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  • DFI
    Embankment Piles ? Introduction

    By B. B. Broms

    Embankment piles are common in the Scandinavian countries (Kjellman, 1940) and in Southeast Asia as support of fills, light structures, bridge abutments and deep excavations (Eide, 1968) as described

    Jan 1, 2010

  • DFI
    Berminghammer II 25 Vertical Travel Lead System: Innovative Technology For Deep Foundation Soil Mixing - 0.0 Introduction

    By Andy Schroeder

    Located in Hamilton, Ontario Canada, Berminghammer Foundation Equipment, is a manufacturer of advanced foundation equipment with 30 years of experience. The company is represented in more than 20 coun

    Jan 1, 1997

  • DFI
    The Effect Of Drilling Fluid On Axial Capacity, Cape Fear River, NC

    By Dan Brown

    Two drilled shaft foundations were subjected to axial load tests in order to measure the influence of drilling fluid on performance. Other than the differing drilling fluids, the shafts were construct

    Jan 1, 2002

  • 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
    Installation, Design, And Quality Control Of Augercast Piles ? Introduction

    By William J. Neely

    Augercast piles are formed by drilling a continuous-flight auger into the ground and, on reaching the required depth, sand-cement grout or concrete is pumped down the hollow stem as the auger is withd

    Jan 1, 1990

  • 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
    Integrity Testing Of Deep Foundations - Synopsis

    By R. T. Stain

    Integrity testing of deep foundations is now common practice in Europe, indeed in the City of London such testing is a contractural requirement on every site. This paper is in two parts: Part

    Jan 1, 1987

  • DFI
    Statnamic Load Testing; Overview And Case Histories Of Augered Cast-In-Place Piles

    By Mike Muchard

    Augered cast-in-place piles are one of the most cost effective deep foundation options available to designers but have been largely underutilized due to skepticism associated with quality assurance an

    Jan 1, 2000

  • DFI
    Influence Of Urbanization And Geology On Deep Foundation Design And Construction

    By Hiren J. Shah

    The urban environment and geology create unique challenges for design and construction of deep foundations. The effect of these is prominently experienced in New York City. Three such project case his

    Jan 1, 2011

  • DFI
    Rock Sockets

    By D. E. Sherwood

    Mr. Tamaro introduced his paper which concerned the construction of foundations for the buildings and related infrastructure of the World Financial Center on a reclaimed shoreline site at the Southern

    Jan 1, 1991

  • DFI
    Installation Of Augered Cast-In-Place Piles - Equipment

    ? Hollow Stem Auger ? Drill Bits ? Leads/Torque Arm ? Hydraulic Gearbox ? Hydraulic Power Unit ? Grout Pump ? Crawler Crane

    Jan 1, 2003

  • DFI
    Case Study: Innovative Soil Nail Stabilization Of A 100 Foot High Urban Slope

    By Mike Fabius

    The Lakehead Region Conservation Authority is responsible for slopes along the Kaministiquia River, one of the largest tributaries to Lake Superior in Canada. After arresting toe erosion for a mile o

    Jan 1, 2006

  • DFI
    Rehabilitation Of Existing Foundation Piles Of Marine Structures In New York City Harbor, USA

    By P. B. Kelleher

    Most of the piers and other pile-supported marine structures in the New York City Harbor area were constructed prior to the widespread use of currently available pile protective systems. As a result,

    Jan 1, 1989

  • DFI
    Lateral Capacity Of Rigid Piles In Clays Based On Earth Pressure Concepts - Synopsis

    By S. Narasimha Rao

    Significant amounts of lateral load may act on pile foundations supporting structures such as transmission line towers, tall structures, bridge abutments, offshore platforms, quay wails, harbour struc

    Jan 1, 1996

  • DFI
    Innovative Design At Lake Lenexa

    By Jacques Moraille

    The public is asking for more aesthetic designs if they can be proven cost-effective at providing an appealing element to new dams. Lake Lenexa was designed and built around the idea of providing for

    Jan 1, 2009

  • DFI
    Soil-Cement Walls For Excavation Support

    By David S. Yang

    The Cement Deep Soil Mixing (CDSM) method introduces and mixes cementitious materials with in situ soils using hollow-stem rotating shafts equipped with a cutting tool at the tip and mixing paddles ab

    Jan 1, 2003

  • DFI
    A Soil Quake Davisson Offset Method For Drilled Foundations

    By Michael Perlow Jr

    A modification of the original Davisson Offset Limit (DOL) is presented for drilled foundations using soil quake (QDOL) factors ranging from 2 to 6. A further modification of the Davisson Offset Limit

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

    By Michael McVay

    The use of augered cast-in-place piles has seen tremendous growth under commerical structures in the past twenty years. Problems with vibration, soil densification and/or heave associated with driven

    Jan 1, 1997

  • DFI
    Sonic Integrity Testing - 1.0 Summary

    By A. F. van Weele

    In general cast-in place piles will have an irregular pile shape. However, it is possible that these irregularities are so large that they may lead to pile deficiencies. It is very rarely possible to

    Jan 1, 1987

  • DFI
    Lateral Load Tests On Drilled Piers In San Diego Area Residual And Formational Soils

    By Kul Bhushan

    This paper presents the results of lateral load tests on 0.61-m to 1.27-m (24 to 50-inch) diameter drilled and cast-in-place piers in San Diego area residual/formational soils. The test piers were ins

    Jan 1, 2002