Ultimate Strenght Design Procedure And Ductility Requirements In Reinforced Concrete Structures

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Ultimate Strength Design for Structural Concrete

Author : V. Ramakrishnan,Peter Drummond Arthur
Publisher : Unknown
Page : 288 pages
File Size : 44,5 Mb
Release : 1969
Category : Technology & Engineering
ISBN : STANFORD:36105030133834

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Ultimate Strength Design for Structural Concrete by V. Ramakrishnan,Peter Drummond Arthur Pdf

Design of Concrete Structures Using High-strength Steel Reinforcement

Author : Bahram M. Shahrooz
Publisher : Transportation Research Board
Page : 83 pages
File Size : 45,8 Mb
Release : 2011
Category : Science
ISBN : 9780309155410

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Design of Concrete Structures Using High-strength Steel Reinforcement by Bahram M. Shahrooz Pdf

TRB's National Cooperative Highway Research Program (NCHRP) Report 679: Design of Concrete Structures Using High-Strength Steel Reinforcement evaluates the existing American Association of State Highway and Transportation Officials (AASHTO) Load and Resistance Factor Design (LRFD) Bridge Design Specifications relevant to the use of high-strength reinforcing steel and other grades of reinforcing steel having no discernible yield plateau. The report also includes recommended language to the AASHTO LRFD Bridge Design Specifications that will permit the use of high-strength reinforcing steel with specified yield strengths not greater than 100 ksi. The Appendixes to NCHRP Report 679 were published online.

Displacement-based Seismic Design of Reinforced Concrete Buildings

Author : fib Fédération internationale du béton
Publisher : fib Fédération internationale du béton
Page : 206 pages
File Size : 42,6 Mb
Release : 2003
Category : Technology & Engineering
ISBN : 2883940657

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Displacement-based Seismic Design of Reinforced Concrete Buildings by fib Fédération internationale du béton Pdf

A brief summary of the history of seismic design as given in chapter 1, indicates that initially design was purely based on strength or force considerations. When the importance of displacement, however, became better appreciated, it was attempted to modify the existing force-based approach in order to include considerations of displacement, rather than to totally reconsider the procedure on a more rational basis. In the last decade, then, several researchers started pointing out this inconsistency, proposing displacement-based approaches for earthquake engineering evaluation and design, with the aim of providing improved reliability in the engineering process by more directly relating computed response and expected structural performance. The main objective of this report is to summarize, critically review and compare the displacement - based approaches proposed in the literature, thus favouring code implementation and practical use of rational and reliable methods. Chapter 2 Seismic performance and design objectives of this report introduces concepts of performance levels, seismic hazard representation, and the coupling of performance and hazard to define performance objectives. In fact, for displacement analysis to be relevant in the context of performance-based design, the structural engineer must select appropriate performance levels and seismic loadings. A critical review of some engineering limit states appropriate to the different performance levels is therefore proposed. In chapter 3 Conceptual basis for displacement-based earthquake resistant design, the fundamental principles associated with displacement of the ground during an earthquake and the effects, in terms of displacement, in the structure, are reviewed. The historical development guides the presentation with a review of general linear and nonlinear structural dynamics principles, general approaches to estimate displacement, for both ground and structure, and finally a general presentation of the means to measure and judge the appropriateness of the displacements of the structure in section. Chapter 4 Approaches and procedures for displacement-based design can be somehow considered the fundamental part of the report, since a critical summary of the displacement - based approaches proposed by different researchers is presented there. Displacement - based design may require specific characterization of the input ground motion, a topic addressed in Chapter 5 Seismic input. In general, various pertinent definitions of input motion for non-code format analysis are included, while peak ground parameters necessary for code base shear equations are only addressed as needed for the definition of motion for analysis. Chapter 6 Displacement capacity of members and systems addresses the fundamental problem of evaluating the inelastic displacement capacity of reinforced concrete members and realistic values of their effective cracked stiffness at yielding, including effects of shear and inclined cracking, anchorage slip, bar buckling and of load cycling. In Chapter 7 Application and evaluation of displacement-based approaches, some of the many different displacement based design procedures briefly introduced in Chapter 4 are applied to various case studies, identifying and discussing the difficulties a designer may encounter when trying to use displacement based design. Results for five different case studies designed in accordance with eight different displacement based design methods are presented. Although in general case studies are considered a useful but marginal part of a state of the art document, in this case it has to be noted that chapter 7 is possibly the most innovative and fundamental part of the whole report. The conclusions of chapter 7 are the fundamental and essential conclusions of the document and allow foreseeing a bright future for displacement - based design approaches. The state-of-art report has been elaborated over a period of 4 years by Task Group 7.2 Displacement-based design and assessment of fib Commission 7Seismic design, a truly international team of experts, representing the expertise and experience of all the important seismic regions of the world. In October 2002 the final draft of the Bulletin was presented to the public during the 1st fibCongress in Osaka. It was also there that it was approved by fib Commission 7Seismic Design.

Reinforced Concrete Structures: Analysis and Design

Author : David D. E. E. Fanella
Publisher : McGraw Hill Professional
Page : 652 pages
File Size : 50,9 Mb
Release : 2010-12-06
Category : Technology & Engineering
ISBN : 9780071638357

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Reinforced Concrete Structures: Analysis and Design by David D. E. E. Fanella Pdf

A PRACTICAL GUIDE TO REINFORCED CONCRETE STRUCTURE ANALYSIS AND DESIGN Reinforced Concrete Structures explains the underlying principles of reinforced concrete design and covers the analysis, design, and detailing requirements in the 2008 American Concrete Institute (ACI) Building Code Requirements for Structural Concrete and Commentary and the 2009 International Code Council (ICC) International Building Code (IBC). This authoritative resource discusses reinforced concrete members and provides techniques for sizing the cross section, calculating the required amount of reinforcement, and detailing the reinforcement. Design procedures and flowcharts guide you through code requirements, and worked-out examples demonstrate the proper application of the design provisions. COVERAGE INCLUDES: Mechanics of reinforced concrete Material properties of concrete and reinforcing steel Considerations for analysis and design of reinforced concrete structures Requirements for strength and serviceability Principles of the strength design method Design and detailing requirements for beams, one-way slabs, two-way slabs, columns, walls, and foundations

Reinforced Concrete

Author : B.S. Choo,T.J. MacGinley
Publisher : CRC Press
Page : 479 pages
File Size : 44,7 Mb
Release : 2018-10-08
Category : Architecture
ISBN : 9781482266986

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Reinforced Concrete by B.S. Choo,T.J. MacGinley Pdf

This new edition of a highly practical text gives a detailed presentation of the design of common reinforced concrete structures to limit state theory in accordance with BS 8110.

Reinforced Concrete Beams, Columns and Frames

Author : Charles Casandjian,Noël Challamel,Christophe Lanos,Jostein Hellesland
Publisher : John Wiley & Sons
Page : 226 pages
File Size : 53,7 Mb
Release : 2013-02-05
Category : Science
ISBN : 9781118639467

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Reinforced Concrete Beams, Columns and Frames by Charles Casandjian,Noël Challamel,Christophe Lanos,Jostein Hellesland Pdf

This book is focused on the theoretical and practical design of reinforced concrete beams, columns and frame structures. It is based on an analytical approach of designing normal reinforced concrete structural elements that are compatible with most international design rules, including for instance the European design rules – Eurocode 2 – for reinforced concrete structures. The book tries to distinguish between what belongs to the structural design philosophy of such structural elements (related to strength of materials arguments) and what belongs to the design rule aspects associated with specific characteristic data (for the material or loading parameters). Reinforced Concrete Beams, Columns and Frames – Mechanics and Design deals with the fundamental aspects of the mechanics and design of reinforced concrete in general, both related to the Serviceability Limit State (SLS) and the Ultimate Limit State (ULS). A second book, entitled Reinforced Concrete Beams, Columns and Frames – Section and Slender Member Analysis, deals with more advanced ULS aspects, along with instability and second-order analysis aspects. Some recent research results including the use of non-local mechanics are also presented. This book is aimed at Masters-level students, engineers, researchers and teachers in the field of reinforced concrete design. Most of the books in this area are very practical or code-oriented, whereas this book is more theoretically based, using rigorous mathematics and mechanics tools. Contents 1. Design at Serviceability Limit State (SLS). 2. Verification at Serviceability Limit State (SLS). 3. Concepts for the Design at Ultimate Limit State (ULS). 4. Bending-Curvature at Ultimate Limit State (ULS). Appendix 1. Cardano’s Method. Appendix 2. Steel Reinforcement Table. About the Authors Charles Casandjian was formerly Associate Professor at INSA (French National Institute of Applied Sciences), Rennes, France and the chairman of the course on reinforced concrete design. He has published work on the mechanics of concrete and is also involved in creating a web experience for teaching reinforced concrete design – BA-CORTEX. Noël Challamel is Professor in Civil Engineering at UBS, University of South Brittany in France and chairman of the EMI-ASCE Stability committee. His contributions mainly concern the dynamics, stability and inelastic behavior of structural components, with special emphasis on Continuum Damage Mechanics (more than 70 publications in International peer-reviewed journals). Christophe Lanos is Professor in Civil Engineering at the University of Rennes 1 in France. He has mainly published work on the mechanics of concrete, as well as other related subjects. He is also involved in creating a web experience for teaching reinforced concrete design – BA-CORTEX. Jostein Hellesland has been Professor of Structural Mechanics at the University of Oslo, Norway since January 1988. His contribution to the field of stability has been recognized and magnified by many high-quality papers in famous international journals such as Engineering Structures, Thin-Walled Structures, Journal of Constructional Steel Research and Journal of Structural Engineering.

Concrete Beams with Openings

Author : M. A. Mansur,Kiang-Hwee Tan
Publisher : CRC Press
Page : 240 pages
File Size : 40,9 Mb
Release : 1999-01-29
Category : Technology & Engineering
ISBN : 0849374359

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Concrete Beams with Openings by M. A. Mansur,Kiang-Hwee Tan Pdf

This book compiles state-of-the-art information on the behavior, analysis, and design of concrete beams containing transverse openings. Discussions include the need, effects, and classification of openings as well as the general requirements for fulfilling design pure bending, combined bending, and shear - illustrated with numerical examples torsion alone or in combination with bending and shear large rectangular openings as well as opening size and location on beam behavior methods for analyzing ultimate strength and serviceability requirements effects of torsion in beams large openings in continuous beams and their effects on possible redistribution of internal forces as well as guidelines and procedures for the design of such beams effect of prestressing on the serviceability and strength of beams with web openings design against cracking at openings and ultimate loads Concrete Beams with Openings serves as an invaluable source of information for designers and practicing engineers, especially useful since little or no provision or guidelines are currently available in most building codes.

Reinforced Concrete Design to BS 8110 Simply Explained

Author : A. Allen
Publisher : CRC Press
Page : 294 pages
File Size : 47,5 Mb
Release : 2002-12-24
Category : Architecture
ISBN : 9780203473054

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Reinforced Concrete Design to BS 8110 Simply Explained by A. Allen Pdf

This highly successful book describes the background to the design principles, methods and procedures required in the design process for reinforced concrete structures. The easy to follow style makes it an ideal reference for students and professionals alike.

FRP Composites for Reinforced and Prestressed Concrete Structures

Author : Perumalsamy Balaguru,Antonio Nanni,James Giancaspro
Publisher : CRC Press
Page : 348 pages
File Size : 54,5 Mb
Release : 2008-11-05
Category : Technology & Engineering
ISBN : 9780203926888

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FRP Composites for Reinforced and Prestressed Concrete Structures by Perumalsamy Balaguru,Antonio Nanni,James Giancaspro Pdf

High strength fibre composites (FRPs) have been used with civil structures since the 1980s, mostly in the repair, strengthening and retrofitting of concrete structures. This has attracted considerable research, and the industry has expanded exponentially in the last decade. Design guidelines have been developed by professional organizations in a number of countries including USA, Japan, Europe and China, but until now designers have had no publication which provides practical guidance or accessible coverage of the fundamentals. This book fills this void. It deals with the fundamentals of composites, and basic design principles, and provides step-by-step guidelines for design. Its main theme is the repair and retrofit of un-reinforced, reinforced and prestressed concrete structures using carbon, glass and other high strength fibre composites. In the case of beams, the focus is on their strengthening for flexure and shear or their stiffening. The main interest with columns is the improvement of their ductility; and both strengthening and ductility improvement of un-reinforced structures are covered. Methods for evaluating the strengthened structures are presented. Step by step procedures are set out, including flow charts, for the various structural components, and design examples and practice problems are used to illustrate. As infrastructure ages worldwide, and its demolition and replacement becomes less of an option, the need for repair and retrofit of existing facilities will increase. Besides its audience of design professionals, this book suits graduate and advanced undergraduate students.

Strength Design for Reinforced-concrete Hydraulic Structures

Author : American Society of Civil Engineers
Publisher : Unknown
Page : 48 pages
File Size : 54,7 Mb
Release : 1993
Category : Technology & Engineering
ISBN : UOM:39015032936604

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Strength Design for Reinforced-concrete Hydraulic Structures by American Society of Civil Engineers Pdf

Strength Design for Reinforced-Concrete Hydraulic Structures is written in sufficient detail to not only provide the designer with design procedures, but also to present examples of their application. A review of general detailing requirements, as well as strength and serviceability requirements, create a strong understanding of the strength-design method. Latter chapters feature examples that demonstrate load-factor application, the design of members subjected to combined flexural and axial loads, the design of members subjected to biaxial bending, and the design for shear strength, including provisions for both special straight and curved members.

Compressive Force-Path Method

Author : Michael D Kotsovos
Publisher : Springer Science & Business Media
Page : 221 pages
File Size : 44,9 Mb
Release : 2013-10-04
Category : Technology & Engineering
ISBN : 9783319004884

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Compressive Force-Path Method by Michael D Kotsovos Pdf

This book presents a method which simplifies and unifies the design of reinforced concrete (RC) structures and is applicable to any structural element under both normal and seismic loading conditions. The proposed method has a sound theoretical basis and is expressed in a unified form applicable to all structural members, as well as their connections. It is applied in practice through the use of simple failure criteria derived from first principles without the need for calibration through the use of experimental data. The method is capable of predicting not only load-carrying capacity but also the locations and modes of failure, as well as safeguarding the structural performance code requirements. In this book, the concepts underlying the method are first presented for the case of simply supported RC beams. The application of the method is progressively extended so as to cover all common structural elements. For each structural element considered, evidence of the validity of the proposed method is presented together with design examples and comparisons with current code specifications. The method has been found to produce design solutions which satisfy the seismic performance requirements of current codes in all cases investigated to date, including structural members such as beams, columns, and walls, beam-to-beam or column-to-column connections, and beam-to-column joints.

Reinforced and Prestressed Concrete Design to EC2

Author : Eugene Obrien,Andrew Dixon,Emma Sheils
Publisher : CRC Press
Page : 704 pages
File Size : 41,7 Mb
Release : 2017-09-01
Category : Technology & Engineering
ISBN : 9781351988483

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Reinforced and Prestressed Concrete Design to EC2 by Eugene Obrien,Andrew Dixon,Emma Sheils Pdf

Concrete is an integral part of twenty-first century structural engineering, and an understanding of how to analyze and design concrete structures is a vital part of training as a structural engineer. With Eurocode legislation increasingly replacing British Standards, it’s also important to know how this affects the way you can work with concrete. Newly revised to Eurocode 2, this second edition retains the original’s emphasis on qualitative understanding of the overall behaviour of concrete structures. Now expanded, with a new chapter dedicated to case studies, worked examples, and exercise examples, it is an even more comprehensive guide to conceptual design, analysis, and detailed design of concrete structures. The book provides civil and structural engineering students with complete coverage of the analysis and design of reinforced and prestressed concrete structures. Great emphasis is placed on developing a qualitative understanding of the overall behaviour of structures.

Structural Concrete, Volume 1

Author : fib Fédération internationale du béton
Publisher : fib Fédération internationale du béton
Page : 308 pages
File Size : 42,6 Mb
Release : 2009-01-01
Category : Technology & Engineering
ISBN : 9782883940918

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Structural Concrete, Volume 1 by fib Fédération internationale du béton Pdf

Design of Modern Highrise Reinforced Concrete Structures

Author : Hiroyuki Aoyama
Publisher : World Scientific
Page : 462 pages
File Size : 51,6 Mb
Release : 2001
Category : Technology & Engineering
ISBN : 9781860942396

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Design of Modern Highrise Reinforced Concrete Structures by Hiroyuki Aoyama Pdf

This book presents the results of a Japanese national research project carried out in 1988-1993, usually referred to as the New RC Project. Developing advanced reinforced concrete building structures with high strength and high quality materials under its auspices, the project aimed at promoting construction of highrise reinforced concrete buildings in highly seismic areas such as Japan. The project covered all the aspects of reinforced concrete structures, namely materials, structural elements, structural design, construction, and feasibility studies. In addition to presenting these results, the book includes two chapters giving an elementary explanation of modern analytical techniques, i.e. finite element analysis and earthquake response analysis.

Reinforced Concrete Design

Author : S. U. Pillai,Marie-Anne Erki,Donald Wayne Kirk
Publisher : Whitby, Ont. : McGraw-Hill Ryerson
Page : 644 pages
File Size : 40,8 Mb
Release : 1999
Category : Technology & Engineering
ISBN : STANFORD:36105021503391

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Reinforced Concrete Design by S. U. Pillai,Marie-Anne Erki,Donald Wayne Kirk Pdf