Next Generation of Bridge Columns for Accelerated Bridge Construction in High Seismic Zones

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ISBN 13 :
Total Pages : 406 pages
Book Rating : 4.:/5 (318 download)

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Book Synopsis Next Generation of Bridge Columns for Accelerated Bridge Construction in High Seismic Zones by : Mostafa Tazarv

Download or read book Next Generation of Bridge Columns for Accelerated Bridge Construction in High Seismic Zones written by Mostafa Tazarv and published by . This book was released on 2014 with total page 406 pages. Available in PDF, EPUB and Kindle. Book excerpt: Longitudinal bar debonding allowed spread of yielding and prevented premature failure of reinforcements in UHPC-filled duct connections and grouted coupler column pedestal. The SMA-reinforced ECC column showed superior seismic performance compared to a conventional column in which the plastic hinge damage was limited to only ECC cover spalling even under 12% drift ratio cycles. The column residual displacements were 79% lower than CIP residual displacements on average due to the superelastic NiTi SMA longitudinal reinforcement, and higher base shear capacity and higher displacement capacity were observed. The analytical modeling methods were simple and sufficiently accurate for general design and analyses of precast components proposed in the present study. The proposed symmetrical material model for reinforcing NiTi superelastic SMA was found to be a viable alternative to the more complex asymmetrical model.

Precast Column-footing Connections for Accelerated Bridge Construction in Seismic Zones

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ISBN 13 :
Total Pages : 1224 pages
Book Rating : 4.:/5 (86 download)

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Book Synopsis Precast Column-footing Connections for Accelerated Bridge Construction in Seismic Zones by : Zachary Benjamin Haber

Download or read book Precast Column-footing Connections for Accelerated Bridge Construction in Seismic Zones written by Zachary Benjamin Haber and published by . This book was released on 2013 with total page 1224 pages. Available in PDF, EPUB and Kindle. Book excerpt: Accelerated bridge construction (ABC) has become increasingly popular in the eyes of state and federal transportation agencies because of its numerous advantages. To effectively execute ABC projects, designers utilize prefabricated structural elements that can be quickly assembled to form functional structural systems. It is advantageous to the bridge designer if these systems emulate the design and behavior of conventional cast-in-place systems. If this can be achieved, typical analysis and design procedures can be used. The difficulty with developing emulative systems is usually encountered in the design and detailing of connections. Substructure connections are particularly critical in seismic zones because they must dissipate energy through significant cyclic nonlinear deformations while maintaining their capacity and the integrity of the structural system. The research presented in this dissertation focused on developing and evaluating earthquake resistant connections for use in accelerated bridge construction. The project was comprised of three main components; testing of five large-scale precast reinforced concrete column models, a series of individual component tests on mechanical reinforcing bar splices, and extensive analytical studies. Column studies included the design and construction of five half-scale bridge column models that were tested under reversed slow cyclic loading. Four new moment connections for precast column-footing joints were developed each utilizing mechanical reinforcing bar splices to create connectivity with reinforcing bars in a cast-in-place footing. Two different mechanical splices were studied: an upset headed coupler and grout-filled sleeve coupler. Along with the splice type, the location of splices within the plastic hinge zone was also a test variable. All column models were designed to emulate conventional cast-in-place construction thus were compared to a conventional cast-in-place test model. Results indicate that the new connections are promising and duplicate the behavior of conventional cast-in-place construction with respect to key response parameters. However, it was discovered that the plastic hinge mechanism can be significantly affected by the presence of splices and result in reduced displacement ductility capacity. In order to better understand the behavior of mechanical splices, a series of uniaxial tests were completed on mechanically-spliced reinforcing bars under different loading configurations: monotonic static tension, dynamic tension, and slow cyclic loading. Results from this portion of the project also aided the development of analytical models for the half- and prototype-scale column models. Results indicated that, regardless of loading configuration, specimens failed by bar rupture without damage to the splice itself. The analytical studies conducted using OpenSEES included development of microscope models for the two mechanical reinforcing bars splices and full analytical models of the five half-scale columns, which were both compared with respective experimental results to validate the modeling procedures and assumptions. Prototype-scale analytical models were also developed to conduct parametric studies investigating the sensitivity of the newly developed ABC connections to changes in design details. In general, the results of this study indicate that the newly develop ABC connections, which utilize mechanically-spliced connections, are suitable for moderate and high seismic regions. However, emulative design approaches are not suitable for all of the connections develop. A set of design recommendations are provided to guide bridge engineers in the analysis and design of these new connections.

Bridge Safety, Maintenance, Management, Life-Cycle, Resilience and Sustainability

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Publisher : CRC Press
ISBN 13 : 1000798739
Total Pages : 2646 pages
Book Rating : 4.0/5 (7 download)

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Book Synopsis Bridge Safety, Maintenance, Management, Life-Cycle, Resilience and Sustainability by : Joan Ramon Casas

Download or read book Bridge Safety, Maintenance, Management, Life-Cycle, Resilience and Sustainability written by Joan Ramon Casas and published by CRC Press. This book was released on 2022-06-27 with total page 2646 pages. Available in PDF, EPUB and Kindle. Book excerpt: Bridge Safety, Maintenance, Management, Life-Cycle, Resilience and Sustainability contains lectures and papers presented at the Eleventh International Conference on Bridge Maintenance, Safety and Management (IABMAS 2022, Barcelona, Spain, 11–15 July, 2022). This e-book contains the full papers of 322 contributions presented at IABMAS 2022, including the T.Y. Lin Lecture, 4 Keynote Lectures, and 317 technical papers from 36 countries all around the world. The contributions deal with the state-of-the-art as well as emerging concepts and innovative applications related to the main aspects of safety, maintenance, management, life-cycle, resilience, sustainability and technological innovations of bridges. Major topics include: advanced bridge design, construction and maintenance approaches, safety, reliability and risk evaluation, life-cycle management, life-cycle, resilience, sustainability, standardization, analytical models, bridge management systems, service life prediction, structural health monitoring, non-destructive testing and field testing, robustness and redundancy, durability enhancement, repair and rehabilitation, fatigue and corrosion, extreme loads, needs of bridge owners, whole life costing and investment for the future, financial planning and application of information and computer technology, big data analysis and artificial intelligence for bridges, among others. This volume provides both an up-to-date overview of the field of bridge engineering and significant contributions to the process of making more rational decisions on bridge safety, maintenance, management, life-cycle, resilience and sustainability of bridges for the purpose of enhancing the welfare of society. The volume serves as a valuable reference to all concerned with and/or involved in bridge structure and infrastructure systems, including students, researchers and practitioners from all areas of bridge engineering.

Proposed AASHTO Seismic Specifications for ABC Column Connections

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ISBN 13 : 9780309481311
Total Pages : 0 pages
Book Rating : 4.4/5 (813 download)

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Book Synopsis Proposed AASHTO Seismic Specifications for ABC Column Connections by : Mehdi Saiidi

Download or read book Proposed AASHTO Seismic Specifications for ABC Column Connections written by Mehdi Saiidi and published by . This book was released on 2020 with total page 0 pages. Available in PDF, EPUB and Kindle. Book excerpt: Accelerated bridge construction (ABC) utilizes rigorous planning, new technologies, and improved methods to expedite construction. Prefabricated columns and their connections to adjoining bridge members (cap beams, footings, pile caps, and pile shafts) are the most critical components of ABC in moderate- and high-seismic regions. The TRB National Cooperative Highway Research Program's NCHRP Research Report 935: Proposed AASHTO Seismic Specifications for ABC Column Connections develops AASHTO specifications for three types of precast column connections to facilitate ABC implementation in moderate- and high-seismic regions.

A Pre-tensioned Bent System for Accelerated Bridge Construction in Seismic Regions

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ISBN 13 :
Total Pages : 327 pages
Book Rating : 4.:/5 (932 download)

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Book Synopsis A Pre-tensioned Bent System for Accelerated Bridge Construction in Seismic Regions by : Ólafur Sveinn Haraldsson

Download or read book A Pre-tensioned Bent System for Accelerated Bridge Construction in Seismic Regions written by Ólafur Sveinn Haraldsson and published by . This book was released on 2015 with total page 327 pages. Available in PDF, EPUB and Kindle. Book excerpt: Nearly all bridge bents (intermediate supports) are constructed of cast-in-place reinforced concrete. Such bridges have served the nation well in the past, but to meet current design expectations, they need to be improved in three areas: 1) speed of construction, 2) seismic resiliency, and 3) durability. Building on previous research at the University of Washington (Hieber et al. 2005, Wacker et al. 2005, Pang et al. 2010, and Haraldsson et al. 2013), a new pre-tensioned bent system has been developed to address these needs. The system consists of 1) precast technology that reduces construction time, 2) unbonded pre-tensioning that minimizes post-earthquake displacements, and 3) high-performance materials that extend the bridge's life-span. Davis et al. (2012) tested a version of the system using conventional concrete in the plastic hinge regions. They found that pre-tensioning improved the system's re-centering capabilities but led to earlier bar buckling and bar fracture than in previously tested RC columns. In order to delay bar buckling and bar fracture, the system was modified to include Hybrid Fiber Reinforced Concrete (HyFRC) in the plastic hinge regions. This composite concrete has been shown to exhibit superior durability and cracking resistance (Ostertag et al. 2007). The effect of the HyFRC on the pre-tensioned bent system was investigated both with quasi-static and dynamic tests. The quasi-static tests showed that using HyFRC in the plastic hinge region increased column ductility; in all cases the column maintained more than 80% of its strength up to a drift ratio of 10%. The HyFRC also delayed spalling of the concrete, but it did not significantly increase the drift ratios at the onset of bar buckling and bar fracture. The shake-table tests of a cantilever column, which was designed to re-center up to a drift ratio of 3.0%, showed that the new system had lower expected residual drifts than columns constructed with conventional cast-in place methods. The pre-tensioned column had a residual drift of 0.23% after experiencing a peak drift ratio of 5.5%. In contrast, the companion reference column, constructed using cast-in-place technology, had a residual drift ratio of 0.83% after experiencing a peak drift ratio of 5.7%. A numerical model in OpenSees was developed and calibrated with a set of 34 RC quasi-static, cyclic tests. This model was calibrated using a concrete constitutive model that takes into account concrete early reloading, developed as part of this research, and used commonly used steel constitutive models; Giuffre-Menegotto-Pinto's (Steel02) model, and Moehle and Kunnath's (ReinforcingSteel) model. The simulations showed improved accuracy in comparison to previous research (e.g., Berry and Eberhard 2007), and showed that the response of the system was affected more by the chosen steel model than by the concrete model. The results of these simulations were used to make predictions of the response of five columns tested on the UC Berkeley shake table. These simulations showed that models built using the proposed strategy predict peak displacements quite accurately, especially at the yield and design level, but do not accurately capture residual displacements.

Seismic Performance of Precast Concrete Dual-shell Steel Columns for Accelerated Bridge Construction

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ISBN 13 : 9781321516630
Total Pages : 133 pages
Book Rating : 4.5/5 (166 download)

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Book Synopsis Seismic Performance of Precast Concrete Dual-shell Steel Columns for Accelerated Bridge Construction by : Gabriele Guerrini

Download or read book Seismic Performance of Precast Concrete Dual-shell Steel Columns for Accelerated Bridge Construction written by Gabriele Guerrini and published by . This book was released on 2014 with total page 133 pages. Available in PDF, EPUB and Kindle. Book excerpt: This study presents an innovative bridge column technology for application in seismic regions. The proposed technology combines a precast post-tensioned composite steel-concrete hollow-core column with supplemental energy dissipation, in a way to reduce on-site construction burdens and minimize earthquake-induced residual deformations, damage, and associated repair costs. The column consists of two steel cylindrical shells, with high-performance concrete cast in between. Both shells act as permanent formwork; the outer shell substitutes the longitudinal and transverse reinforcement, as it works in composite action with the concrete, whereas the inner shell removes unnecessary concrete volume from the column, prevents concrete implosion, and prevents buckling of energy dissipating dowels when embedded in the concrete. Large inelastic rotations can be accommodated at the end joints with minimal structural damage, since gaps are allowed to open at these locations and to close upon load reversal. Longitudinal post-tensioned high-strength steel threaded bars, designed to respond elastically, in combination with gravity forces ensure self-centering behavior. Internal or external steel devices provide energy dissipation by axial yielding. This dissertation reviews the main principles and requirements for the design of these columns. The experimental findings from two quasi-static reversed cyclic tests are then presented, and numerical simulations of the experimental response are proposed.

Modern Techniques in Bridge Engineering

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Publisher : CRC Press
ISBN 13 : 0415684153
Total Pages : 338 pages
Book Rating : 4.4/5 (156 download)

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Book Synopsis Modern Techniques in Bridge Engineering by : Khaled Mahmoud

Download or read book Modern Techniques in Bridge Engineering written by Khaled Mahmoud and published by CRC Press. This book was released on 2011-08-26 with total page 338 pages. Available in PDF, EPUB and Kindle. Book excerpt: Due to significant economic growth in the last few decades, increasing traffic loads impose tremendous demand on bridge structures. This, coupled with ongoing deterioration of bridges, introduces a unique challenge to bridge engineers in maintaining service of these infrastructure assets without disruption to vital economic and social activities. This requires innovative solutions and optimized methodologies to achieve safe and efficient operation of bridge structures. Bridge engineering practitioners, researchers, owners, and contractors from all over the world presented on modern techniques in design, inspection, monitoring and rehabilitation of bridge structures, at the Sixth New York City Bridge Conference held New York City on July 25-26, 2011. This book contains a select number of papers presented at the conference. This group of papers provides a state-of-the-art in bridge engineering and is of interest to any reader in the field.

Precast Segmental Post-tensioned Concrete Bridge Columns for Seismic Regions

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ISBN 13 :
Total Pages : 255 pages
Book Rating : 4.:/5 (32 download)

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Book Synopsis Precast Segmental Post-tensioned Concrete Bridge Columns for Seismic Regions by : Yu-Chen Ou

Download or read book Precast Segmental Post-tensioned Concrete Bridge Columns for Seismic Regions written by Yu-Chen Ou and published by . This book was released on 2007 with total page 255 pages. Available in PDF, EPUB and Kindle. Book excerpt: A simplified analytical model for static pushover analysis and a three-dimensional detailed finite element model for cyclic analysis of the proposed bridge columns are developed in this research. In addition, a stiffness degrading hysteretic model is proposed for response-history analysis. With the analytical models, a parametric study is conducted to examine the seismic performance of the proposed columns with different design parameters.

Seismic Performance of Circular Concrete Filled Steel Tube Columns for Accelerated Bridge Construction

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ISBN 13 :
Total Pages : 92 pages
Book Rating : 4.:/5 (946 download)

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Book Synopsis Seismic Performance of Circular Concrete Filled Steel Tube Columns for Accelerated Bridge Construction by : Catherine Tucker

Download or read book Seismic Performance of Circular Concrete Filled Steel Tube Columns for Accelerated Bridge Construction written by Catherine Tucker and published by . This book was released on 2014 with total page 92 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Seismic Response of a Hybrid Fiber-reinforced Concrete Bridge Column Detailed for Accelerated Bridge Construction

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ISBN 13 :
Total Pages : 50 pages
Book Rating : 4.:/5 (96 download)

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Book Synopsis Seismic Response of a Hybrid Fiber-reinforced Concrete Bridge Column Detailed for Accelerated Bridge Construction by : Wilson Nguyen

Download or read book Seismic Response of a Hybrid Fiber-reinforced Concrete Bridge Column Detailed for Accelerated Bridge Construction written by Wilson Nguyen and published by . This book was released on 2014 with total page 50 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Seismic Performance of Precast Full-depth Decks in Accelerated Bridge Construction

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ISBN 13 :
Total Pages : 283 pages
Book Rating : 4.:/5 (119 download)

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Book Synopsis Seismic Performance of Precast Full-depth Decks in Accelerated Bridge Construction by : Grishma Shrestha

Download or read book Seismic Performance of Precast Full-depth Decks in Accelerated Bridge Construction written by Grishma Shrestha and published by . This book was released on 2018 with total page 283 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Substructure Connections for Accelerated Bridge Construction in Seismic Regions

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ISBN 13 :
Total Pages : 239 pages
Book Rating : 4.:/5 (748 download)

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Book Synopsis Substructure Connections for Accelerated Bridge Construction in Seismic Regions by : Michael D. Weinert

Download or read book Substructure Connections for Accelerated Bridge Construction in Seismic Regions written by Michael D. Weinert and published by . This book was released on 2011 with total page 239 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Sustainable Materials in Civil Infrastructure

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Publisher : Elsevier
ISBN 13 : 0443161437
Total Pages : 272 pages
Book Rating : 4.4/5 (431 download)

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Book Synopsis Sustainable Materials in Civil Infrastructure by : Thainswemong Choudhury

Download or read book Sustainable Materials in Civil Infrastructure written by Thainswemong Choudhury and published by Elsevier. This book was released on 2024-07-01 with total page 272 pages. Available in PDF, EPUB and Kindle. Book excerpt: Sustainable Materials in Civil Infrastructure covers the latest breakthroughs in innovative eco-materials and poses solutions for resilient and sustainable infrastructure. The book provides valuable insights into innovative research studies on eco-materials used for construction applications, which will provide researchers with a useful reference guide on recycled steel, low-carbon concrete, bio-concrete, self-healing concrete, and industrial by-products such as fly ash, natural geosynthetic fibres, and shape memory alloys for infrastructure development. The chapters cover design applications of bio-concrete, and usage of eco-materials in landfill liners and masonry. The book clearly identifies the issues that remain as obstacles for the large-scale use of green concrete, and bio-concrete and provides practical solutions to overcome them. The chapters create a knowledge base for the development of sustainable design methodologies that are widely accepted among various environmental monitoring/controlling bodies throughout the world. Cutting-edge design methodologies incorporating machine learning and artificial intelligence Coverage of biogeotechnics, landfill, and waste-to-energy techniques Focus on emerging trends in eco-efficient concrete solutions

Unbonded Pre-tensioned Bridge Columns with Rocking Detail

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Publisher :
ISBN 13 :
Total Pages : 138 pages
Book Rating : 4.:/5 (89 download)

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Book Synopsis Unbonded Pre-tensioned Bridge Columns with Rocking Detail by : Jeffrey A. Schaefer

Download or read book Unbonded Pre-tensioned Bridge Columns with Rocking Detail written by Jeffrey A. Schaefer and published by . This book was released on 2013 with total page 138 pages. Available in PDF, EPUB and Kindle. Book excerpt: A new pre-tensioned precast bridge system has been developed that provides seismic regions the means to construct high-performance bridges that can be built quickly. The columns are designed to rock as rigid bodies, and their ends are protected against damage by a steel shoe detail. The precast feature of the system will reduce traffic delays by moving construction off-site. The pretensioning feature leads to reduced residual displacements after an earthquake. The use of epoxy-coated strands and the quality control available in a precasting plant lead to enhanced durability. The seismic performance of the system was evaluated with pseudo-static tests of two column-footing sub-assemblies. In one column-footing sub-assembly, a ductile fiber-reinforced concrete (HyFRC developed by Ostertag) was used to fill the steel shoe and the region immediately above it. This column also contained a steel dowel bar that extended down from the body of the column into the footing. The other column did not possess any ductile concrete or dowel bar. During the tests, the columns had very low residual displacements and negligible damage to the concrete, even after being subjected to drift ratios of over 10%.

Seismic Rehabilitation of Column to Pier Cap

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Publisher :
ISBN 13 :
Total Pages : 147 pages
Book Rating : 4.:/5 (886 download)

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Book Synopsis Seismic Rehabilitation of Column to Pier Cap by : Joel Edgar Parks

Download or read book Seismic Rehabilitation of Column to Pier Cap written by Joel Edgar Parks and published by . This book was released on 2014 with total page 147 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Rocking Connection Between a Precast Bridge Column and Cap Beam

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ISBN 13 :
Total Pages : 300 pages
Book Rating : 4.:/5 (91 download)

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Book Synopsis Rocking Connection Between a Precast Bridge Column and Cap Beam by : Bryan Kennedy

Download or read book Rocking Connection Between a Precast Bridge Column and Cap Beam written by Bryan Kennedy and published by . This book was released on 2015 with total page 300 pages. Available in PDF, EPUB and Kindle. Book excerpt: Traditional cast-in-place, concrete bridge construction is often a lengthy undertaking, which is burdensome to the motoring public because of the traffic delays that it causes. Precast construction can accelerate the process by moving fabrication offsite, and then rapidly erecting and connecting bridge components onsite. However, designing connections that are both easy to complete and are robust under seismic loading is challenging. This thesis describes a connection that is intended to meet those criteria, and builds on previous work to do so. Experimental, precast, pre-tensioned specimens developed by Davis et al. (2012) showed good seismic performance, but had significant damage at low drift levels. Adding experimental, ductile materials resulted in less structural damage (Finnsson, 2013), but required unconventional construction materials and awkward fabrication. A new precast, pre-tensioned, column-to-cap beam connection has been developed. The design utilizes (1) unbonded prestressing strands to help the column re-center, (2) bonded reinforcing bars to dissipate energy, (3) a baseplate to permit rigid-body, rocking behavior of the column, and (4) a steel tube to confine the column concrete at the rocking interface. The strands are pre-tensioned when the column is cast, so the connection can be completed without any onsite stressing operations. The connection's seismic performance was evaluated with pseudo-static, cyclic testing of one subassembly. The test results showed that the specimen was stiff at low loads, re-centered well, dissipated energy, and was ductile and durable. Damage to the concrete was negligible and the peak moment strength was measured at drifts exceeding 10%. The system offers a method for achieving accelerated bridge construction that also provides excellent seismic performance and uses only conventional construction materials.

A Pre-tensioned, Rocking Bridge System for Accelerated Construction and Enhanced Seismic Performance

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Publisher :
ISBN 13 :
Total Pages : 259 pages
Book Rating : 4.:/5 (981 download)

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Book Synopsis A Pre-tensioned, Rocking Bridge System for Accelerated Construction and Enhanced Seismic Performance by : Travis E. Thonstad

Download or read book A Pre-tensioned, Rocking Bridge System for Accelerated Construction and Enhanced Seismic Performance written by Travis E. Thonstad and published by . This book was released on 2016 with total page 259 pages. Available in PDF, EPUB and Kindle. Book excerpt: A new bridge bent system has been developed to reduce on-site construction time, minimize residual displacements even after a large earthquake, and reduce seismic damage in comparison with conventional cast-in-place construction. Precast connections used in the system have been tested successfully under quasi-static conditions and found to perform exceptionally well, re-centering with essentially no concrete damage or residual drift after being loaded cyclically to drift ratios of up to 10%. The seismic performance of the new system was evaluated with shaking table tests of a quarter-scale, two-span bridge. The maximum displacements of the bents were similar to those expected for a conventional bridge through the Design Level event (PGA=0.75g). Damage to the column concrete was negligible; the columns would not need any repair after being subjected to the Design Level motion. Residual drift ratios never exceeded 0.2% up to the 221% Design Level motion (PGA = 1.66g). The only structural damage to the bridge was the eventual fracture of the column's longitudinal reinforcement and bulging of the column's confining tubes placed at the ends of the columns, both of which occurred at drift ratios of approximately 6%. Results from the subassembly and shaking table tests were used to develop a design methodology for the new system that aligns with the displacement-based procedure outlined in the AASHTO Guide Specifications for LRFD Seismic Bridge Design (2015). The modifications to this procedure necessary to align with the objectives of the new system are straightforward and could be implemented within current design practice. A modeling strategy for the pre-tensioned bent system is also proposed and specific aspects of this approach are validated against the subassembly and shaking table test results.