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Edward G. Nawy ... 950 pages - Publisher: Prentice Hall; 4th edition (2002) ... Language: English - ISBN-10: 0130083917- ISBN-13: 978-0130083913

For one-semester, senior/graduate-level courses in Prestressed Concrete in the department of Civil Engineering.Completely revised to reflect the new ACI 318-02 Building Code and International Building Code 2000 and its 2002 modifications, this popular text offers a unique approach to examining the design of prestressed concrete members in a logical, step-by-step trial and adjustment procedure. Encouraging clear, systematic thinking, it integrates handy flow charts to help students better understand the steps needed for design and analysis. Extensive discussions on material properties and concrete performance are provided, as well as an in-depth analysis of prestressing of circular tanks for liquid and gas containment and their prestressed shell roofs.

Edward G. Nawy ... 936 pages - Publisher: Prentice Hall; 6th edition (2009)... Language: English - ISBN-10: 0132417030 - ISBN-13: 978-0132417037

Now reflecting the new 2008 ACI 318-08 Code and the new International Building Code (IBC-2006), this cutting-edge text has been extensively revised to present  state-of-the-art developments in reinforced concrete. The text analyzes the design of reinforced concrete members through a unique and practical step-by-step trial and adjustment procedure. It is supplemented with flowcharts that guide readers logically through key features and underlying theory. Hundreds of photos of tests to failure of concrete elements help readers visualize this behavior. Ideal for practicing engineers who need to contend with the new revisions of the ACI, IBC, and AASHTO Codes.

AASHTO ... 1308 pages - Publisher: AASHTO; 6th edition (2012) ... Languge: English - ASIN: B007HA6Z28 by Amazon

The provisions of these Specifications are intended for the design, evaluation, and rehabilitation bridges and is mandated by FHWA for use on all bridges using federal funding. These Specifications employ the Load and Resistance Factor Design (LRFD) methodology using factors developing from current statistical knowledge of loads and structural performance. Seismic design shall be in accordance with either the provisions in these Specifications or those given in the AASHTO Guide Specifications for LRFD Seismic Bridge Design. Construction specifications consistent with these design specifications are the AASHTO LRFD Bridge Construction Specifications. Unless otherwise specified, the Materials Specifications referenced herein are the AASHTO Standard Specifications for Transportation Materials and Methods of Sampling and Testing. A new chapter on sound barriers includes the material formerly contained in the AASHTO Guide Specifications for Structural Design of Sound Barriers. Mechanical, electrical, and special vehicular and pedestrian safety aspects of movable bridges are not included in this specification.

George G. Penelis, Gregory G. Penelis ... 876 pages - Publisher: CRC Press (March, 2014) ... Language: English - ISBN-10: 0415537630 - ISBN-13: 978-0415537636.

Bearing in mind that reinforced concrete is a key component in a majority of built environment structures, Concrete Buildings in Seismic Regions combines the scientific knowledge of earthquake engineering with a focus on the design of reinforced concrete buildings in seismic regions. This book addresses practical design issues, providing an integrated, comprehensible, and clear presentation that is suitable for design practice. It combines current approaches to seismic analysis and design, with a particular focus on reinforced concrete structures, and includes: an overview of structural dynamics + analysis and design of new R/C buildings in seismic regions  + post-earthquake damage evaluation, pre earthquake assessment of buildings and retrofitting procedures + seismic risk management of R/C buildings within urban nuclei + extended numerical example applications. Concrete Buildings in Seismic Regions determines guidelines for the proper structural system for many types of buildings, explores recent developments, and covers the last two decades of analysis, design, and earthquake engineering. Divided into three parts, the book specifically addresses seismic demand issues and the basic issues of structural dynamics, considers the "capacity" of structural systems to withstand seismic effects in terms of strength and deformation, and highlights existing R/C buildings under seismic action. All of the book material has been adjusted to fit a modern seismic code and offers in-depth knowledge of the background upon which the code rules are based. It complies with the last edition of European Codes of Practice for R/C buildings in seismic regions, and includes references to the American Standards in effect for seismic design.

Antonio Nanni, Antonio De Luca, Hany Jawaheri Zadeh ... 418 pages - Publisher: CRC Press; (March, 2014) ... Language: English - ISBN-10: 0415778824 - ISBN-13: 978-0415778824

Corrosion-resistant, electromagnetic transparent and lightweight fiber-reinforced polymers (FRPs) are accepted as valid alternatives to steel in concrete reinforcement. Reinforced Concrete with FRP Bars: Mechanics and Design, a technical guide based on the authors’ more than 30 years of collective experience, provides principles, algorithms, and practical examples. Well-illustrated with case studies on flexural and column-type members, the book covers internal, non-prestressed FRP reinforcement. It assumes some familiarity with reinforced concrete, and excludes prestressing and near-surface mounted reinforcement applications. The text discusses FRP materials properties, and addresses testing and quality control, durability, and serviceability. It provides a historical overview, and emphasizes the ACI technical literature along with other research worldwide. Includes an explanation of the key physical mechanical properties of FRP bars and their production methods - Provides algorithms that govern design and detailing, including a new formulation for the use of FRP bars in columns - Offers a justification for the development of strength reduction factors based on reliability considerations - Uses a two –story building solved in Mathcad® that can become a template for real projects. This book is mainly intended for practitioners and focuses on the fundamentals of performance and design of concrete members with FRP reinforcement and reinforcement detailing. Graduate students and researchers can use it as a valuable resource.

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