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contributor authorA. Shamsabadi
contributor authorD. E. W. Schwicht
contributor authorA. Dasmeh
contributor authorK. M. Rollins
contributor authorE. Taciroglu
date accessioned2022-01-30T19:34:56Z
date available2022-01-30T19:34:56Z
date issued2020
identifier other%28ASCE%29BE.1943-5592.0001533.pdf
identifier urihttp://yetl.yabesh.ir/yetl1/handle/yetl/4265587
description abstractCalifornia’s high-speed rail (HSR) system is slated to traverse nearly the entire length of the state, and thus it will be exposed to seismic risks from almost every known major tectonic fault there. The present study deals with the seismic responses of bridge-abutment transition backfills (BATBs), which are essential components of HSR bridges. BATBs provide a gradual variation of vertical stiffness between the bridge deck and nominal engineered backfill, enabling smooth operations for trains traveling at high speeds. All prior investigations focused on this vertical stiffness in order to better characterize the localized vertical differential movements around BATBs under periodic high axial loads from train sets. Lateral behavior of BATBs, which would be important under seismic loads, has not previously been investigated. The present study offers a parametric nonlinear lateral force-displacement backbone curve for BATBs that is verified against three-dimensional finite-element models and validated against data from large-scale tests conducted at Brigham Young University. The parametric curve takes backwall height as well as abutment skew angle into account.
publisherASCE
titleValidated Lateral Seismic Force-Displacement Backbone Curves for High-Speed Rail Bridge Abutments
typeJournal Paper
journal volume25
journal issue4
journal titleJournal of Bridge Engineering
identifier doi10.1061/(ASCE)BE.1943-5592.0001533
page04020009
treeJournal of Bridge Engineering:;2020:;Volume ( 025 ):;issue: 004
contenttypeFulltext


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