Unified Theory of Reinforced Concrete

Unified Theory of Reinforced Concrete
Author: Thomas T.C. Hsu
Publsiher: Routledge
Total Pages: 336
Release: 2017-09-29
Genre: Technology & Engineering
ISBN: 9781351406109

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Reinforced concrete structures are subjected to a complex variety of stresses and strains. The four basic actions are bending, axial load, shear, and torsion. Presently, there is no single comprehensive theory for reinforced concrete structural behavior that addresses all of these basic actions and their interactions. Furthermore, there is little consistency among countries around the world in their building codes, especially in the specifications for shear and torsion. Unified Theory of Reinforced Concrete addresses this serious problem by integrating available information with new research data, developing one unified theory of reinforced concrete behavior that embraces and accounts for all four basic actions and their combinations. The theory is presented in a systematic manner, elucidating its five component models from a pedagogical and historical perspective while emphasizing the fundamental principles of equilibrium, compatibility, and the constitutive laws of materials. The significance of relationships between models and their intrinsic consistencies are emphasized. This theory can serve as the foundation on which to build a universal design code that can be adopted internationally. In addition to frames, the book explains the fundamental concept of the design of wall-type and shell-type structures. Unified Theory of Reinforced Concrete will be an important reference for all engineers involved in the design of concrete structures. The book can also serve well as a text for a graduate course in structural engineering.

Unified Theory of Concrete Structures

Unified Theory of Concrete Structures
Author: Thomas T. C. Hsu,Yi-Lung Mo
Publsiher: John Wiley & Sons
Total Pages: 518
Release: 2010-03-16
Genre: Technology & Engineering
ISBN: 0470688882

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Unified Theory of Concrete Structures develops an integrated theory that encompasses the various stress states experienced by both RC & PC structures under the various loading conditions of bending, axial load, shear and torsion. Upon synthesis, the new rational theories replace the many empirical formulas currently in use for shear, torsion and membrane stress. The unified theory is divided into six model components: a) the struts-and-ties model, b) the equilibrium (plasticity) truss model, c) the Bernoulli compatibility truss model, d) the Mohr compatibility truss model, e) the softened truss model, and f) the softened membrane model. Hsu presents the six models as rational tools for the solution of the four basic types of stress, focusing on the significance of their intrinsic consistencies and their inter-relationships. Because of its inherent rationality, this unified theory of reinforced concrete can serve as the basis for the formulation of a universal and international design code. Includes an appendix and accompanying website hosting the authors’ finite element program SCS along with instructions and examples Offers comprehensive coverage of content ranging from fundamentals of flexure, shear and torsion all the way to non-linear finite element analysis and design of wall-type structures under earthquake loading. Authored by world-leading experts on torsion and shear

Unified Shear Design Theory for Reinforced Concrete Deep Members

Unified Shear Design Theory for Reinforced Concrete Deep Members
Author: Jesús José Suárez-Rodríguez
Publsiher: Unknown
Total Pages: 484
Release: 1977
Genre: Reinforced concrete construction
ISBN: CORNELL:31924004749069

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Design of Highway Bridges

Design of Highway Bridges
Author: Richard M. Barker,Jay A. Puckett
Publsiher: John Wiley & Sons
Total Pages: 560
Release: 2021-03-23
Genre: Technology & Engineering
ISBN: 9781119646334

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The latest in bridge design and analysis—revised to reflect the eighth edition of the AASHTO LRFD specifications Design of Highway Bridges: An LRFD Approach, 4th Edition, offers up-to-date coverage of engineering fundamentals for the design of short- and medium-span bridges. Fully updated to incorporate the 8th Edition of the AASHTO Load and Resistance Factor Design Specifications, this invaluable resource offers civil engineering students and practitioners a a comprehensive introduction to the latest construction methods and materials in bridge design, including Accelerated Bridge Construction (ABC), ultra high-performance concrete (UHPC), and Practical 3D Rigorous Analysis. This updated Fourth Edition offers: Dozens of end-of-chapter worked problems and design examples based on the latest AASHTO LRFD Specifications. Access to a Solutions Manual and multiple bridge plans including cast-in-place, precast concrete, and steel multi-span available on the Instructor’s companion website From gaining base knowledge of the AASHTO LRFD specifications to detailed guidance on highway bridge design, Design of Highway Bridges is the one-stop reference for civil engineering students and a key study resource for those seeking engineering licensure through the Principles and Practice of Engineering (PE) exam.

Experimental Vibration Analysis for Civil Structures

Experimental Vibration Analysis for Civil Structures
Author: Joel P. Conte,Rodrigo Astroza,Gianmario Benzoni,Glauco Feltrin,Kenneth J. Loh,Babak Moaveni
Publsiher: Springer
Total Pages: 918
Release: 2017-10-11
Genre: Technology & Engineering
ISBN: 9783319674438

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This edited volume presents selected contributions from the International Conference on Experimental Vibration Analysis of Civil Engineering Structures held in San Diego, California in 2017 (EVACES2017). The event brought together engineers, scientists, researchers, and practitioners, providing a forum for discussing and disseminating the latest developments and achievements in all major aspects of dynamic testing for civil engineering structures, including instrumentation, sources of excitation, data analysis, system identification, monitoring and condition assessment, in-situ and laboratory experiments, codes and standards, and vibration mitigation.

Infrastructure Systems for Nuclear Energy

Infrastructure Systems for Nuclear Energy
Author: Thomas T. C. Hsu,Chiun-lin Wu,Jui-Liang Lin
Publsiher: John Wiley & Sons
Total Pages: 576
Release: 2013-12-02
Genre: Technology & Engineering
ISBN: 9781118536261

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Developing sufficient energy resources to replace coal, oil andgas is a globally critical necessity. Alternatives to fossil fuelssuch as wind, solar, or geothermal energies are desirable, but theusable quantities are limited and each has inherent deterrents. Theonly virtually unlimited energy source is nuclear energy, wheresafety of infrastructure systems is the paramountconcern. Infrastructure Systems for Nuclear Energy addresses theanalysis and design of infrastructures associated with nuclearenergy. It provides an overview of the current and future nuclearpower industry and the infrastructure systems from the perspectivesof regulators, operators, practicing engineers and researchacademics. This book also provides details on investigations ofcontainment structures, nuclear waste storage facilities and theapplications of commercial/academic computer software. Specific environments that challenge the behavior of nuclearpower plants infrastructure systems such as earthquake, blast, hightemperature, irradiation effects, soil-structure interactioneffect, etc., are also discussed. Key features:• Includes contributions from global expertsrepresenting academia and industry • Provides an overview of the nuclear power industry andnuclear infrastructure systems • Presents the state-of-the-art as well as the futuredirection for nuclear civil infrastructure systems Infrastructure Systems for Nuclear Energy is a comprehensive,up-to-date reference for researchers and practitioners working inthis field and for graduate studies in civil and mechanicalengineering.

Dynamic Behavior of Concrete Structures

Dynamic Behavior of Concrete Structures
Author: Y.L. Mo
Publsiher: Elsevier
Total Pages: 409
Release: 2013-10-22
Genre: Technology & Engineering
ISBN: 9781483290478

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This book is concerned with the dynamic behavior of reinforced/prestressed concrete structures, such as: buildings and bridges. It discusses how to predict or check the real inelastic behavior of concrete structures subjected to dynamic loads, including equipment loads, earthquake motions, seismic interactions and missile impacts. A number of techniques have recently been developed to assist in evaluating such occurrences. This book is intended to apply structural dynamics to concrete structures and is appropriate as a textbook for an introductory course in dynamic behavior of concrete structures at the upper-undergraduate or graduate level as well as for practicing engineers.

Advances in Engineering Materials Structures and Systems Innovations Mechanics and Applications

Advances in Engineering Materials  Structures and Systems  Innovations  Mechanics and Applications
Author: Alphose Zingoni
Publsiher: CRC Press
Total Pages: 2435
Release: 2019-08-21
Genre: Technology & Engineering
ISBN: 9780429761164

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Advances in Engineering Materials, Structures and Systems: Innovations, Mechanics and Applications comprises 411 papers that were presented at SEMC 2019, the Seventh International Conference on Structural Engineering, Mechanics and Computation, held in Cape Town, South Africa, from 2 to 4 September 2019. The subject matter reflects the broad scope of SEMC conferences, and covers a wide variety of engineering materials (both traditional and innovative) and many types of structures. The many topics featured in these Proceedings can be classified into six broad categories that deal with: (i) the mechanics of materials and fluids (elasticity, plasticity, flow through porous media, fluid dynamics, fracture, fatigue, damage, delamination, corrosion, bond, creep, shrinkage, etc); (ii) the mechanics of structures and systems (structural dynamics, vibration, seismic response, soil-structure interaction, fluid-structure interaction, response to blast and impact, response to fire, structural stability, buckling, collapse behaviour); (iii) the numerical modelling and experimental testing of materials and structures (numerical methods, simulation techniques, multi-scale modelling, computational modelling, laboratory testing, field testing, experimental measurements); (iv) innovations and special structures (nanostructures, adaptive structures, smart structures, composite structures, bio-inspired structures, shell structures, membranes, space structures, lightweight structures, long-span structures, tall buildings, wind turbines, etc); (v) design in traditional engineering materials (steel, concrete, steel-concrete composite, aluminium, masonry, timber, glass); (vi) the process of structural engineering (conceptualisation, planning, analysis, design, optimization, construction, assembly, manufacture, testing, maintenance, monitoring, assessment, repair, strengthening, retrofitting, decommissioning). The SEMC 2019 Proceedings will be of interest to civil, structural, mechanical, marine and aerospace engineers. Researchers, developers, practitioners and academics in these disciplines will find them useful. Two versions of the papers are available. Short versions, intended to be concise but self-contained summaries of the full papers, are in this printed book. The full versions of the papers are in the e-book.