Soil Structure Interaction Underground Structures and Retaining Walls

Soil Structure Interaction  Underground Structures and Retaining Walls
Author: V.M. Ulitsky,M.B. Lisyuk,A.G. Shashkin
Publsiher: IOS Press
Total Pages: 404
Release: 2015-02-24
Genre: Technology & Engineering
ISBN: 9781614994640

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With construction techniques becoming ever more complex, and population pressure leading to the development of increasingly problematic sites, expertise in the area of soil structure interaction is crucial to architectural and construction industries worldwide. This book contains the proceedings of the ISSMGE Technical Committee 207 International Conference on Geotechnical Engineering - Soil Structure Interaction and Retaining Walls - held in St Petersburg, Russia, in June 2014. The conference was dedicated to the memory of the outstanding geotechnical expert Gregory Porphyryevich Tschebotarioff. Topics covered at the conference included: soil structure interaction, underground structures and retaining walls, site investigation as a source of input parameters for soil structure interaction, and interaction between structures and frozen soils. The papers included here are the English language papers. Papers presented by the authors in Russian are published by the Georeconstruction Institute of St. Petersburg.

Avoiding Damage Caused by Soil structure Interaction

Avoiding Damage Caused by Soil structure Interaction
Author: Richard Kastner,Jamie Standing,Oddvar Kjekstad
Publsiher: Thomas Telford
Total Pages: 108
Release: 2003
Genre: Technology & Engineering
ISBN: 0727731246

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Increasing development in the urban environment and supporting infrastructure systems has necessitated a greater use of underground space and sites that were hitherto judges to be not economically viable (e.g. because of difficult ground conditions). This presents many challenges in terms of planning, design and construction as well as the protection of existing buildings. Understanding the complex nature of soil-structure interaction and the resulting ground movements is an integral part of assessing developments involving new construction, for example tunnels and deep excavations.

Earth Pressure and Earth Retaining Structures

Earth Pressure and Earth Retaining Structures
Author: Chris R.I. Clayton,Rick I. Woods,Jarbas Milititsky
Publsiher: CRC Press
Total Pages: 598
Release: 2014-05-28
Genre: Architecture
ISBN: 9781482206616

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Effectively Calculate the Pressures of SoilWhen it comes to designing and constructing retaining structures that are safe and durable, understanding the interaction between soil and structure is at the foundation of it all. Laying down the groundwork for the non-specialists looking to gain an understanding of the background and issues surrounding g

Insights and Innovations in Structural Engineering Mechanics and Computation

Insights and Innovations in Structural Engineering  Mechanics and Computation
Author: Alphose Zingoni
Publsiher: CRC Press
Total Pages: 2223
Release: 2016-11-25
Genre: Technology & Engineering
ISBN: 9781317280637

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Insights and Innovations in Structural Engineering, Mechanics and Computation comprises 360 papers that were presented at the Sixth International Conference on Structural Engineering, Mechanics and Computation (SEMC 2016, Cape Town, South Africa, 5-7 September 2016). The papers reflect the broad scope of the SEMC conferences, and cover a wide range of engineering structures (buildings, bridges, towers, roofs, foundations, offshore structures, tunnels, dams, vessels, vehicles and machinery) and engineering materials (steel, aluminium, concrete, masonry, timber, glass, polymers, composites, laminates, smart materials).

Geotechnical Safety and Risk V

Geotechnical Safety and Risk V
Author: T. Schweckendiek,A.F. van Tol,D. Pereboom
Publsiher: IOS Press
Total Pages: 1028
Release: 2015-10-09
Genre: Technology & Engineering
ISBN: 9781614995807

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Geotechnical Risk and Safety V contains contributions presented at the 5th International Symposium on Geotechnical Safety and Risk (5th ISGSR, Rotterdam, 13-16 October 2015) which was organized under the auspices of the Geotechnical Safety Network (GEOSNet) and the following technical committees of the of the International Society of Soil Mechanics and Geotechnical Engineering (ISSGME): • TC304 Engineering Practice of Risk Assessment & Management • TC205 Safety and Serviceability in Geotechnical Design • TC212 Deep Foundations • TC302 Forensic Geotechnical Engineering Geotechnical Risk and Safety V covers seven themes: 1. Geotechnical Risk Management and Risk Communication 2. Variability in Ground Conditions and Site Investigation 3. Reliability and Risk Analysis of Geotechnical Structures 4. Limit-state design in Geotechnical Engineering 5. Assessment and Management of Natural Hazards 6. Contractual and Legal Issues of Foundation and (Under)Ground Works 7. Case Studies, Monitoring and Observational Method The 5th ISGSR is the continuation of a series of symposiums and workshops on geotechnical risk and reliability, starting with LSD2000 (Melbourne, Australia), IWS2002 (Tokyo and Kamakura, Japan), LSD2003 (Cambridge, USA), Georisk2004 (Bangalore, India), Taipei2006 (Taipei, Taiwan), the 1st ISGSR (Shanghai, China, 2007), the 2nd ISGSR (Gifu, Japan, 2009), the 3rd ISGSR (Munich, Germany, 2011) and the 4th ISGSR (Hong Kong, 2013).

Foundations and Earth Retaining Structures

Foundations and Earth Retaining Structures
Author: M. Budhu
Publsiher: Unknown
Total Pages: 508
Release: 2008-01-14
Genre: Technology & Engineering
ISBN: UCSD:31822034601831

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Budhu presents the basic concepts and fundamental principles that engineers must know to understand the methods utilized in foundation design by exploring the values and limitations of popular methods of analyses in foundation engineering.

Earthquake Geotechnical Engineering Design

Earthquake Geotechnical Engineering Design
Author: Michele Maugeri,Claudio Soccodato
Publsiher: Springer Science & Business Media
Total Pages: 388
Release: 2014-02-03
Genre: Science
ISBN: 9783319031828

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Pseudo-static analysis is still the most-used method to assess the stability of geotechnical systems that are exposed to earthquake forces. However, this method does not provide any information about the deformations and permanent displacements induced by seismic activity. Moreover, it is questionable to use this approach when geotechnical systems are affected by frequent and rare seismic events. Incidentally, the peak ground acceleration has increased from 0.2-0.3 g in the seventies to the current value of 0.6-0.8 g. Therefore, a shift from the pseudo-static approach to performance-based analysis is needed. Over the past five years considerable progress has been made in Earthquake Geotechnical Engineering Design (EGED). The most recent advances are presented in this book in 6 parts. The evaluation of the site amplification is covered in Part I of the book. In Part II the evaluation of the soil foundation stability against natural slope failure and liquefaction is treated. In the following 3 Parts of the book the EGED for different geotechnical systems is presented as follows: the design of levees and dams including natural slopes in Part III; the design of foundations and soil structure interaction analysis in Part IV; underground structures in Part V. Finally in Part VI, new topics like the design of reinforced earth retaining walls and landfills are covered.

Foundation Systems for High Rise Structures

Foundation Systems for High Rise Structures
Author: Rolf Katzenbach,Steffen Leppla,Deepankar Choudhury
Publsiher: CRC Press
Total Pages: 315
Release: 2016-09-19
Genre: Technology & Engineering
ISBN: 9781498744782

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The book deals with the geotechnical analysis and design of foundation systems for high-rise buildings and other complex structures with a distinctive soil-structure interaction. The basics of the analysis of stability and serviceability, necessary soil investigations, important technical regulations and quality and safety assurance are explained and possibilities for optimised foundation systems are given. Additionally, special aspects of foundation systems such as geothermal activated foundation systems and the reuse of existing foundations are described and illustrated by examples from engineering practice.