Seismic Design and Performance of Concrete Multi-column Bents for Bridges PDF Download

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Seismic Design and Performance of Concrete Multi-column Bents for Bridges

Seismic Design and Performance of Concrete Multi-column Bents for Bridges PDF Author: Sri Sritharan
Publisher:
ISBN:
Category : Bridges
Languages : en
Pages : 368

Book Description
This report describes the seismic design and performance of two concrete multi-column bents. The first unit contained a precast fully prestressed cap beam while the second unit was designed with a reinforcement concrete cap beam. A mix of conventional and headed reinforcement and mechanical couplers were used in detailing the cap beam of the second unit. Tests were performed with the objective of examining the most efficient cap beam/column details, which were established in previous joint tests, under the maximum feasible shear demand. Tests results showed that both units produced a satisfactory response when subjected to simulated seismic loading.

Seismic Design and Performance of Concrete Multi-column Bents for Bridges

Seismic Design and Performance of Concrete Multi-column Bents for Bridges PDF Author: Sri Sritharan
Publisher:
ISBN:
Category : Bridges
Languages : en
Pages : 368

Book Description
This report describes the seismic design and performance of two concrete multi-column bents. The first unit contained a precast fully prestressed cap beam while the second unit was designed with a reinforcement concrete cap beam. A mix of conventional and headed reinforcement and mechanical couplers were used in detailing the cap beam of the second unit. Tests were performed with the objective of examining the most efficient cap beam/column details, which were established in previous joint tests, under the maximum feasible shear demand. Tests results showed that both units produced a satisfactory response when subjected to simulated seismic loading.

Bridge Engineering Handbook, Second Edition

Bridge Engineering Handbook, Second Edition PDF Author: Wai-Fah Chen
Publisher: CRC Press
ISBN: 1439852189
Category : Technology & Engineering
Languages : en
Pages : 742

Book Description
Over 140 experts, 14 countries, and 89 chapters are represented in the second edition of the Bridge Engineering Handbook. This extensive collection highlights bridge engineering specimens from around the world, contains detailed information on bridge engineering, and thoroughly explains the concepts and practical applications surrounding the subject. Published in five books: Fundamentals, Superstructure Design, Substructure Design, Seismic Design, and Construction and Maintenance, this new edition provides numerous worked-out examples that give readers step-by-step design procedures, includes contributions by leading experts from around the world in their respective areas of bridge engineering, contains 26 completely new chapters, and updates most other chapters. It offers design concepts, specifications, and practice, as well as the various types of bridges. The text includes over 2,500 tables, charts, illustrations, and photos. The book covers new, innovative and traditional methods and practices; explores rehabilitation, retrofit, and maintenance; and examines seismic design and building materials. The fourth book, Seismic Design contains 18 chapters, and covers seismic bridge analysis and design. What’s New in the Second Edition: Includes seven new chapters: Seismic Random Response Analysis, Displacement-Based Seismic Design of Bridges, Seismic Design of Thin-Walled Steel and CFT Piers, Seismic Design of Cable-Supported Bridges, and three chapters covering Seismic Design Practice in California, China, and Italy Combines Seismic Retrofit Practice and Seismic Retrofit Technology into one chapter called Seismic Retrofit Technology Rewrites Earthquake Damage to Bridges and Seismic Design of Concrete Bridges chapters Rewrites Seismic Design Philosophies and Performance-Based Design Criteria chapter and retitles it as Seismic Bridge Design Specifications for the United States Revamps Seismic Isolation and Supplemental Energy Dissipation chapter and retitles it as Seismic Isolation Design for Bridges This text is an ideal reference for practicing bridge engineers and consultants (design, construction, maintenance), and can also be used as a reference for students in bridge engineering courses.

Analysis of Concrete Bridge Joints Subjected to Seismic Actions

Analysis of Concrete Bridge Joints Subjected to Seismic Actions PDF Author: Sivalingam Sritharan
Publisher:
ISBN:
Category :
Languages : en
Pages : 902

Book Description


Proceedings of the 2nd International Conference on Advances in Civil Infrastructure and Construction Materials (CICM 2023), Volume 1

Proceedings of the 2nd International Conference on Advances in Civil Infrastructure and Construction Materials (CICM 2023), Volume 1 PDF Author: M. Shahria Alam
Publisher: Springer Nature
ISBN: 3031632761
Category :
Languages : en
Pages : 463

Book Description


Bridge Engineering Handbook, Five Volume Set

Bridge Engineering Handbook, Five Volume Set PDF Author: Wai-Fah Chen
Publisher: CRC Press
ISBN: 1482255030
Category : Technology & Engineering
Languages : en
Pages : 3042

Book Description
Over 140 experts, 14 countries, and 89 chapters are represented in the second edition of the Bridge Engineering Handbook. This extensive collection provides detailed information on bridge engineering, and thoroughly explains the concepts and practical applications surrounding the subject, and also highlights bridges from around the world. This second edition of the bestselling Bridge Engineering Handbook covers virtually all the information an engineer would need to know about any type of bridge-from planning to construction to maintenance. It contains more than 2,500 tables, charts, and illustrations in a practical, ready-to-use format. An abundance of worked-out examples gives readers numerous practical step-by-step design procedures. Special attention is given to rehabilitation, retrofit, and maintenance. Coverage also includes seismic design and building materials. Thoroughly revised and updated, this second edition contains 26 new chapters.

Design Example of a Multiple Column Bridge Bent Under Seismic Loads Using the Alaska Cast-in-place Steel Shell

Design Example of a Multiple Column Bridge Bent Under Seismic Loads Using the Alaska Cast-in-place Steel Shell PDF Author: Pedro F. Silva
Publisher:
ISBN:
Category : Bridges
Languages : en
Pages : 116

Book Description


Bridge Engineering Handbook

Bridge Engineering Handbook PDF Author: Wai-Fah Chen
Publisher: CRC Press
ISBN: 1439852324
Category : Technology & Engineering
Languages : en
Pages : 722

Book Description
Over 140 experts, 14 countries, and 89 chapters are represented in the second edition of the Bridge Engineering Handbook. This extensive collection highlights bridge engineering specimens from around the world, contains detailed information on bridge engineering, and thoroughly explains the concepts and practical applications surrounding the subjec

Shear Response of Two-column Bridge Bents

Shear Response of Two-column Bridge Bents PDF Author: Donald James Phillippi
Publisher:
ISBN:
Category :
Languages : en
Pages : 918

Book Description


Integral Steel Box-beam Pier Caps

Integral Steel Box-beam Pier Caps PDF Author: Wagdy G. Wassef
Publisher: Transportation Research Board
ISBN: 0309088127
Category : Box girder bridges
Languages : en
Pages : 98

Book Description
Introduction and research approach -- Findings -- Interpretation, appraisal, and application -- Conclusions and suggested research -- References -- Appendixes.

AASHTO Guide Specifications for LRFD Seismic Bridge Design

AASHTO Guide Specifications for LRFD Seismic Bridge Design PDF Author:
Publisher: AASHTO
ISBN: 1560513969
Category : Bridges
Languages : en
Pages : 249

Book Description
Covers seismic design for typical bridge types and applies to non-critical and non-essential bridges. Approved as an alternate to the seismic provisions in the AASHTO LRFD Bridge Design Specifications. Differs from the current procedures in the LRFD Specifications in the use of displacement-based design procedures, instead of the traditional force-based "R-Factor" method. Includes detailed guidance and commentary on earthquake resisting elements and systems, global design strategies, demand modeling, capacity calculation, and liquefaction effects. Capacity design procedures underpin the Guide Specifications' methodology; includes prescriptive detailing for plastic hinging regions and design requirements for capacity protection of those elements that should not experience damage.