been studied and examined as results of the analysis. the results demonstrated that using base isolators improves the seismic behavior of the used building, but it found that the isolator displacement is very large, during near-fault ground motion with the fling step effect particularly. for mitigating large isolator displacement during near-field earthquakes, the influence of a combination of the isolator and friction supplemental damper on the seismic response of a base-isolated 2D building frame is studied, and results demonstrated that using base isolators combined with viscous dampers can reduce the isolator's displacement.
AbstractList Seismic isolation systems are one of the most effective technologies for protecting structures from lateral loading, improving the seismic performance of the buildings against dynamic loads and base-isolated buildings have benefits in mitigating damage to the superstructure. Non-linear time history analysis is used to investigate the seismic response of fixed base and base-isolated building frames under far-fault ground motions and near-fault ground motions with fling step and forward directivity characteristics. Peak floor displacement, inter-story drift, absolute acceleration, base shear, and isolator displacement are some of the response characteristics that have been studied and examined as results of the analysis. The results demonstrated that using base isolators improves the seismic behavior of the used building, but it found that the isolator displacement is very large, during near-fault ground motion with the fling step effect particularly. For mitigating large isolator displacement during near-field earthquakes, the influence of a combination of the isolator and friction supplemental damper on the seismic response of a base-isolated 2D building frame is studied, and results demonstrated that using base isolators combined with viscous dampers can reduce the isolator's displacement.
Author Al-Khuraybi, Sahir R.
al-Kurani, Tamir M.
Muhammad, Raniya
Khalifah, Tariq M.
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  fullname: Muhammad, Raniya
  organization: MSc student, structural engineering department, faculty of engineering, Tanta university
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StartPage 75
SubjectTerms base isolation
far field earthquakes
lrb
near field earthquakes
nonlinear time history analysis
التصميم الإنشائي
هندسة الإنشاءات
هندسة الزلازل
Title Seismic response of seismic isolated structures subject to near fault and far fault ground motions
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