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  • DFI
    Negative Drag - A Practical Example - Synopsis

    By A. Verghese Chummar

    The paper presents a field study where the effect of negative drag caused the failure of a pile foundation system. Utilising the field observations the probable negative drag that acted on the piles i

    Jan 1, 1996

  • DFI
    Computation Of The Load/Settlement Behaviour Of HP-Bearing Piles - 1. Introduction

    By E. E. De Beer

    This paper describes a method for the determination of the settlement of an individual H-bearing pile, based on the results of CPT-tests. As implied by the nature of the problem, no analysis perform

    Jan 1, 1987

  • DFI
    Offshore Wind Turbine Foundations - In Denmark And Belgium - Introduction

    By Jørn H. Thomsen

    This paper presents the experience gained and the lessons learned over the last decade within the numerous offshore foundation projects undertaken in the offshore waters of Denmark and Belgium by COWI

    Jan 1, 2013

  • DFI
    Field Tests Of Soft Clay Stabilized By Stone Columns In Coastal Areas In China

    By Han Jie

    The results of full scale plate load tests on stone columns on soft clay in coastal areas are presented in this paper. Four load tests were made, two of which were performed on the ground treated with

    Jan 1, 1991

  • DFI
    Brightman Street Bridge Replacement Project

    By Arturo Ressi di Cervia

    Construction of the drilled shafts for the Brightman Street Bridge Replacement Project were not only challenging due to working over the water but were also challenged by changed soil conditions, conc

    Jan 1, 2003

  • DFI
    Piling Design and Construction Codes and Standards for Buildings A United States Perspective

    By Rudolph P. Frizzi

    "Abstract Pile design for building structures in the United States is typically performed by: 1) investigating and assigning engineering parameters to the respective ground bearing materials, 2) calcu

    Jan 1, 2014

  • DFI
    Self Drilling Soil Nail Systems To Retain Caving Soils

    By Ali Porbaha

    The use of soil nailing technology as a cost effective alternative for excavation support and slope stabilization has substantially increased in the United States during the last decade. For example,

    Jan 1, 2006

  • DFI
    Capitol Area East End Complex Blocks 171 Through 174 Sacramento, California: A Case History Involving The Application Of APGD And APG Piling Methods ? Introduction

    By Brian R. Zuckerman

    The Capitol Area East End Complex is currently being constructed under contract with the State of California Department of General Services on two sites adjacent to the grounds of the California State

    Jan 1, 2002

  • DFI
  • DFI
    Design of a Raft Assisted Piled Foundation for a High Rise Prefabricated Hotel Structure in Perth, Wa.

    By Lucie Spencer, Craig Butterworth

    "This paper presents the design of a raft enhanced pile group recently constructed for a hotel development in Perth, WA. At the time of construction in 2016 the hotel was the tallest prefabricated hot

    Jan 1, 1900

  • DFI
    A New Method Of Analysis Of Pile Displacement In Soil With Respect To Time

    By M. England

    A method for the analysis and prediction of single pile displacement behaviour is described. It is the displacement in time, under constant load, based on the use of hyperbolic functions to characteri

    Jan 1, 1993

  • DFI
    Aspects of Standardization for Piles in Europe

    By Roger Frank

    "Abstract After noting the importance of standardization for piles, the European system is described (execution, tests and design, etc.). Some important aspects of Eurocode 7 are outlined (like the ro

    Jan 1, 2014

  • DFI
    The Design of Partial Depth Cement Deep Mixing (CDM) Foundation for an Immersed Tunnel

    By J. S. Lee, R. K. Massarsch

    "A 3.2 km long immersed road tunnel forms part of the Busan-Geoje Fixed Link in South Korea, which connects Korea's second largest city Busan, with the island of Geoje. To ensure the water tightness o

    Jan 1, 2015

  • DFI
    Design Solutions for Seepage End-Around-Effects at Cutoff Wall Depth Transitions

    By Michael Hughes, Selva Selvamohan, Ray Costa

    "Cutoff walls are commonly used to mitigate underseepage problems for levee remediation projects. At abrupt changes in seepage cutoff wall depths there is a potential for water to flow around the back

    Jan 1, 2015

  • DFI
    Micropiles To Support Electric Power Transmission Towers

    By Wendy L. Mathieson

    The Bonneville Power Administration (BPA) will build about 500 miles of new 500-kV transmission lines in the next 5 years. Many new lattice towers will be built in remote locations or in environmenta

    Jan 1, 2004

  • DFI
    Caltrans Bridge Seismic Design/Retrofit Criteria ? Synopsis

    By Brian Maroney

    In this paper an overview of the California Department of Transportation's (CALTRANS) bridge design criteria is presented. Special emphasis is focused upon seismic design and retrofit criteria. T

    Jan 1, 1993

  • DFI
    Three-Dimensional Stability Analysis Of Vertical Shafts In Homogenous Soils

    By Reza Y. Khaksar

    Presented is a rigorous solution for the three-dimensional stability analysis of vertical shafts (excavations) subjected to the self-weight of the soil based on the upper-bound theorem of limit analys

    Jan 1, 2006

  • DFI
    Development of Site-Specific Acceleration Response Spectra fora Liquefiable Bridge Site

    By S. Ali Bastani, Ashley Varni

    Design acceleration response spectra (ARS) are directly correlated with dynamic forces and estimated dynamic bridge displacements, which make them a critical aspect of dynamic bridge design. Nonlinear

    Jan 1, 2018

  • DFI
    Pile Design For Offshore Structures Subjected To Subsidence

    By Juan J. Campo

    The Freeport-McMoRan Main Pass Mine development in the Gulf of Mexico is a complex designed to extract up to 67 million long tons of sulphur over a 40 year period. The initial development includes 15

    Jan 1, 1992

  • DFI
    Structure Support on Laterally Swept Piles

    By Morgan L. Race, Matthew R. Glisson

    "Most driven pile projects have plumbness limits from 0.25 in/ft (21 mm/m) to 0.5 in/ft (42 mm/m) to control bending stresses. For two projects, the project teams performed static load testing to eval

    Jan 1, 2017