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  • DFI
    Field Trials for Deep Mixing in Land Remediation: Execution and Early Age Monitoring, QC and Lessons Learnt

    By Ziyad Abunada, David O’Connor, Abir Al-Tabbaa

    "Abstract Contaminated land remediation using soil mix technology (SMT) is a relatively recent development which has been shown to be a cost effective and versatile system with numerous environmental

    Jan 1, 2014

  • DFI
    Applicability of Wet Grab Sampling to Quality Assurance of Deep Mixing Method

    By Masaki Kitazume

    "Abstract The wet type and dry type of deep mixing methods have been developed and widely applied for on-land and marine constructions in Japan. The quality assurance (QA) of the methods has been usua

    Jan 1, 2014

  • DFI
    Overview Of Earth Retaining Systems And Their Selection

    By Raymond J. Castelli

    The paper provides a general overview of the numerous types of earth retaining systems currently available, and organizes these various systems by several classification methods. These classifications

    Jan 1, 2003

  • DFI
    Hydraulic Impact Pile Hammers ? Background

    By Patrick Bermingham

    The advancement of hydraulic impact hammers has followed the general advancement of hydraulics. The construction industry has been revolutionized by the application of hydraulics in excavators, cranes

    Jan 1, 1987

  • DFI
    Fundex - Deep Foundation Institute Tensile Pile Test Seminar - September 9 & 10, 1993 - Introduction

    After the Loma Prieta Earthquake, which caused major damage to viaducts in the Bay Area, the California Department of Transportation set up a test programme for foundation piles. Funderingstechnieken

    Jan 1, 1993

  • DFI
    Stabilization Of Organic Soil With The Limix System

    By Magnus Ruin

    The dry deep mixing method for stabilization of soft soil has been used in the Scandinavian countries for 25 years. The typical application has been stabilization of soft inorganic clay. Today the met

    Jan 1, 2001

  • 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
    Axial Pile Displacement Evaluations From Seismic Piezocone Data And Back-Analysis Of Load Tests

    By Fawad S. Niazi

    Ever since the use of the cone penetration test (CPT) in geotechnical practice, attempts have been made to correlate CPT parameters with pile capacity components of unit end bearing (qb) and unit shaf

    Jan 1, 2011

  • DFI
    Augered Cast-In-Place Piles: Regional Project Profiles - Community Osteopathic Hospital Harrisburg, Pa

    GENERAL CONTRACTOR: ALEXANDER CONSTRUCTORS, INC. STRUCTURAL ENGINEER: CAGLEY & ASSOCIATES, INC. GEOTECHNICAL ENGINEER: F.T. KITLINSKI & ASSOCIATES, INC. PILE FOUNDATION CONTRACTOR: L.G. BA

    Jan 1, 2001

  • DFI
    Estimating N Value from Data in Press-In Piling

    By Yukihiro Ishihara, Nanase Ogawa, Ming Lei

    "Abstract In the Press-in Method, a static jacking force is used to install a prefabricated pile, while a reaction force is gained from previously installed piles. This piling technique has solved pro

    Jan 1, 2014

  • DFI
    A New Method of Quality Control for Construction Joints in Diaphragm Walls

    By Nikolaus Schneider

    "Abstract: The combination of failure in joints of diaphragm walls and their exposure to water pressure may have far reaching effects ranging from water leakage to the risk of catastrophic loss of sta

    Jan 1, 2014

  • DFI
    Design And Construction Of An Earth Retaining Structure - Using A Pile In Self-Hardening Grout (PSHG) Wall

    By Allan Sylvester

    Construction of the Shot Tower Metro Station in Baltimore, Maryland was performed in two phases. In the first phase, a contractor was retained to excavate the station in order to construct twin tunnel

    Jan 1, 1997

  • DFI
    Ground Support And Its Toolbox

    By G. Sauer

    "More Skill is needed to avoid rather than to handle heavy ground loads." This finding, from a tunneling engineer of the nineteenth century, is still relevant today with all advanced sequential excava

    Jan 1, 2003

  • DFI
    Press-In Piling Technology For Sustainable Construction

    By Philip Dubbeling

    Conventional dynamic sheetpiling techniques are ill-suited to urban development because of the emission of excessive noise and ground vibrations. Drilled shafts and slurry walls alleviate some of thes

    Jan 1, 2006

  • DFI
    Installation Of Augered Cast-In-Place Piles (3e8ab035-87ca-4b14-9759-c57d4f787aa0)

    By Tracy Brettmann

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

    Jan 1, 2004

  • DFI
    Dynamic Pile Testing - The Caltrans Results - Dynamic Pile Testing - Who Needs It?

    By G. G. Goble

    Dynamic pile testing is now over 20 years old as a routinely applied tool for evaluating driven pile installation. The first test on a cast-in-place pile was performed more that 15 years ago. The rese

    Jan 1, 1993

  • DFI
    Geotechnical Exploration Phase Drilled Shaft Load Testing

    By Walter E. Vanderpool

    Full scale load tests are frequently performed immediately prior to deep foundation construction to verify the design assumptions. Occasionally, load tests are performed during design development and

    Jan 1, 2011

  • DFI
    Case History Of The Support Of Excavation System Used At The Atlantic Building Project In Washington, DC

    By Joseph C. Gillen

    This paper discusses the design, construction, and performance of the support of excavation system used at The Atlantic Building jobsite. The support of excavation system had to be adaptable to the d

    Jan 1, 2006

  • DFI
    History Of Chicago Foundation Systems & Underground Construction ? Summary

    By Theodore R. Maynard

    The history of foundation engineering in Chicago is a tale of innovation, made necessary in order to keep pace with structural technology which allowed taller buildings with heavier bearing loads, to

    Jan 1, 1991

  • DFI
    Soil-Cement Pile Foundations For A Large Storage Tank And Retaining Wall - Case History - Summary

    By Roy A. Bell

    A 200-foot diameter, 72-foot high petroleum storage tank was built in a hillside ravine where a portion of the site contained soft clay fill. Soil-cement piles, 40 inches in diameter and up to 38 feet

    Jan 1, 1997