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  • DFI
    Specialized Slurry Wall Equipment - The Hydromill - Summary

    By Mario Mauro

    The article illustrates the Hydromill technology, as applied in urban sites, and its advantages in terms of quality of the end product, mitigation of the construction impact, and optimization of the l

    Jan 1, 1994

  • DFI
    Dynamic And Static Loading Tests Of Piles For Bridges In Surinam - Introduction

    By W. J. van Niekerk

    Ballast Nedam is in Surinam constructing two bridges that will improve communications in the coastal region. The bridges will cross the Coppenam and Surinam rivers and will be founded on open-ended st

    Jan 1, 2000

  • DFI
    AUT-CPT & Pile Database for Piling Performance Using CPT and CPTU Records

    By Sara Moshfeghi, Seyyed Majdeddin Mir Mohammad Hosseini, Abolfazl Eslami

    "Due to variety of current pile bearing capacity methods based on the cone penetration test (CPT), for optimum design, it is necessary to evaluate the performance of such methods in different geotechn

    Jan 1, 2017

  • DFI
  • DFI
    Case Histories, Part 1 - Études De Cas, Partie 1 - Jet Grouting Underpinning Of A Building In The Us

    By Gustavo E. Armijo

    This job was done in Morristown, NJ, with mono fluid system jet grouting for the construction of a new bank building. After the demolition of the existing two story structures, an excavation in loose

    Jan 1, 2002

  • DFI
    Analysis of Load Transfer along Large Diameter Bored Piles in Very Dense Sands

    By Nabil F. Ismael, Khalid Farraj

    "The axial load transfer along large diameter bored piles in very dense silty sand was examined by field tests. Two instrumented piles 1.2 m diameter and with embedded length of 18 m and 25 m were loa

    Jan 1, 2017

  • DFI
    Grouting Methods Involved in Stabilization of TBM Tunnel near CP-06, UAA-04, Chennai Metro

    By Yeruva Ramanareddy, Sohail Wajid, Ahmed Shaz, K. Bhavani

    "CP-06 is an NATM cross passage which connects up-line and down-line metro tunnels near Kilpauk Medical College, Chennai. It lies completely in loose silty sand to dense sand with water table almost t

    Jan 1, 2017

  • DFI
    Installation Of Augered Cast-In-Place Piles - Equipment (b596934a-6910-4dd1-8c4a-72745306d21b)

    By Tracy Brettmann

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

    Jan 1, 2001

  • DFI
    History Of Timber Piles And Preservation Techniques - A Presentation At The Deep Foundations Institute Annual Meeting Williamsburg, Virginia, December 1982

    By Bruce Haldeman

    Timber has been used as pile support for structures for 6,000 years. Some means of preservation of wood go back almost that far. Timber piles support all types of structures ? some are buried below th

    Jan 1, 1984

  • DFI
    Trends In Deep Foundations In Europe ? Synopsis

    By R. Stenne

    This paper presents the trends in deep foundations in Europe, both in terms of design and construction. Eurocode 7 which is a design code for geotechnical engineering will be introduced in the Eur

    Jan 1, 2000

  • DFI
    Installation Of Bored Pile Casings Through An Asbestos Tip By Rotary Displacement

    By Lewis Stansfield

    A rotary displacement method was used to install permanent steel casings for bored piles through an asbestos tip. This method was chosen in preference to alternative driven systems because it was quie

    Jan 1, 2000

  • DFI
    Dealing with Complexities Associated with the Application of Bored Pile Retaining Walls in Urban Developments

    By Abid Adekunte

    "Engineers and developers have witnessed the growing popularity of deep basement structures as components of urban commercial and residential developments. This is often attributed to inadequate surfa

    Jan 1, 2017

  • DFI
    Piled Foundation Design as Reflected In Codes and Standards

    By Bengt H. Fellenius

    "ABSTRACTAn example from a guidelines document for the Eurocode is discussed that addresses design for geotechnical strength of piled foundations in settling soil, generating drag force and downdrag.

    Jan 1, 2014

  • DFI
  • DFI
    Ground Improvement for the Distressed Earth Bund Using Stone Column - A Case Study

    By M. Kumaran, A. Vetriselvan, A. Purantharan

    "This paper presents a case history of evaluating the stability of a distressed earth bund and rectification measures carried out. A 5.45 km long, 7m high earth bund for drinking water storage was con

    Jan 1, 2017

  • DFI
    Case History: Augered Cast-In-Place Piles For The Pittsburgh International Airport Midfield Terminal

    By Randy R. Huberty

    Although originally designed with deep foundations consisting of all driven steel H piles and drilled caissons, a unique application of Augered Cast-in-Place (ACIP) piles as an alternate design result

    Jan 1, 2001

  • DFI
    Vibration Environmental Effect Of Construction Operations - Synopsis

    By Mark R. Svinkin

    Construction vibrations may be harmful to adjacent and remote structures, sensitive instruments and people. Construction vibration sources have a wide range of energy, displacement, velocity and accel

    Jan 1, 2000

  • DFI
    DFI Europe Monitoring and Instrumentation Committee Objectives

    By Rob van Dorp

    "AbstractThe Monitoring & Instrumentation Committee (MIC) of DFI Europe has the objective to support DFI members in concern of risk management of geotechnical matters, where monitoring and instrumenta

    Jan 1, 2014

  • 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
    A Study Of Three Test Sites Comparing Theoretical Ultimate Pile Capacities, Static Pile Load Tests, And Psuedo Static Pile Load Test Results

    By Richard D. Short

    The Pseudo Static Pile Load Test, PLT, is a rapid method for determining pile capacity. Pile design is usually based on theoretical calculations of ultimate load capacity using soil data from a field

    Jan 1, 2000