Please use this identifier to cite or link to this item: http://hdl.handle.net/10603/199507
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dc.coverage.spatial
dc.date.accessioned2018-04-06T12:09:19Z-
dc.date.available2018-04-06T12:09:19Z-
dc.identifier.urihttp://hdl.handle.net/10603/199507-
dc.description.abstractBackground: Among the base isolation systems used, friction base sliding isolation systems has been successfully implemented on field at many places. The currently available friction pendulum isolators can be designed for a specific level of ground shaking, which may prove ineffective in case of severe hazard levels. The triple friction pendulum system exhibits adaptive behaviour and imparts a greater amount of flexibility to the designer for various levels of earthquake shaking. newline newlineAim: To evaluate the behaviour of triple friction pendulum (TFP) isolator for ground motion having different hazard levels and displacement characteristics like far-field, near-fault ground motion with forward directivity and fling step effect for multi-storied buildings and bridges. newlineMethod: The seismic response of structure-isolation system is simulated by solving governing equations of motions using computer programme developed. Due to nonlinear force-deformation behaviour of the TFP bearing and significant difference in damping of superstructure and the isolation system the governing equations of motion of the base-isolated structure are solved in the incremental form using Newmark s stepby-step method assuming linear variation of acceleration over small time interval, and#61508;t in this study. For the hysteretic model, the incremental hysteretic displacement components for each time step are obtained by solving the first-order differential equation by a fourth-order Runge-Kutta method. newline
dc.format.extent
dc.languageEnglish
dc.relation
dc.rightsself
dc.titlePassive Control of Structures Using Triple Friction Pendulum System
dc.title.alternative
dc.creator.researcherDhankot, Mazhar
dc.subject.keywordBase Isolation System
dc.subject.keywordFar Field Ground Motion
dc.subject.keywordFling step effect
dc.subject.keywordForward directivity
dc.subject.keywordHysteresis behavior
dc.subject.keywordIsolation of Bridges
dc.subject.keywordMulti degree of freedom system
dc.subject.keywordMultiple Hazard Level
dc.subject.keywordNear-fault ground motion
dc.subject.keywordTriple Friction Pendulum Isolator
dc.description.note
dc.contributor.guideSoni, Devesh
dc.publisher.placeRajkot
dc.publisher.universityRK University
dc.publisher.institutionFaculty of Technology
dc.date.registered19/07/2012
dc.date.completed2017
dc.date.awarded14/10/2017
dc.format.dimensions28 cm.
dc.format.accompanyingmaterialNone
dc.source.universityUniversity
dc.type.degreePh.D.
Appears in Departments:Faculty of Technology



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