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  • DFI
    Characterization Of Loess For Deep Foundations

    By Robert L. Parsons

    This paper describes the results of a detailed analysis of a loess deposit at the deep foundations test site established by the Kansas Department of Transportation. Multiple CPT, SPT, and pressuremet

    Jan 1, 2009

  • DFI
    Charleroi Locks: Repair Methods to Restore Structural Integrity of Large-Diameter Drilled Shafts

    By Alexandre Alex) J. Bredikhin

    "DISCLAIMER: the statements presented herein are those of the author and do not necessarily represent the views of US DoD or its Components.ABSTRACTProgress on the $750M lock project on the Monongahel

    Jan 1, 2017

  • DFI
    Charles Grimes Bridge Foundations, Melbourne, Australia - Synopsis

    By Charles Pol Vuillier

    Piling work for modification to the Charles Grimes Bridge in Melbourne, Australia required piles to be installed through 15 to 20 m thickness of very soft to soft silty clay overlying 10 m of stiff cl

    Jan 1, 2000

  • DFI
    Classical And Finite Difference Method To Estimate Pile Capacity Compared With Pile Load Testing Results

    By Yogesh Prashar

    Three conventional uplift tests and 12 Rapid Pile Load Tests (RLT) were performed on total of fifteen 16-inch square pre-cast concrete driven piles at a test site in Emeryville California in December

    Jan 1, 2002

  • DFI
    Cockatoo Island Seawall Seepage Barrier

    By Chris L. Powell, Russell J. Denny

    "The remotely located Cockatoo Island iron ore mine off the Kimberley coast in the northwest of Western Australia has been in operation since 1951. The mine was recently expanded up to about 50 m (165

    Jan 1, 2017

  • DFI
    Cockatoo Island Seawall Seepage Barrier (b791f2b4-d692-4b8a-afba-0ecd9b385be1)

    By Chris L. Powell, Russell J. Denny

    "The remotely located Cockatoo Island iron ore mine off the Kimberley coast in the northwest of Western Australia has been in operation since 1951. The mine was recently expanded up to about 50 m (165

    Jan 1, 2017

  • DFI
    Cockatoo Island Seawall Seepage Barrier – Permeation Grouting, Jet Grouting and a Soil/Cement/Bentonite Mixed Slurry Capping Trench

    By Chris L. Powell, Russell J. Denny.

    "The remotely located Cockatoo Island iron ore mine off the Kimberly coast in Western Australia, which has been in operation since 1951, was recently expanded up to 50m below sea-level using staged co

    Jan 1, 2016

  • DFI
    Cofferdam Failures ? Introduction

    By Richard J. Hartman

    This presentation identifies some of the more common problems associated with cofferdam construction. After the various problems are identified, they are briefly explained and possible solutions and p

    Jan 1, 1987

  • DFI
    Cofferdam Solution for Steeply Sloping Rock Using Flat-Sheet Piles

    By Norm Kirk, Robert Bittner

    "The addition of a new powerhouse at the existing Tulloch Hydroelectric site on the Stanislaus River in the western foothills of the Sierras Nevada Mountains of central California required a deep exca

    Jan 1, 2017

  • DFI
    Collaborative Alliances – A Sustainable Way Forward For Construction?

    By Stefano Trevisani

    Abstract The FIEC Sustainability Vision states that “risks should be identified and allocated in a fair manner across the project team from the early stages of the design phase. A partnering approach,

    Jan 1, 2014

  • DFI
    Collaborative Data Sharing During Seepage Barrier Wall Construction at Bolivar Dam – Perspectives from Owner, Contractor and Sub-Contractor

    By Robert Bachus, Jamey Rosen, Fabio Santillan, Georgette Hlepas

    "A seepage barrier of length 4,800 feet and maximum depth 144 feet is being installed at Bolivar Dam in Ohio. This project is owned by the United States Army Corps of Engineers and contracted to Trevi

    Jan 1, 2017

  • DFI
    Collaborative Development of Sustainable & Economical Solutions for Underground Structures

    By Abid Adekunte

    "Whilst safety is considered to be of high priority in every aspect of engineering projects, it is equally important for designers and contractors to be continually aware of their obligations to the i

    Jan 1, 2017

  • DFI
    Collaborative Value Engineering Redesign - DFI 2020

    By Martin Mcdermott, Kevin Tehansky, Robert Ross, Jeffrey Goodwin

    A foundation value engineering redesign is a collaboration between the project owner, original design team, general contractor, foundation contractor and redesign team. Without the acceptance and coll

  • DFI
    Colorado Geology & End Bearing Helical Piles on Bedrock

    By Melinda Hummel, Howard Perko

    Colorado has a diverse geology including alluvial, colluvial, and eolian deposits overlying sedimentary, metamorphic, and igneous bedrock at varying depths and outcrops.  There is often concern f

    Oct 7, 2024

  • DFI
    Combined Loading Tests On Large Diameter Piles

    By A. Lyndon

    Combined loading tests are described to three 1.2m diameter cast-in-place bored piles, 12m long, formed through cohesionless material into stiff sandy clay. The maximum loading conditions imposed at t

    Jan 1, 1989

  • DFI
    Combined Piled Raft Foundation (CPRF) response

    By G. L. Sivakumar Babu, P. Chaithra

    "Raft foundations which are used against differential settlements and for carrying heavy loads can still be subjected to excessive settlements even if it is safe against bearing capacity consideration

    Jan 1, 2015

  • DFI
    Coming To Times - Background - Collapse

    By Darrell L. Beddard

    The Loma Prieta earthquake occurred on October 17, 1989 at 5:04 PM, Pacific Daylight Time. It measured 7.1 in magnitude and was felt from Los Angeles north to the Oregon state line and east to western

    Jan 1, 1995

  • DFI
    Commentary on the Selection, Design and Specifcation of Ground Improvement for Mitigation of Earthquake-Induced Liquefaction

    By Ground Improvement Committee

    The evaluation of earthquake-induced liquefaction has become a routine part of geotechnical engineering design. For a given project, if an analysis identifies a potential for liquefaction and the cons

    Aug 1, 2013

  • DFI
    Common Sense Changed Conditions

    By Bert R. Oastler

    BERT R. OASTLER: Born Atlanta, Georgia, October 19, 1933; B.S. Civil Engineering, Duke University, 1956; Doctor of Laws, Emory University, 1966; Bryan Honor Society; Associate Editor, Journal of Publi

    Jan 1, 1988

  • DFI
    Compaction Techniques on Heterogenous Ground to Achieve the Exacting Specification Requirements with Suitable Verification Testing Procedures

    By Vijaya Rao Parigela, Jason Redgers, Bushra Khan

    Ground Improvement was required for adoptable roads profile below the designated Rights of Way as part of infrastructure and streetscape works for an urban development project over an area of 500,000

    Oct 31, 2023