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  • DFI
    Use of Porous Concrete in Secant Bored Pile Walls

    By Matthias Pulsfort, Markus Herten, Rolf Breitenbücher, Claudia Fierenkothen

    "Secant bored pile walls are frequently used as retaining walls in watertight excavations to cut off ground water aquifers and are subsequently exposed to ground water pressure loading in addition to

    Jan 1, 2017

  • DFI
    Drilled Piers In The Piedmont - Introduction

    By Stanley A. Schwartz

    In the Piedmont, heavily loaded structures are generally supported by either drilled piers or one of several pile types. The choice of drilled piers or piles is typically one of comparative costs. The

    Jan 1, 1988

  • DFI
    Steel Pile Foundations For Transmission Line Towers, As Used In Western Europe. - 1. Introduction.

    By Alexander J. Verstraeten

    The design and construction of foundations for power transmission line towers present some special problems. This paper describes a system of design and construction for these foundations that was dev

    Jan 1, 1987

  • DFI
    Driving And Testing Of 75 M Long H-Piles In Shanghai - 1 . Synopsis

    By Lucien Weber

    In the Shanghai area, the soil conditions are such that bearing piles have become an essential foundation part of the new highrise buildings. In order to reduce the settlements under the high working

    Jan 1, 1987

  • DFI
    Design Of Axially Loaded Compression Piles According To Eurocode 7

    By Bauduin C. Besix

    The Eurocode 7 "Geotechnical Design" is based on "Limit State Design", tackling the uncertainties as much as possible at their source through: - selection of characteristic values of variables (load

    Jan 1, 2002

  • DFI
    Foundations In The Urban Environment The Need For Unique Installation Methods - Introduction

    By James J. Cahill

    Contractor's working in an urban environment face a multitude of working conditions. There is no typical "Downtown" job site. From afar we just see the skyline, or up close a specific building. T

    Jan 1, 1991

  • DFI
    Structural Underpinning By Pinpiles

    By D. A. Bruce

    Small diameter cast-in-place bored piles (pinpiles) have been installed throughout the world since 1952, but only more recently in the United States. The special features of their construction and per

    Jan 1, 1992

  • DFI
    Kentucky Route 9 - Licking Pike Widening Design Build Slope Stabilization

    By Frederick W. Slack

    This paper will discuss the inherent value engineering associated with the design and construction of approximately 184,000 SF of anchored tieback wall, installed as part of the widening and drainage

    Jan 1, 2003

  • DFI
    Crane Boom Loadings From Pile Driving

    By Alan G. MacKinnon

    Loads and stresses from pile driving are increasing from heavier piles and more powerful hammers. Stresses can be dangerous to equipment stability. Equipment developer MacKinnon tells how to compute s

    Jan 1, 1986

  • DFI
    Unusual Dolphin Monopile Structure

    By C. T. Christensen

    The paper gives an outline of the design, installation and performance of a series of mooring and berthing dolphins for a major ferry berth outside the port of Elsinore, Denmark. The Dolphins are larg

    Jan 1, 1989

  • DFI
    Tied-Back Micropile Walls In Landslide Repair

    By Kevin W. Cargill

    In September 2004, Hurricanes Frances and Ivan caused the Pigeon River in western North Carolina to flood. This flooding eroded the embankment below Interstate 40 (I-40) and sent one of the eastbound

    Jan 1, 2006

  • DFI
    Lateral Earth Pressure On Lagging In Soldier Pile Wall Systems

    By Howard A. Perko

    Soldier pile and lagging is a conventional means of temporary excavation shoring. Timber lagging design has traditionally been based upon the designer's experience or empirical rules. One such me

    Jan 1, 2008

  • DFI
    Results Of An International Pile Load Testing Prediction Event

    By N. Charue

    An international prediction event was carried out within the framework of a 30-pile testing program organized in a sandy soil in Belgium (Limelette). That program called upon sev­eral testing methods:

    Jan 1, 2002

  • DFI
    Keynote Lecture: Axial Design And Lateral Design - Deep Foundations

    By Mike Neill, O&apos

    ? Bypass soft soils near the surface ? Resist uplift loads ? Resist lateral loads ? Bypass scourable soils ? Bypass liquefyable soils ? Mitigate movement of expansive or frozen soils ? "Tu

    Jan 1, 1998

  • DFI
    Safe Execution Of Special Foundation Works Analysis - Concept - Implementation

    By Walter Ensinger

    Special foundation works is one of the most innovative sectors in civil engineering and construction. Both engineering techniques and construction machinery are undergoing continu­ous further developm

    Jan 1, 2002

  • DFI
    Selection & Design Of Augered Cast-In-Place (ACIP) Piles

    By Dan A. Brown

    Outline ? Basic Concept of ACIP Piles ? Factors Affecting ACIP Pile Performance ? Applications: - Favorable Conditions - Unfavorable Conditions ? Design for Axial Loading ? Lateral Loa

    Jan 1, 2004

  • DFI
    Review Of The Methods Used To Construct Large Diameter Bored Piles For Top Down Construction

    By J. D. Findlay

    The demands on development in London in recent years has led to the increasing use of top down construction methods in which there is a requirement to place steel columns to high tolerances into large

    Jan 1, 1989

  • DFI
    Improved Pile Economics: High Design Stresses And Remote Pile Testing

    By Jim Frazier

    Tradition has often dictated low design load stresses on piles. Such traditions often developed prior to modern static or dynamic pile testing methods and perhaps result from a few limiting situations

    Jan 1, 2002

  • DFI
    Ground Movements - A Hidden Source Of Loading On Deep Foundations

    By Harry G. Poulos

    Ground movements can arise from a large number of sources and can have a significant effect on nearby piles and deep foundations. The loading of the piles by ground movements is a different mechanism

    Jan 1, 2006

  • DFI
    The Design Of Deepwater Wharves Which Are In The Complex Geological Conditions Of Pearl River Estuary

    By F. W. Liang

    The geology of pearl River estuary belongs in strong weathered rock quaternary geological systen, so the conditions are complication. Since 80's we built the first deepwater wharf of Shenzhen chi

    Jan 1, 1991