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  • 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
    Pile Load Test On 1200 Mm Dia Pile In Cemented Soil - Synopsis:

    By B. Ramanathan

    The results of a pile load test on a 1200 mm dia and 25 m long bored Cast-in-situ pile in soft rock is reported. The subsoil has a high N value of above 60 from 7 m to 21 m. The soft rock was observed

    Jan 1, 1996

  • DFI
    Lateral Load Test on Piles with Large Free Stand

    By P. V. Chandramohan

    "In ports, piled berths are designed and constructed for berthing of ships with a finite draught. Piles in a bridge foundation also have a large free stand above scoured level. The piles of these stru

    Jan 1, 2015

  • DFI
    Cut-Off Walls For Diamond Mining In The Arctic

    By Wolfgang G. Brunner

    A 3800 m long temporary water-retaining dike has been constructed under extreme conditions in the harsh northern climate to enable two of the kimberiite pipes at the Diavik Diamond Project reserve to

    Jan 1, 2003

  • DFI
    Izmit Bay Bridge Crossing: Integrated Multidisciplinary Approach Reduces Risk And Lowers Overall Project Cost For Bot Bridge Consortium

    By Jacob Chacko

    The Izmit Bay bridge, a 3-km-long suspension bridge crossing of Izmit Bay, Turkey is planned to be constructed in one of the most seismically active places in the world. The site, which has the poten

    Jan 1, 2011

  • DFI
    Approach To Reliability Based Design On Deep Mixing Improved Ground

    By Masaki Kitazume

    Deep mixing method, in-situ admixture stabilization technique, has been developed and adopted for on land and marine construction works in Japan. The geotechnical design procedure of the method has be

    Jan 1, 2004

  • 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
    Ground Improvement By Cement Grouting Combines With Pipe Piles In Bridge Construction - Summary

    By Peter White

    A bridge reconstruction project involved driving pipe piles for the new foundations. Disturbances within soil layers at depth caused sinkholes to open up within the construction site. After a near fat

    Jan 1, 1997

  • DFI
    Non-Conventional Practice: Recent Case Histories of the use of Vertical Buttress Piles in Deep Excavation Support

    By Tony Brunger, Abid O. Adekunte, George Munteanu, David Greentree

    A number of novel solutions have been proposed in recent years as alternatives to props and tie-backs in deep excavation support e.g. Adekunte (2008), Deschamps et. al. (2008), Adekunte et al. (2010)

    Jan 1, 2018

  • DFI
    Single Pile Settlement Prediction And Analysis For Driven Piles

    By David R. Beadman

    The Fleming method is widely used for the analysis and prediction of single pile behaviour under maintained loading. The method does not distinguish between bored and driven piles. Driven piling avoid

    Jan 1, 2006

  • DFI
    Mechanical Characterization of a Chemically Stabilized Soft Soil Reinforced with Fibers When Subjected to Tensile Solicitations

    By J. M. N. P. C. Teles, Venda Oliveira P. J., Correia A. A. S.

    "AbstractA laboratory work was performed to study the mechanical behavior of a Portuguese soft soil chemically stabilized with binders and reinforced with metallic fibers when subjected to tensile str

    Jan 1, 2014

  • DFI
    Case History On Pipe Pile Installation - Presented At An Associated Pile & Fitting Corp. GEO-Pile Conference San Francisco, CA

    By Jerry F. Parola

    In current practice, pile foundation design is based on a general under-standing of pile-soil interaction during installation and superstructure-pile-soil interaction after construction. The pile desi

    Jan 1, 1986

  • DFI
    Pin Piles For Structural Underpinning - Summary

    By Seth L. Pearlman

    Pin Piles are small diameter high capacity drilled and grouted piles also called minipiles or micropiles. They are ideal for building foundations on sites with poor ground conditions, sensitive surrou

    Jan 1, 2000

  • 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
    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
    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
    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
    Once Again, Engineering And Contractor Tenacity Overcome Tough Geology

    By John E. Lens

    How much trouble can narrow vertical fissures in bedrock cause on a shallow bedrock site? Enough trouble so end-bearing H-piles range between 8 and 100 feet long in a single pile cap and tiebacks ran

    Jan 1, 2006

  • DFI
    Case History: Deep Soil-Cement Mixing At The I-90/I-93NB Interchange On The Central Artery/Tunnel Project, Contract C09A7 At Fort Point Channel Site, Boston, MA - Synopsis

    By Robert Jakiel

    The following paper is being presented to provide an understanding of the Deep Soil-Cement Mixing (DMM) performed at Contract C09A7 at the Fort Point Channel Site (FPC), for the I-90/I-93 Interchange

    Jan 1, 2000

  • DFI
    Anchored Excavation Support Using SMW (Soil Mixed Wall)

    By Seth L. Pearlman

    A major excavation support case history for the Eastern approach to the Third Harbor Tunnel (THT) in Boston, MA is described, which uses an anchored Soil Mixed Wall (SMW). Both general and project spe

    Jan 1, 1993