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Analysis of pile foundations subject to static and dynamic loading / edited by Amir M. Kaynia.

Contributor(s): Material type: TextTextPublisher: Boca Raton, Florida : CRC Press, 2022Description: viii, 354 pages : illustrations ; 25 cmContent type:
  • text
Media type:
  • unmediated
Carrier type:
  • volume
ISBN:
  • 9781032015477
Subject(s): DDC classification:
  • 624.154 An134
LOC classification:
  • TA780 .A53 2022
Contents:
Design of piles for static loads -- Analysis of laterally loaded pile foundations using the subgrade reaction method -- Design of monopiles supporting offshore wind turbines using finite element analysis -- Design of suction piles for offshore applications -- Simplified models for axial static and dynamic analysis of pile foundations -- Simplified models for lateral static and dynamic analysis of pile foundations -- Inelastic stiffnesses of floating pile groups -- Design of piles under seismic loading -- Pile foundations in liquefiable soils -- Analysis and characteristics of dynamic response of large pile groups.
Summary: "This book presents computational tools and design principles for piles used in a wide range of applications and for different loading conditions. The chapters provide a mixture of basic engineering solutions and latest research findings in a balanced manner. The chapters are written by world-renowned experts in the field. The materials are presented in a unified manner based on both simplified and rigorous numerical methods. The first four chapters present the basic elements and steps in analysis of piles under static and cyclic loading together with clear references to the appropriate design regulations in Eurocode 7 when relevant. The analysis techniques cover conventional code-based methods, solutions based on pile-soil interaction springs, and advanced 3D finite element methods. The applications range from conventional piles to large circular steel piles used as anchors or monopiles in offshore applications. Chapters 5 to 10 are devoted to dynamic and earthquake analyses and design. These chapters cover a range of solutions from dynamic pile-soil springs to elasto-dynamic solutions of large pile groups. Both linear and nonlinear soil behaviours are considered along with response due to dynamic loads and earthquake shaking including possible liquefaction. The book is unique in its unified treatment of the solutions used for static and dynamic analysis of piles with practical examples of application. The book is considered a valuable tool for practicing engineers, graduate students and researchers."--Publisher.
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Holdings
Item type Current library Shelving location Call number Copy number Status Date due Barcode
Books Books Main Library Engineering Section ENG 624.154 An134 2022 (Browse shelf(Opens below)) 1-1 Available 029844

Includes bibliographical references and index.

Design of piles for static loads -- Analysis of laterally loaded pile foundations using the subgrade reaction method -- Design of monopiles supporting offshore wind turbines using finite element analysis -- Design of suction piles for offshore applications -- Simplified models for axial static and dynamic analysis of pile foundations -- Simplified models for lateral static and dynamic analysis of pile foundations -- Inelastic stiffnesses of floating pile groups -- Design of piles under seismic loading -- Pile foundations in liquefiable soils -- Analysis and characteristics of dynamic response of large pile groups.


"This book presents computational tools and design principles for piles used in a wide range of applications and for different loading conditions. The chapters provide a mixture of basic engineering solutions and latest research findings in a balanced manner. The chapters are written by world-renowned experts in the field. The materials are presented in a unified manner based on both simplified and rigorous numerical methods. The first four chapters present the basic elements and steps in analysis of piles under static and cyclic loading together with clear references to the appropriate design regulations in Eurocode 7 when relevant. The analysis techniques cover conventional code-based methods, solutions based on pile-soil interaction springs, and advanced 3D finite element methods. The applications range from conventional piles to large circular steel piles used as anchors or monopiles in offshore applications. Chapters 5 to 10 are devoted to dynamic and earthquake analyses and design. These chapters cover a range of solutions from dynamic pile-soil springs to elasto-dynamic solutions of large pile groups. Both linear and nonlinear soil behaviours are considered along with response due to dynamic loads and earthquake shaking including possible liquefaction. The book is unique in its unified treatment of the solutions used for static and dynamic analysis of piles with practical examples of application. The book is considered a valuable tool for practicing engineers, graduate students and researchers."--Publisher.

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