Rigidly Framed Earth Retaining Structures

Rigidly Framed Earth Retaining Structures

Author: Walid Aboumoussa

Publisher: Springer

Published: 2014-06-23

Total Pages: 329

ISBN-13: 3642546439

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Structures placed on hillsides often present a number of challenges and a limited number of economical choices for site design. An option sometimes employed is to use the building frame as a retaining element, comprising a Rigidly Framed Earth Retaining Structure (RFERS). The relationship between temperature and earth pressure acting on RFERS, is explored in this monograph through a 4.5 year monitoring program of a heavily instrumented in service structure. The data indicated that the coefficient of earth pressure behind the monitored RFERS had a strong linear correlation with temperature. The study also revealed that thermal cycles, rather than lateral earth pressure, were the cause of failure in many structural elements. The book demonstrates that depending on the relative stiffness of the retained soil mass and that of the structural frame, the developed lateral earth pressure, during thermal expansion, can reach magnitudes several times larger than those determined using classical earth pressure theories. Additionally, a nearly perpetual lateral displacement away from the retained soil mass may occur at the free end of the RFERS leading to unacceptable serviceability problems. These results suggest that reinforced concrete structures designed for the flexural stresses imposed by the backfill soil will be inadequately reinforced to resist stresses produced during the expansion cycles. Parametric studies of single and multi-story RFERS with varying geometries and properties are also presented to investigate the effects of structural stiffness on the displacement of RFERS and the lateral earth pressure developed in the soil mass. These studies can aid the reader in selecting appropriate values of lateral earth pressure for the design of RFERS. Finally, simplified closed form equations that can be used to predict the lateral drift of RFERS are presented. KEY WORDS: Earth Pressure; Soil-Structure Interaction; Mechanics; Failure; Distress; Temperature; Thermal Effects; Concrete; Coefficient of Thermal Expansion; Segmental Bridges; Jointless Bridges; Integral Bridges; Geotechnical Instrumentation; Finite Element Modeling; FEM; Numerical Modeling.


Handbook of International Bridge Engineering

Handbook of International Bridge Engineering

Author: Wai-Fah Chen

Publisher: CRC Press

Published: 2013-10-11

Total Pages: 1383

ISBN-13: 1439810303

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This comprehensive and up-to-date reference work and resource book covers state-of-the-art and state-of-the-practice for bridge engineering worldwide. Countries covered include Canada and the United States in North America; Argentina and Brazil in South America; Bosnia, Bulgaria, Croatia, Czech Republic, Denmark, Finland, France, Greece, Macedonia,


TB 10025-2019 Translated English of Chinese Standard. (TB10025-2019, TB/T 10025-2019)

TB 10025-2019 Translated English of Chinese Standard. (TB10025-2019, TB/T 10025-2019)

Author: https://www.chinesestandard.net

Publisher: https://www.chinesestandard.net

Published: 2020-04-25

Total Pages: 153

ISBN-13:

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This standard is formulated to unify the design technical criteria of the retaining structures of railway earthworks, so that the design of the retaining structure meets the requirements of safety, reliability, advanced technology, reasonable economy and green environmental protection. This code is applicable to the design of retaining structure of railway earthworks and related projects.


Performance of Reinforced Soil Structures

Performance of Reinforced Soil Structures

Author: Alan McGown

Publisher: Thomas Telford

Published: 1991

Total Pages: 628

ISBN-13: 9780727716378

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The following is just a selection of the contents - Theory and design related to the performance of reinforced soil structures - A study of the influence of soil on the reinforcement load in polymer grid reinforced soil structures - Cellular retaining walls reinforced by geosynthetics:behaviour and design - The results of pull out tests caried out in PFA on a reinforced and unreinforced soil walls - In-situ techniques of reinforced soil - Design and field test on reinforced cut slope - Reinforcing a sand slope surrorting a footing using steel bars - Discussion of papers in session 4 - Effect of reinforcement in embankment - Session Summary


Structural Design

Structural Design

Author: James R. Underwood

Publisher: John Wiley & Sons

Published: 1998

Total Pages: 812

ISBN-13: 9780471140665

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Structural Design presents the conceptual and practical underpinnings of basic building design and technology in a single comprehensive source. It provides essential coverage of the integral relationships of structural/architectural form and spatial organization, and an understanding of the impact of load configurations and other key determinants of design. Essential principles as well as structural solutions are visually reinforced with hundreds of architectural drawings, photographs, and other illustrations, making this book truly architect-friendly. Ideal for use as a general and technical reference in the design studio, as a study aid for the architectural registration exam, or as an office resource, Structural Design is a superb companion for the architecture student and practicing professional. It includes: In-depth coverage of steel, wood, reinforced concrete, and masonry, including lateral force generation and design Over 1,000 illustrations and photographs Real-world examples, sample problems, and useful references throughout Conventional and SI unit systems


Handbook of Port and Harbor Engineering

Handbook of Port and Harbor Engineering

Author: Gregory Tsinker

Publisher: Springer

Published: 2014-11-14

Total Pages: 1085

ISBN-13: 1475708637

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This indispensable handbook provides state-of-the-art information and common sense guidelines, covering the design, construction, modernization of port and harbor related marine structures. The design procedures and guidelines address the complex problems and illustrate factors that should be considered and included in appropriate design scenarios.