Seismic Analysis and Design of Concrete Bridge Systems

Seismic Analysis and Design of Concrete Bridge Systems
Title Seismic Analysis and Design of Concrete Bridge Systems PDF eBook
Author
Publisher
Pages 25
Release 1998
Genre Bridges
ISBN

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Seismic Analysis and Design of Concrete Bridge Systems

Seismic Analysis and Design of Concrete Bridge Systems
Title Seismic Analysis and Design of Concrete Bridge Systems PDF eBook
Author ACI Committee 341
Publisher
Pages 25
Release 1998
Genre Bridges
ISBN

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Seismic Analysis and Design of Concrete Bridge Systems (ACI 341.2R-97)

Seismic Analysis and Design of Concrete Bridge Systems (ACI 341.2R-97)
Title Seismic Analysis and Design of Concrete Bridge Systems (ACI 341.2R-97) PDF eBook
Author American Concrete Institute (Mich.). Committee 340
Publisher
Pages 25
Release 1998
Genre
ISBN

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ACI 341. 2R-14 Report on Analysis and Design of Seismic-Resistant Concrete Bridge Systems

ACI 341. 2R-14 Report on Analysis and Design of Seismic-Resistant Concrete Bridge Systems
Title ACI 341. 2R-14 Report on Analysis and Design of Seismic-Resistant Concrete Bridge Systems PDF eBook
Author American Concrete Institute
Publisher
Pages 44
Release 2014
Genre Bridges
ISBN 9780870318962

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This report is intended for use by practicing engineers and provides a summary of the state-of-the-art analysis, modeling, and design of concrete bridges subjected to strong earthquakes. It is intended to supplement and complement existing documents from the American Association of State Highway and Transportationn Officials (AASHTO), California Department of Transportation, (Caltrans) and various building codes and guidelines. Procedures and philosophies of codes and guidelines are summarized. Linear and nonlinear seismic analysis methods are also discussed and important modeling considerations for different bridge elements, including curved girders and skewed abutments, are highlighted. The report also includes a summary of general seismic-resistant design and construction considerations forconcrete bridges asa well as analysis and design considerations for bridges with seismic isolation.

Nonlinear Seismic Analysis and Design of Reinforced Concrete Bridge Structures

Nonlinear Seismic Analysis and Design of Reinforced Concrete Bridge Structures
Title Nonlinear Seismic Analysis and Design of Reinforced Concrete Bridge Structures PDF eBook
Author Robert K. Dowell
Publisher
Pages 644
Release 1998
Genre
ISBN

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Seismic Design Aids for Nonlinear Pushover Analysis of Reinforced Concrete and Steel Bridges

Seismic Design Aids for Nonlinear Pushover Analysis of Reinforced Concrete and Steel Bridges
Title Seismic Design Aids for Nonlinear Pushover Analysis of Reinforced Concrete and Steel Bridges PDF eBook
Author Jeffrey Ger
Publisher CRC Press
Pages 396
Release 2016-04-19
Genre Technology & Engineering
ISBN 1439837759

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Nonlinear static monotonic (pushover) analysis has become a common practice in performance-based bridge seismic design. The popularity of pushover analysis is due to its ability to identify the failure modes and the design limit states of bridge piers and to provide the progressive collapse sequence of damaged bridges when subjected to major earthq

Seismic Performance of Concrete Buildings

Seismic Performance of Concrete Buildings
Title Seismic Performance of Concrete Buildings PDF eBook
Author Liviu Crainic
Publisher CRC Press
Pages 266
Release 2012-12-10
Genre Technology & Engineering
ISBN 0415631866

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This book examines and presents essential aspects of the behavior, analysis, design and detailing of reinforced concrete buildings subjected to strong seismic activity. Seismic design is an extremely complex problem that has seen spectacular development in the last decades. The present volume tries to show how the principles and methods of earthquake engineering can be applied to seismic analysis and design of reinforced concrete buildings. The book starts with an up-to-date presentation of fundamental aspects of reinforced concrete behavior quantified through constitutive laws for monotonic and hysteretic loading. Basic concepts of post-elastic analysis like plastic hinge, plastic length, fiber models, and stable and unstable hysteretic behaviour are, accordingly, defined and commented upon. For a deeper understanding of seismic design philosophy and of static and dynamic post-elastic analysis, seismic behavior of different types of reinforced concrete structures (frames, walls) is examined in detail. Next, up-to-date methods for analysis and design are presented. The powerful concept of structural system is defined and systematically used to explain the response to seismic activity, as well as the procedures for analysis and detailing of common building structures. Several case studies are presented. The book is not code-oriented. The structural design codes are subject to constant reevaluation and updating. Rather than presenting code provisions, this book offers a coherent system of notions, concepts and methods, which facilitate understanding and application of any design code. The content of this book is based mainly on the authors’ personal experience which is a combination of their teaching and research activity as well as their work in the private sector as structural designers. The work will serve to help students and researchers, as well as structural designers to better understand the fundamental aspects of behavior and analysis of reinforced concrete structures and accordingly to gain knowledge that will ensure a sound design of buildings.