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  • DFI
    Installation Of Marine Pile Foundations At The Skyway Project For The San Francisco Oakland Bay Bridge (16c93b01-e1c3-48e5-bd32-54e8ea2106cb)

    By Robb L. Swenson

    Construction of foundations for the Skyway Segment of the San Francisco Oakland Bay Bridge required innovative techniques due to the mass of the structures being inserted and the unique subsurface of

    Jan 1, 2013

  • DFI
    Reducing Construction Interference when Implementing Geotechnical Instrumentation and Monitoring in Urban Excavation Projects

    By Martin B. Hudson, Daniel Brescia, Zhangwei Ning

    Due to the complexity and sensitivity of surrounding environments, instrumentation and monitoring (I&M) is critical for many urban deep excavations. The objects to be monitored include shoring bulkhea

    Jan 1, 2018

  • DFI
    Longitudinal Splitting Of Precast Reinforced Concrete Piles During Driving ? Synopsis

    By B. B. Broms

    The high transverse tensile stresses that develop in precast concrete piles during driving have been investigated experimentally from pile load tests and theoretically using the finite element method

    Jan 1, 2010

  • 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
    Suction Piles And Suction Anchors For Offshore Structures

    By S. Bang

    In recent years, suction piles and suction anchors have been used as underwater foundations for various offshore structures. They have been proven very versatile, effective, and environmentally frien

    Jan 1, 2009

  • DFI
    High-Strain Dynamic Testing Of Drilled Shafts And Cast-In-Place Piles

    By Garland E. Likins

    High-strain dynamic testing of drilled shafts and cast-in-place piles has become routine procedure in many parts of the world today. Field testing is performed by measuring strain and acceleration rec

    Jan 1, 1995

  • DFI
    Innovative Riverbank Erosion Control Retaining Wall System for the Brazos River

    By Tracy Brettmann, Will Bohlen

    An innovative retaining wall design consisting of tangent drilled shafts with supplementary seal piles was used to limit continuing bank erosion along the Brazos River in Southeast Texas. The riverban

    Jan 1, 2018

  • 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
    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
    Instrumentation Of Construction Vibrations

    By Mark R. Svinkin

    Construction vibrations may adversely affect surrounding buildings and their effects range from human discomfort and disturbance of sensitive devices to visible structural damage. There is no unique c

    Jan 1, 2002

  • 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
    Lateral Performance Of Two-Section Helical Piles In Soft Soils

    By Mohammed Sakr

    A Two-Section Helical Pile (TSHP) is a steel pipe with two shaft sections of different diameters and with one or more helix plates near the bottom of each shaft section. TSHPs are used regularly in we

    Jan 1, 2009

  • DFI
    Design and Installation of Gudrun Platform Jacket Piles

    By Gunhild Hennum, Tewodros Tefera, Gisle Håland, Annette Jahr

    "Abstract The Gudrun field is located west of Stavanger in the North Sea at water depth of 109 m. A jacket substructure was selected to support the topside and was installed in 2011. The jacket shall

    Jan 1, 2014

  • 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
    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
    High Capacity Barrettes In A Region Of Old Underground Quarries

    By F. Schlosser

    The extension of Montparnasse Station in Paris required the construction of supports of very high unit capacity to support a particularly rigid super-structure. The majority of the site is characteriz

    Jan 1, 1989

  • DFI
    Load In A Drilled Foundation. Where Did It Go And When Did It Get There?

    By Walter E. Vanderpool

    Three drilled foundations for an elevated water-tank were instrumented, tested and monitored during construction and the first two years in service. One shaft was load tested by the Osterberg method.

    Jan 1, 2004

  • 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
  • DFI
    Constructability Of Tiedback Wall Systems - I. Introduction

    By Thomas C. Anderson

    Tiedback walls are now recognized and accepted as a good solution for a variety of structural problems: ? Retaining Walls and Bridge Abutments in cut situations ? Landslide stabilization ? Rep

    Jan 1, 1991