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  • DFI
    Viscoelastic Finite Element Analysis Of Diaphragm Walls ? Synopsis

    By M. Y. Xia

    In this paper, based on the Theological tests of the interface between clay and concrete, an interface Theological model is proposed and is used in the finite element analysis which takes soil as visc

    Jan 1, 2010

  • DFI
    Seven Mile Dam Retrofit - A Global Challenge

    By Arvindh Gupta

    BC Hydro proposed to improve the stability of the existing Seven Mile Dam with 54 corrosion protected, re-stressable anchors comprising 92/0.6? strands each, in phase 2 of the program. Being globally

    Jan 1, 2004

  • DFI
    Ground Energy Systems In London - A Best Practice Approach

    By Ryan Law

    Ground energy systems are being installed in increasing numbers in the United Kingdom. This is particularly true in London where planning regulations require larger scale developments to provide at l

    Jan 1, 2008

  • DFI
    Jacked Tunnel Construction

    "Boston’s Central Artery passes beneath nine active railroad tracks carrying commuter and Amtrak trains into South Station, the City's busiest rail terminal. These railroad operations had to remain in

    Jan 1, 2003

  • DFI
    Pier Design And Construction In Water Bearing Soils ? Synopsis

    By C. N. Baker

    The design and construction of drilled piers through water bearing and caving soil conditions are discussed. The need for close cooperation between the design engineer and contractor in both the desig

    Jan 1, 2010

  • DFI
    Assessment Of Safe Load On Piles Using Indian Standard Codeprivate ? Synopsis

    By Shenbaga R. Kaniraj

    The pile loading tests are generally conducted to assess the safe load on piles in compression. In the Indian practice, the safe load is determined using the pile loading test data and the two criteri

    Jan 1, 1996

  • DFI
    Surprises And Solutions When Driving Piles In Mountain Valleys Of Vermont

    By John E. Lens

    Driving bridge foundation piles into glacio-fluvial sands and gravels and glacial tills brought surprisingly longer than predicted driving lengths on several recent projects in Vermont. In some insta

    Jan 1, 2007

  • DFI
    Theory And Practice Of Pile Foundations ? Synopsis

    By G. G. Meyerhof

    The paper reviews the state of the art of estimating the bearing capacity and settlement of pile foundations in sand and clay soils, including the effects of pile installation, scale effects of pile s

    Jan 1, 2010

  • DFI
    Deep Excavation And Earth Retaining Structure ? Synopsis

    By S. Y. Zhou

    Excavation with earth retaining is one of the main technological means in deep foundations and underground engineerings. Several construction methods which have been used in China are introduced here

    Jan 1, 2010

  • DFI
    Dynamic Testing Of Model Piles - A Laboratory Study - Synopsis

    By P. Srinivasulu

    The popular theoretical models used for assessing the dynamic behaviour of piles under vertical and lateral excitations are critically reviewed. An experimental study is presented on model piles with

    Jan 1, 1996

  • DFI
    Ground Improvement Resulting From Installation Of Drilled Displacement Piles

    By Timothy C. Siegel

    Drilled displacement piles (also known as augered cast-in-place displacement piles or augured, pressure grouted displacement piles) are installed by the displacement of soil and subsequent placement o

    Jan 1, 2007

  • DFI
    Behavior Of Pile Foundation Under Impact Lateral Loads

    By Hajialilue Bonab M.

    The soil-pile interaction under lateral impact loads is not yet completely well known. Many tests on single piles under static lateral loads in centrifuge have been performed and P-y curves have been

    Jan 1, 2002

  • DFI
    Estimating Axial Displacements Of Driven Piles In California Soils

    By Cem Akgüner

    The displacements of axially loaded single piles are analyzed with an approach based on elasticity. Young?s modulus and Poisson?s ratio of the soil encompassing a pile are the unknowns required as in

    Jan 1, 2008

  • DFI
    Session 14 "Deep Mixing Method III"

    By Stefan Dahlin

    The laboratory tests indicated low permeability but as I said, as a rule, the permeability in the field has been found to be higher. A high permeability has also been found when doing back calculation

    Feb 10, 2003

  • DFI
    Vibrodriving And The Compaction Of Granular Soils

    By RAP Bement

    Installation by vibrodrivers of sheet and bearing piles generates periodic vibrations in the surrounding ground, which have been widely measured and reported. One of the possible consequential effects

    Jan 1, 1996

  • DFI
    Piled Raft System - Approximate Design Methods. - Synopsis

    By S. L. Karunakaran

    There are cases where it is found that a raft foundation would have adequate factor of safety against ultimate bearing capacity failure but the settlements would be excessive. Piles may be introduced

    Jan 1, 1996

  • DFI
    Some Experiences In Construction And Design Of Stone Column Reinforced Ground ? Synopsis

    By C. W. Sheng

    In this paper conventional construction procedure is briefly described for the installation of stone columns in soft ground in China. A viewpoint concerning the mechanism of ground improvement by use

    Jan 1, 2010

  • DFI
    Analyses Of Dynamic Increasing Energy Load Test On Deep Foundations

    By Silvana B. Foá

    Results from full-scale loading tests showed the use of the dynamic increasing energy test (DIET) to verify the capacity of deep foundations. This method allows the measurement of dynamic resistance -

    Jan 1, 2002

  • DFI
    Case Study: Natomas Levee Improvement Program Cutoff Walls

    By Matthew D. Marks

    The Sacramento Area Flood Control Agency initiated the Natomas Levee Improvement Program in 2006 which would bring the entire 42 mile Natomas Basin perimeter levee system into compliance with applicab

  • DFI
    Comparison of 2D and 3D Anchor Analysis Methodologies

    By Ruth McKeown, Gilson de F. N. Gitirana, Murray Fredlund, HaiHua Lu

    The current design standards for the use of anchors in slopes is based on two-dimensional (2D) limit equilibrium analyses. Anchors are considered as discrete loads and the 2D anchor, factored based on

    Jan 1, 2019