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dc.contributor.authorGÜLER, Elif
dc.contributor.authorGAZİ, HATİCE
dc.contributor.authorALHAN, Cenk
dc.date.accessioned2021-03-03T10:32:03Z
dc.date.available2021-03-03T10:32:03Z
dc.date.issued2018
dc.identifier.citationALHAN C., GAZİ H., GÜLER E., "Influence of isolation system characteristic strength on the earthquake behavior of base-isolated liquid storage tanks", INDIAN JOURNAL OF ENGINEERING AND MATERIALS SCIENCES, cilt.25, sa.4, ss.346-352, 2018
dc.identifier.issn0971-4588
dc.identifier.othervv_1032021
dc.identifier.otherav_2322f983-03b8-4bfe-847b-bb774a274c75
dc.identifier.urihttp://hdl.handle.net/20.500.12627/28604
dc.description.abstractEarthquake performance of liquid storage tanks may be substantially improved by base-isolation. However, the possibility of facing large isolator displacements in case of large magnitude near-fault earthquakes threatens the safety of these structures, which may be realized if the period of the velocity pulses that typically exist in the near-fault earthquake records are close to their isolation periods. Increasing isolation system characteristic strength may help reducing the aforementioned large isolator displacements but this in turn may have a negative impact on the superstructure response. Therefore, this study aims to investigate the influence of the characteristic strength of the isolation system on the behavior of base-isolated liquid storage tanks under representative historical near-fault and far-fault earthquakes by making use of a set of benchmark tank models with different levels of isolation system characteristic strength ratios. Numerical modeling and non-linear time history analyses are carried out via the academic software 3DBASIS-ME,which offers the possibility of conducting such modeling and analysis following a highly preferred mechanical analog that is able to take the deformability of the tank wall and sloshing of the fluid into account by considering the fundamental sloshing and fundamental fluid-tank modes of vibration as single degree of freedom systems sharing a common isolation base-mat. The seismic responses including isolation system displacement, sloshing fluid displacement, isolation system shear force, fluid-tank shear force, and sloshing fluid shear force are reported in a comparative manner. Results show that while higher characteristic strength effectively reduces large base displacements observed under near-fault earthquakes, it may cause significant amplifications in the superstructure responses particularly under far-fault earthquakes.
dc.language.isoeng
dc.subjectHarita Mühendisliği-Geomatik
dc.subjectMühendislik ve Teknoloji
dc.subjectMalzeme Bilimi
dc.subjectMALZEME BİLİMİ, MULTIDISCIPLINARY
dc.subjectMühendislik, Bilişim ve Teknoloji (ENG)
dc.subjectMühendislik
dc.subjectMÜHENDİSLİK, MULTİDİSİPLİNER
dc.titleInfluence of isolation system characteristic strength on the earthquake behavior of base-isolated liquid storage tanks
dc.typeMakale
dc.relation.journalINDIAN JOURNAL OF ENGINEERING AND MATERIALS SCIENCES
dc.contributor.departmentIstanbul University - Cerrahpasa , ,
dc.identifier.volume25
dc.identifier.issue4
dc.identifier.startpage346
dc.identifier.endpage352
dc.contributor.firstauthorID706167


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