Longitudinal Seismic Response of Bridge Frames Connected by Restrainers

Longitudinal Seismic Response of Bridge Frames Connected by Restrainers PDF Author: Yueh-Shiun Yang
Publisher:
ISBN:
Category : Bridges
Languages : en
Pages : 112

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Longitudinal Seismic Response of Bridge Frames Connected by Restrainers

Longitudinal Seismic Response of Bridge Frames Connected by Restrainers PDF Author: Yueh-Shiun Yang
Publisher:
ISBN:
Category : Bridges
Languages : en
Pages : 112

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Longitudinal Seismic Responce of Bridge Frames Connected by Restrainers

Longitudinal Seismic Responce of Bridge Frames Connected by Restrainers PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages :

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Longitudinal Seismic Response of Concrete Substructure-to-steel Superstructure Integral Bridge Connections

Longitudinal Seismic Response of Concrete Substructure-to-steel Superstructure Integral Bridge Connections PDF Author: Jill Kathleen Patty
Publisher:
ISBN:
Category :
Languages : en
Pages : 810

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Seismic Response of Concrete Bridges

Seismic Response of Concrete Bridges PDF Author: Kosalram Krishnan
Publisher:
ISBN:
Category : Technology & Engineering
Languages : en
Pages : 392

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Seismic Behavior and Retrofit of Older Reinforced Concrete Bridge T-joints

Seismic Behavior and Retrofit of Older Reinforced Concrete Bridge T-joints PDF Author: Laura N. Lowes
Publisher:
ISBN:
Category : Bridges
Languages : en
Pages : 180

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Book Description
A series of experimental tests investigating the seismic response of reinforced concrete beam-column T-joints was recently completed at the University of California, Berkeley. The evaluated connection was representative of an interior beam- column joint from a multi-column bridge frame built in the late 1950's. Three one-third scale models, representing the as-built connection and two retrofit connections, were tested. The results of this research project are an improved understanding of the seismic behavior of lightly reinforced bridge T-joints as well as verification of a design procedure for retrofitting this type of connection.

Seismic Response and Analytical Fragility Functions for Curved Concrete Box-girder Bridges

Seismic Response and Analytical Fragility Functions for Curved Concrete Box-girder Bridges PDF Author: Reihaneh Sarraf Shirazi
Publisher:
ISBN:
Category : Electronic books
Languages : en
Pages : 642

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Book Description
Curved bridges are constructed to conform to geometric constraints resulting from traffic and structural restrictions. They are different from their straight counterparts since the response coupling in the longitudinal and transverse directions and rotation of the superstructure may lead to significantly different seismic response. Observations from past earthquakes highlighted the seismic vulnerability of these bridges due to this coupled response. The consequence of bridge damage on the performance of transportation system is commonly assessed through Seismic Risk Assessment (SRA) of lifeline systems. Thus, seismic fragility curves are essential input to SRA to estimate damage to highway bridges and consequently to the network. The literature review shows shortcomings in fragility studies on the effect of horizontal curvature of bridges, specifically concrete box-girder bridges. This study aims to fill in the gap on the current state-of-the-knowledge in the seismic response and vulnerability of curved concrete box-girder bridges. Since this bridge type is common in California, the modern details adopted by CALTRANS along with the current seismic design considerations from SDC (2013) are used to select the representative benchmark bridges. To incorporate the uncertainty in geometrical, structural, and material properties of bridges into the analytical models, five sets of statistical bridge samples (each includes 160 bridges) with various subtended angles are developed. These bridge models are subjected to four sets of ground motions representing different site soil conditions and spectral characteristics. A total of 800 response history analyses are performed and the results are used to develop analytical component and system fragility functions for a range of subtended angles. A comprehensive study on the effect of horizontal curvature on the bridge dynamic characteristics and component seismic response is conducted. The median of system (bridge) fragility curves are proposed as a function of the subtended angle for each ground motion set. These functions can be used as input into SRA tools. The fragility analysis shows that the seismic vulnerability of bridges depends on the soil condition of the site and ground motion characteristics as well as the horizontal curvature of the bridge. Columns are found to have the most significant contribution to the system fragility curves. The analyses confirm that the current seismic details including PTFE/spherical bearings and isolated shear keys, suggested by CALTRANS, achieve the objectives of capacity-protected design of piles. Since the dynamic characteristics of bridges are sensitive to the curvature, curved bridges with subtended angles greater than 30 degrees require explicit modeling of curved geometry. In curved bridges, the coupling of transverse and longitudinal modes reduces the dominance of the fundamental mode in the bridge response and leads to the contribution of higher modes. The statistical evaluation of structural demands indicates that the curvature and the torsion demands on columns are amplified in curved bridges.

Seismic Design and Assessment of Bridges

Seismic Design and Assessment of Bridges PDF Author: Andreas J Kappos
Publisher: Springer Science & Business Media
ISBN: 9400739435
Category : Technology & Engineering
Languages : en
Pages : 233

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Book Description
The book focuses on the use of inelastic analysis methods for the seismic assessment and design of bridges, for which the work carried out so far, albeit interesting and useful, is nevertheless clearly less than that for buildings. Although some valuable literature on the subject is currently available, the most advanced inelastic analysis methods that emerged during the last decade are currently found only in the specialised research-oriented literature, such as technical journals and conference proceedings. Hence the key objective of this book is two-fold, first to present all important methods belonging to the aforementioned category in a uniform and sufficient for their understanding and implementation length, and to provide also a critical perspective on them by including selected case-studies wherein more than one methods are applied to a specific bridge and by offering some critical comments on the limitations of the individual methods and on their relative efficiency. The book should be a valuable tool for both researchers and practicing engineers dealing with seismic design and assessment of bridges, by both making the methods and the analytical tools available for their implementation, and by assisting them to select the method that best suits the individual bridge projects that each engineer and/or researcher faces.

Experimental Evaluation of Longitudinal Seismic Performance of Bridge Restrainers at In-Span Hinges

Experimental Evaluation of Longitudinal Seismic Performance of Bridge Restrainers at In-Span Hinges PDF Author: AG. Vlassis
Publisher:
ISBN:
Category : Bridges
Languages : en
Pages : 10

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Book Description
A specimen consisting of two box girder reinforced concrete blocks representing the adjacent spans of a reference bridge at an in-span hinge was constructed and tested under incrementally increasing input excitation to investigate the impact between adjacent bridge spans at in-span hinges, to evaluate the efficacy of restrainers in reducing relative displacements across the hinges, and to examine the effects of restrainer stiffness and gap on the response of the hinge-restrainer system. Cable restrainers were used to connect the two blocks, the number and gap of which were varied during the experiments. The experimental results indicated that impacts between the adjacent frames produce acceleration levels significantly higher than what is typically assumed in design. In all the restrained system cases, restrainers were capable of reducing hinge relative displacements and preventing span unseating. However, restrainer yielding occurred under strong input motions, especially when the restrainer gap was set to zero.

Longitudinal Seismic Response of Precast Spliced-girder Bridges

Longitudinal Seismic Response of Precast Spliced-girder Bridges PDF Author: Jay Holombo
Publisher:
ISBN:
Category : Columns, Concrete
Languages : en
Pages : 322

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Seismic Performance of Steel Girder Bridge Superstructures with Ductile End Cross Frames and Seismic Isolators

Seismic Performance of Steel Girder Bridge Superstructures with Ductile End Cross Frames and Seismic Isolators PDF Author: Lyle P. Carden
Publisher:
ISBN:
Category : Bridges
Languages : en
Pages : 286

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