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Unified Theory of Reinforced Concrete
  • Language: en
  • Pages: 338

Unified Theory of Reinforced Concrete

  • Type: Book
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  • Published: 1992-12-10
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  • Publisher: CRC Press

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 al...

Unified Theory of Concrete Structures
  • Language: en
  • Pages: 518

Unified Theory of Concrete Structures

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 s...

Development of a Microcracking Technique for Measuring in Situ Stress and Strain
  • Language: en
  • Pages: 62

Development of a Microcracking Technique for Measuring in Situ Stress and Strain

  • Type: Book
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  • Published: 1967
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  • Publisher: Unknown

None

Response Spectrum Method in Seismic Analysis and Design of Structures
  • Language: en
  • Pages: 187

Response Spectrum Method in Seismic Analysis and Design of Structures

  • Type: Book
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  • Published: 2017-11-22
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  • Publisher: Routledge

New developments in the response spectrum method have led to calculations in seismic stresses that are more accurate, and usually lower, than those obtained by conventional methods. This new textbook examines the wealth of information on the response spectrum method generated by the latest research and presents the background theory in simplified form. Applications of these methods is essential in the seismic design of critical structures, such as nuclear power plants and petroleum facilities. In new construction, the reduced seismic stresses will result in efficient and economic design. For facilities already built, these more accurate methods can be used where the facility is being reassessed for higher loads and in the calculation of margins. Written by an acknowledged expert in this and related fields, this volume is ideal as a graduate text for courses in structural and earthquake engineering. It is also an excellent reference for civil, structural, mechanical, and earthquake engineers.

Concrete Structures in Earthquake
  • Language: en
  • Pages: 410

Concrete Structures in Earthquake

  • Type: Book
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  • Published: 2019
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  • Publisher: Unknown

This book gathers 23 papers by top experts from 11 countries, presented at the 3rd Houston International Forum: Concrete Structures in Earthquake. Designing infrastructures to resist earthquakes has always been the focus and mission of scientists and engineers located in tectonically active regions, especially around the "Pacific Rim of Fire" including China, Japan, and the USA. The pace of research and innovation has accelerated in the past three decades, reflecting the need to mitigate the risk of severe damage to interconnected infrastructures, and to facilitate the incorporation of high-speed computers and the internet. The respective papers focus on the design and analysis of concrete structures subjected to earthquakes, advance the state of knowledge in disaster mitigation, and address the safety of infrastructures in general.

Reinforced Concrete Design
  • Language: en
  • Pages: 966

Reinforced Concrete Design

None

Flexural-Torsional Buckling of Structures
  • Language: en
  • Pages: 394

Flexural-Torsional Buckling of Structures

  • Type: Book
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  • Published: 2017-11-13
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  • Publisher: Routledge

Flexural-Torsional Buckling of Structures provides an up-to-date, comprehensive treatment of flexural-torsional buckling and demonstrates how to design against this mode of failure. The author first explains the fundamentals of this type of buckling behavior and then summarizes results that will be of use to designers and researchers in either equation or graphical form. This approach makes the book an ideal text/reference for students in structural engineering as well as for practicing civil engineers, structural engineers, and constructional steel researchers and designers. The book begins by introducing the modern development of the theory of flexural-torsional buckling through discussion...

The Civil Engineering Handbook
  • Language: en
  • Pages: 2898

The Civil Engineering Handbook

  • Type: Book
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  • Published: 2002-08-29
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  • Publisher: CRC Press

First published in 1995, the award-winning Civil Engineering Handbook soon became known as the field's definitive reference. To retain its standing as a complete, authoritative resource, the editors have incorporated into this edition the many changes in techniques, tools, and materials that over the last seven years have found their way into civil

Transportation
  • Language: en
  • Pages: 674

Transportation

  • Type: Book
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  • Published: 1981
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  • Publisher: Unknown

None

LRFD Steel Design Using Advanced Analysis
  • Language: en
  • Pages: 460

LRFD Steel Design Using Advanced Analysis

  • Type: Book
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  • Published: 1997-01-30
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  • Publisher: CRC Press

LRFD Steel Design Using Advanced Analysis uses practical advanced analysis to produce almost identical member sizes to those of the Load and Resistance Factor Design (LRFD) method. The main advantage of the advanced analysis method is that tedious and sometimes confusing separate member capacity checks encompassed by the AISC-LRFD specification equations are not necessary. Advanced analysis can sufficiently capture the limit state strength and stability of a structural system and its individual member directly. While the use of elastic analysis is still the norm in engineering practice, a new generation of codes is expected to adopt the advanced analysis methodology in the near future, leadi...