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contributor authorM. Saiid
contributor authorSaiidi
contributor authorAshkan
contributor authorVosooghi
contributor authorHoon
contributor authorChoi
contributor authorPaul
contributor authorSomerville
date accessioned2017-05-08T21:35:40Z
date available2017-05-08T21:35:40Z
date copyrightAugust 2014
date issued2014
identifier other%28asce%29be%2E1943-5592%2E0000481.pdf
identifier urihttp://yetl.yabesh.ir/yetl/handle/yetl/57027
description abstractThe objective of this study was to investigate the fault rupture effects on the seismic response of a bridge system crossing an active fault. A large-scale two-span bridge model supported on three bents, one on each of the University of Nevada, Reno (UNR), shake tables, was tested under earthquakes with incoherent motions that simulated fault rupture. The results were compared with those from an identical bridge model subjected to coherent ground motions in a previous shake table study. It was found that fault rupture substantially affected the damage type and location in the bridge bents. The most severely damaged bent in the current bridge was a relatively flexible bent near the fault. However, under coherent motions, the shortest bent experienced the severest damage. Linear static and nonlinear dynamic analyses of the test model revealed that existing analytical techniques are adequate in estimating the response of the most critical bent subjected to fault rupture.
publisherAmerican Society of Civil Engineers
titleShake Table Studies and Analysis of a Two-Span RC Bridge Model Subjected to a Fault Rupture
typeJournal Paper
journal volume19
journal issue8
journal titleJournal of Bridge Engineering
identifier doi10.1061/(ASCE)BE.1943-5592.0000478
treeJournal of Bridge Engineering:;2014:;Volume ( 019 ):;issue: 008
contenttypeFulltext


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