Reinforced Concrete Structures Analysis and Design 2nd Edition by David A Fanella – Ebook PDF Instant Download/DeliveryISBN: 0071847858, 9780071847858
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Product details:
ISBN-10 : 0071847858
ISBN-13 : 9780071847858
Author: David A Fanella
This comprehensive guide to reinforced concrete structures has been fully revised to cover 2014 updates to the ACI 318 Structural Concrete code Reinforced Concrete Structures: Analysis and Design, Second Edition offers clear explanations of the underlying principles behind reinforced concrete design and provides easy-to-follow analysis, design, and construction techniques. This edition has been thoroughly updated to conform to the new ACI 2014 Building Code. 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. Brand-new information is included on earthquake design and detailing. Easy-to-follow design procedures and illuminating flowcharts guide you through complex code requirements. Concisely explains every provision in the 2014 ACI 318 Structural Concrete code Features a new chapter on design and detailing for earthquake effects Solved problems and real-world examples demonstrate each provision’s proper application Author has written numerous technical publications on the design of reinforced concrete and load determination
Reinforced Concrete Structures Analysis and Design 2nd Table of contents:
1 Introduction
1.1 Reinforced Concrete
1.2 Building Codes and Standards
1.3 Strength and Serviceability
1.4 Reinforced Concrete Members in Building Structures
1.5 Drawings and Specifications
1.6 Construction of Reinforced Concrete Buildings
References
2 Materials
2.1 Introduction
2.2 Concrete
2.3 Reinforcement
References
Problems
Problems in SI Units
3 General Considerations for Analysis and Design
3.1 Introduction
3.2 Loading
3.3 Structural Analysis
References
Problems
Problems in SI Units
4 General Requirements for Strength and Serviceability
4.1 Introduction
4.2 Required Strength
4.3 Design Strength
4.4 Control of Deflections
References
Problems
Problems in SI Units
5 General Principles of the Strength Design Method
5.1 Introduction
5.2 Design Assumptions
5.3 General Principles and Requirements
5.4 One-Way Slabs, Two-Way Slabs, and Beams
5.5 Columns
5.6 Tension Members
5.7 Members Subjected to Flexure and Axial Load
References
Problems
Problems in SI Units
6 Beams and One-Way Slabs
6.1 Introduction
6.2 Mechanics and Behavior of Reinforced Concrete Beams
6.3 Design for Flexure
6.4 Design for Shear
6.5 Design for Torsion
6.6 Deflections
References
Problems
Problems in SI Units
7 Two-Way Slabs
7.1 Introduction
7.2 Two-Way Slab Systems
7.3 Minimum Thickness Requirements
7.4 Analysis Methods
7.5 Design for Flexure
7.6 Design for Shear
7.7 Design Procedure
References
Problems
Problems in SI Units
8 Columns
8.1 Introduction
8.2 Preliminary Column Sizing
8.3 Analysis and Design Methods
8.4 Interaction Diagrams
8.5 Slenderness Effects
8.6 Biaxial Loading
8.7 Reinforcement Details
8.8 Shear Requirements
8.9 Design Procedure
References
Problems
Problems in SI Units
9 Walls
9.1 Introduction
9.2 Design Methods for Axial Loads and Flexure
9.3 Design for Shear
9.4 Reinforcement Details
9.5 Design Procedure
References
Problems
Problems in SI Units
10 Foundations
10.1 Introduction
10.2 Footings
10.3 Mat Foundations
10.4 Pile Caps
10.5 Drilled Piers
References
Problems
Problems in SI Units
11 Design and Detailing for Earthquake Effects
11.1 Introduction
11.2 Seismic Design Criteria
11.3 Seismic-Force-Resisting Systems
11.4 Design and Detailing Requirements
11.5 Ordinary Moment Frames
11.6 Intermediate Moment Frames
11.7 Special Moment Frames
11.8 Special Structural Walls
11.9 Diaphragms
11.10 Foundations
11.11 Members Not Designated as Part of the SFRS
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Tags: Reinforced Concrete, Structures, Analysis, Design, David Fanella