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  • DFI
    Damage To Initially Bent Piles ? Synopsis

    By B. B. Broms

    A method for calculating the bending moment induced in misaligned or bent piles is described, The maximum bending moment varies with the angular rotation between the pile segments, the coefficient of

    Jan 1, 2010

  • DFI
    Advantages of Pressed-In Sheet Piles for New Orleans’ Hurricane and Storm Damage Risk Reduction System Flood Control Project

    By Ian Vaz, Takefumi Takuma

    "The New Orleans area has been repeatedly flooded by major storms and hurricanes since its French colonial era. After severe flooding in May 1995, the U.S. Congress authorized a massive flood protecti

    Jan 1, 2017

  • DFI
    Innovations in the Design and Construction of Marine Foundations

    By Robert B. Bittner

    "AbstractLarge diameter tubular piles offer significant advantages in terms of design performance and economy for major marine structures. This is particularly true for foundations of major overwater

    Jan 1, 2014

  • DFI
    Installation Parameters, Pile Performance and Importance of Testing

    By Maurice Bottiau

    "Abstract When addressing the performance of deep foundations, many parameters play a role, from adequate soil investigation to performance monitoring and testing. The correct understanding of pile co

    Jan 1, 2014

  • 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
    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
  • DFI
    Deep Mixing Method: An International Overview Of Technology, Testing And Product

    By D. A. Bruce

    The Deep Mixing Method is a very valuable tool for combating problems related to in situ soil treatment, improvement, and retention. Many different variations are used throughout the world, and there

    Jan 1, 2001

  • DFI
    Wave Equation Analysis And Dynamic Monitoring - A Presentation At The Deep Foundations Institute?McGill University Symposium Montreal, September 1983

    By Bengt Fellenius

    The conventional wave equation analysis without control of the representativeness of the parameters to the actual conditions does not provide accurate results. However, the representatives can be vast

    Jan 1, 1984

  • DFI
    Long Term Behavior Of Piles - Presented At An ASCE-Penn DOT Seminar Innovations In Geotechnical Engineering - Harrisburg, PA, April 1985

    By Donald J. Murphy

    Longevity of structural units, as compared to the planned useful life of a facility, always is a design consideration. Typical concerns include slow decay due to environmental factors, and changes in

    Jan 1, 1986

  • 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
    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
    Emplacement Techniques: Impervious And Pervious Wall Construction ? Summary

    By Fred C. Schmednecht

    For years, the strategy was to contain waste and in many applications, is still the recommended method. Recently, it has become acceptable to create filters below ground for the in-situ treatment of w

    Jan 1, 1999

  • 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
    Design Strategy For Deep Slurry Stabilized Bored Piles In Compression

    By Chu E. Ho

    Field load tests on deep slurry stabilized bored piles have shown that end bearing resistance was unreliable due to soft toe conditions caused by debris accumulation at the bottom of the hole during p

    Jan 1, 2002

  • DFI
    Experimental And Theoritical Studies On Pile Capacity - Synopsis

    By K. Rambha Devi

    The paper is an attempt to co-relate the findings of pile capacity using a number of formula suggested by various authors with the actual field load test results. Five locations consisting of wholly s

    Jan 1, 1996

  • DFI
    Recent Advances In Large Diameter Diaphragm Wall Shafts

    By Benoit Virollet

    Over the last 10 years the diameter of unbraced, unlined and unanchored circular shafts has grown dramatically in many parts of the world. This progress has taken place through improvements in: constr

    Jan 1, 2006

  • 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
    Deep Foundations In Washington, DC

    By Douglas W. Christie

    Deep foundations in Washington, DC have played a role in the city?s development since the 19th century. Designers of government and commercial buildings sought deep foundations initially to minimize

    Jan 1, 2006

  • 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