Civil MDC

Concrete Structures Books

Concrete Structures Books

Reinforced Concrete Slabs Book by R. Park and William Leo Gamble 1

Reinforced Concrete Slabs Book by R. Park and William Leo Gamble

Comprehensive and accessible, Reinforced Concrete Slabs, Second Edition appeals to a broad range of readers-from senior and graduate students in civil and architectural engineering to practicing structural engineers, architects, contractors, construction engineers, and consultants. Reference: Park, R., & Gamble, W. L. (2000). Reinforced concrete slabs. John Wiley & Sons.

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Seismic Design of Reinforced Concrete and Masonry Buildings Book by M. J. N. Priestley and Thomas Paulay 2

Seismic Design of Reinforced Concrete and Masonry Buildings Book by M. J. N. Priestley and Thomas Paulay

TABLE OF CONTENTS Causes and Effects of Earthquakes: Seismicity–StructuralResponse–Seismic Action. Principles of Member Design. Reinforced Concrete Ductile Frames. Structural Walls. Dual Systems. Masonry Structures. Reinforced Concrete Buildings with Restricted Ductility. Foundation Structures. Appendices. Symbols. References. Index. Reference: Priestley, M. J. N., & Paulay, T. (1992). Seismic design of reinforced concrete and masonry buildings. New York:

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Wind and Earthquake Resistant Buildings: Structural Analysis and Design Book by Bungale S. Taranath 3

Wind and Earthquake Resistant Buildings: Structural Analysis and Design Book by Bungale S. Taranath

The primary objective of this book is to disseminate information on the latest concepts, techniques, and design data to structural engineers engaged in the design of wind- and seismic-resistant buildings. Integral to the book are recent advances in seismic design, particularly those related to buildings in zones of low and moderate seismicity. These stipulations, reflected

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STRUCTURES DETAILING MANUAL; by FLORIDA DEPARTMENT OF TRANSPORTATION 4

STRUCTURES DETAILING MANUAL; by FLORIDA DEPARTMENT OF TRANSPORTATION

This volume of the Structures Manual provides steering for drafting and description criteria and ways to be used in getting ready American state Department of Transportation (FDOT) contract plans for structural parts or systems. These parts or systems embody bridges, overhead sign structures, earth retentive structures and different miscellaneous main road structures. The SDM includes

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Tall Building Design Lectures by Dr Luis Prieto.Portar, PhD + ETABS Modelling 5

Tall Building Design Lectures by Dr Luis Prieto.Portar, PhD + ETABS Modelling

Topics *** Why-tall- buildings – Structural-Types – Unusual-Structures – Design-Criteria -Loads Comparing-Codes Wind-Forces ASCE-7-Wind-Method-2 ASCE-7-Wind-Simplified ASCE-I-Wind Tall-guildings – Earthquakes -Seismic- Forces-on- Buildings – Floor-Systems – Direct- method- for- Concrete-Slabsor-Systems Example- Direct-method-for-One-way Slabs Example – Direct- method- for- Two- Way-Slabs – Advantage- of- RC -Post-tensioning-Concrete-SIabs Example-of- PT-SIab Example-of- PT- Two- Way-Slabs Models-for-the-Analysis – Braced- Frame-Structures Rigid-

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ASCE 7-16 Minimum Design Loads and Associated Criteria for Buildings and Other Structures 6

ASCE 7-16 Minimum Design Loads and Associated Criteria for Buildings and Other Structures

Minimum style masses and Associated Criteria for Buildings and different Structures, ASCE/SEI 7-16, provides the foremost up-to-date and coordinated loading normal for general structural style. ASCE 7-16 describes the means that for deciding style masses together with dead, live, soil, flood, tsunami, snow, rain, part ice, earthquake, wind, and fire, yet as a way to

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10 Story Concrete Building (step by step) in ETABS (Includes Response Spectrum Method + Equilent lateral force Method + Time History Analysis ) 7

10 Story Concrete Building (step by step) in ETABS (Includes Response Spectrum Method + Equilent lateral force Method + Time History Analysis )

10 Story Concrete Building Types of Analysis What Is Response Spectrum Analysis? Response spectrum analysis is a method to estimate the structural response to short, nondeterministic, transient dynamic events. Examples of such events are earthquakes and shocks. Since the exact time history of the load is not known, it is difficult to perform a time-dependent

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Hand Calculations of Structural Elements (See the list) 8

Hand Calculations of Structural Elements (See the list)

List of Contents ******* 1. Gravity retailing wall 2. One way joist 3. Concrete staircase 4. Rectangular footing 5. Square footing 6. Masonry wall footing 7. RCC wall footing 8. Spiral column 9. Tied column 10. Rectangular water tank 11. Circular water tank 12. Design of swimming pool 13. Design of one way slab 14.

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ACI 318 - 19 Building Code Requirements for Structural Concrete 9

ACI 318 – 19 Building Code Requirements for Structural Concrete

The “Building Code Requirements for Structural Concrete” (“Code”) provides minimum requirements for the materials, design, and detailing of structural concrete buildings and, where applicable, nonbuilding structures. This Code was developed by an ANSI-approved consensus process and addresses structural systems, members, and connections, including cast-in-place, precast, shotcrete, plain, nonprestressed, prestressed, and composite construction. Among the subjects

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Dynamics of Structures: Theory and applications to earthquake engineering by Anil K. Chopra (4th Edition) 10

Dynamics of Structures: Theory and applications to earthquake engineering by Anil K. Chopra (4th Edition)

Table of Contents I. Single Degree of Freedom Systems 1. Equations of Motion, Problem Statement, and Solution Methods 2. Free Vibration 3. Response to Harmonic and Periodic Excitations 4. Response to Arbitrary, Step, and Pulse Excitations 5. Numerical Evaluation of Dynamic Response 6. Earthquake Response of Linear Systems 7. Earthquake Response of Inelastic Systems 8.

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Thermal Cracking of Massive Concrete Structures , Eduardo M.R. Fairbairn, Miguel Azenha [2019] 11

Thermal Cracking of Massive Concrete Structures , Eduardo M.R. Fairbairn, Miguel Azenha [2019]

Table of contents :Front Matter ….Pages i-xxx Introduction (Eduardo M. R. Fairbairn, Miguel Azenha)….Pages 1-12 Hydration and Heat Development (Laurie Lacarrière, Agnieszka Knoppik, Wilson Ricardo Leal da Silva, Tulio Honorio, Vit Šmilauer, Shingo Asamoto et al.)….Pages 13-46 Thermal Properties (Mateusz Wyrzykowski, Agnieszka Knoppik, Wilson R. Leal da Silva, Pietro Lura, Tulio Honorio, Yunus Ballim et

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Prestressed Concrete: Building, Design, and Construction , Charles W. Dolan, H. R. (Trey) Hamilton [2019] 12

Prestressed Concrete: Building, Design, and Construction , Charles W. Dolan, H. R. (Trey) Hamilton [2019]

Table of contents :Front Matter ….Pages i-xxiii Basic Concepts (Charles W. Dolan, H. R. (Trey) Hamilton)….Pages 1-30 Prestressed Concrete Applications (Charles W. Dolan, H. R. (Trey) Hamilton)….Pages 31-61 Materials (Charles W. Dolan, H. R. (Trey) Hamilton)….Pages 63-84 Partial Loss of Prestress (Charles W. Dolan, H. R. (Trey) Hamilton)….Pages 85-107 Flexural Basics of Analysis and Design

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Concrete Structures in Earthquake , Thomas T. C. Hsu [2019] 13

Concrete Structures in Earthquake , Thomas T. C. Hsu [2019]

Front Matter ….Pages i-xviii Periodic Material-Based Three-Dimensional (3D) Seismic Base Isolators for Small Modular Reactors (Y. L. Mo, Witarto Witarto, Kuo-Chun Chang, Shiang-Jung Wang, Yu Tang, Robert P. Kassawara)….Pages 1-16 Shear Behavior Prediction of Non-ductile Reinforced Concrete Members in Earthquake (Yi-An Li, Shyh-Jiann Hwang)….Pages 17-27 Experimental Study of Novel Concrete Frames Considering Earthquake and Progressive

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Uniform Building Code (UBC 97), Volumne I, II and III 14

Uniform Building Code (UBC 97), Volumne I, II and III

    The Uniform Building Codetis dedicated to the development of better building construction and greater safety to the public by uniformity in building laws. The code is founded on broad-based principles that make possible the use of new materials and new construction systems. The Uniform Building Code was first enacted by the InternationalConference of

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PCI Design Handbook: Precast and Prestressed Concrete, Sixth Edition 15

PCI Design Handbook: Precast and Prestressed Concrete, Sixth Edition

The standard for the design manufacture and use of structural precast/prestressed concrete and architectural precast concrete. This edition design guide for precast and prestressed concrete provides easy to follow design procedures; numerical examples; and both new and updated design aids. It provides the designer with comprehensive and efficient procedures for the safe design of both

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Prestressed Concrete Design, 2nd Edition, M.K. Hurst 16

Prestressed Concrete Design, 2nd Edition, M.K. Hurst

Table of ContentsPreface. Symbols. Basic principles. Properties of materials. Limit state design. Loss of prestress force. Analysis of sections. Deflections. Shear. Prestressing systems and anchorages. Design of members. Composite construction. Indeterminate structures. Prestressed flat slabs. Design examples. Bibliography. Index. Solutions to problems.

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Strip Method Design Handbook by A. Hillerborg (For design of reinforced concrete slabs) 17

Strip Method Design Handbook by A. Hillerborg (For design of reinforced concrete slabs)

The Strip Method Design Handbook is a thorough guide to the use of the strip method, developed by Arne Hillerborg, for design of reinforced concrete slabs. The strip method of design is relevant to many types of slabs including rectangular slabs with all sides supported and regular flat slabs with cantilevering parts. The author discusses

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Design of prestressed concrete to Eurocode 2 by: Raymond Ian Gilbert, Neil Colin Mickleborough, Gianluca Ranzi (2017) 18

Design of prestressed concrete to Eurocode 2 by: Raymond Ian Gilbert, Neil Colin Mickleborough, Gianluca Ranzi (2017)

The design of structures in general, and prestressed concrete structures in particular, requires considerably more information than is contained in building codes. A sound understanding of structural behaviour at all stages of loading is essential. This textbook presents a detailed description and explanation of the behaviour of prestressed concrete members and structures both at service

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Prestressed concrete bridges : design and construction by Nigel R Hewson (2012) 19

Prestressed concrete bridges : design and construction by Nigel R Hewson (2012)

Table of contents :Content: 1. Prestressed concrete in bridgeworks — 2. Prestressing components and equipment — 3. Durability and detailing — 4. Grouting post-tensioned tendons — 5. Prestress design and application — 6. Design of details — 7. Concept design of prestressed concrete bridges — 8. Analysis of prestressed concrete bridges — 9. Slab bridges

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Prestressed Concrete: A Fundamental Approach Book by Edward G Nawy (5th Edition) 20

Prestressed Concrete: A Fundamental Approach Book by Edward G Nawy (5th Edition)

1. Basic Concepts 2. Materials and Systems for Prestressing 3. Partial Loss of Prestress 4. Flexural Design of Prestressed Concrete Elements 5. Shear and Torsional Strength Design 6. Indeterminate Prestressed Concrete Structures 7. Camber, Deflection, and Crack Control 8. Prestressed Compression and Tension Members 9. Two-Way Prestressed Concrete Floor Systems 10. Connections for Prestressed Concrete

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