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  • DFI
    LRFD and Its Implications for QC/QA of Deep Foundations

    By Bernard Hertlein, Chia K. Tan

    "The move to LRFD methods for structural design by AASHTO, ACI, AISC , ASCE, and the FHWA has been a major change for the American construction industry. The deep foundations industry has arguably bee

    Jan 1, 2005

  • DFI
    Optimization of Deep Foundation Design in a Sand, Gravel and Cobble Formation - Using Pressuremeter Testing In Slotted Sleeve Casing (8ff70823-b892-4925-865f-fae636443d0f)

    By Emad Farouz, Roger Failmezger

    "The proposed reconstruction of I-75 downtown consists of widening an approximately 2.46 Km section of IR-75 through the northern section of downtown Dayton, OH, USA. Bridge B-13 is a 9-span continuos

    Jan 1, 2007

  • DFI
    Optimization of Deep Foundation Design in a Sand, Gravel and Cobble Formation USING PRESSUREMETER TESTING IN SLOTTED SLEEVE CASING

    By Emad Farouz, Roger Failmezger

    "The proposed reconstruction of I-75 downtown consists of widening an approximately 2.46 Km section of IR-75 through the northern section of downtown Dayton, OH, USA. Bridge B-13 is a 9-span continuos

    Jan 1, 2007

  • DFI
    Comparing The Bench Test and Field Test Results for the Deep Mixing at the Rio Puerto Nuevo Project in San Juan, PR

    By Filippo Maria Leoni, Wesley Schmutzler

    "Deep Mixing Method (DMM) for the Rio Puerto Nuevo Project in San Juan was chosen by the Corps of Engineers to improve the soils adjacent to a 90 inch forced sewer main relocation and to improve the s

    Jan 1, 2015

  • DFI
    Verification of Installation and Performance of ACIP Piles for Bridges

    By W. Morgan NeSmith

    "The DFI ACIP Pile Committee, in conjunction with the Florida DOT, completed an ACIP Pile installation monitoring and performance test program in late 2016 to advance the inclusion of ACIP piles in fu

    Jan 1, 2017

  • DFI
    Tension Testing of the Grouted Anchorage Assembly for Multistrand Anchors

    By Lucian L. Bogdan

    "SummaryActive loaded strand anchors are often used for slope stabilization, retaining walls or tiedown anchors. Normally, strands are tensioned against the structure and wedges are locked inside the

    Jan 1, 2005

  • DFI
    A New Design Method For Drilled Shafts In Rock ? Synopsis

    By Chris M. Haberfield

    The design of side resistance of drilled shafts socketed into rock has traditionally been empirically based on the results of pile loading tests in which the side resistance can be isolated from the s

    Jan 1, 1996

  • DFI
    Engineering Foundation Support For Las Vegas Strip's Tallest Hotel Casino

    By Nicholas P. Gura

    This paper presents the analysis, design, and load test program results for drilled shafts to support a 70-story hotel tower and associated 10 story podium structures located in Las Vegas, Nevada. A

    Jan 1, 2007

  • DFI
    Concrete Filled Steel Tubes for Deep Foundations of Transportation Structures

    By Charles Roeder, Amy Leland, Dawn E. Lehman

    Concrete filled steel tubes (CFSTs) are composite members that are commonly used in many countries today. CFST components are used in the United States, but they are more common in Asia, in part becau

    Jan 1, 2019

  • DFI
    Shear Walls Used For Liquefaction Stabilization Of Earthen Dam Embankments

    By Peter J. Nicholson

    Recognition of the liquefaction susceptibility of dam embankments has been heightened since the San Fernando Dam near failure incident in 1971. Both the downstream and upstream slopes of dams can be

    Jan 1, 2008

  • DFI
    Innovations in Mass Stabilization for Ground Improvement and Environmental Remediation

    By Charles M. Wilk

    "Mass stabilization (MS) is a ground improvement technique that can prepare areas of low bearing strength soil for subsequent infrastructure development. The technique involves mixing binding agents s

    Jan 1, 2015

  • DFI
    Deflection-based Design For The Capitol Crossing Support Of Excavation

    By Harald P. Ludwig, Matthew J. Niermann

    The support of excavation (SOE) for the Capitol Crossing project in Washington, DC consisted of a combination of soldier piles, lagging, tiebacks, braces, underpinning, single auger soil mixed (SASM)

  • DFI
    Design And Performance Of Helical Screw Piles In Collapsible And Expansive Soils In Arid Regions Of The United States

    By David R. Black

    Foundation problems due to collapsible and expansive soils are well known throughout the arid western United States. Millions of dollars are spent annually to counteract the effects of such soils for

    Jan 1, 2002

  • DFI
    Design Of The Marine Foundations For The Skyway Project Of The San Francisco Oakland Bay Bridge

    By Gerry Houlahan

    The east span of the 3.5 km long SF-Oakland Bay Bridge is supported by different types of foundations along its span. Starting from the west, its first 460 m section comprising twin concrete box-girde

    Jan 1, 2013

  • DFI
    Prestressed Concrete Sheet Pile Retaining Wall to Support Railroad Embankment Widening Adjacent to a Wetland

    By Abhijit R. Sheth, Craig M. Benedict, John Brun, Ara G. Mouradian

    "Amtrak recently replaced the 1907-era bascule two-track bridge over the Niantic River between East Lyme and Waterford, Connecticut. The project included new approach embankments, with approximately 2

    Jan 1, 2017

  • DFI
    Drilled Shaft Foundations For The Float-In Dam On The Monongahela River At Braddock, Pa

    By Robert B. Bittner

    The new gated dam on the Monongahela River at Braddock, Pennsylvania, was built for the US Army Corps of Engineers using an innovative ?In-the-Wet? technology. A key feature of this technology involv

    Jan 1, 2013

  • DFI
    Opimization of Solid and Hollow Micropiles for Shallow Foundations on Sand

    By P. D. Arumairaj, B. Vani

    "Micropiles are small diameter cast insitu reinforced grouted piles and it has been effectively used in many applications of ground improvement. It increases the load carrying capacity of soil and red

    Jan 1, 2015

  • DFI
    Drilled Shaft Foundations for the Float-in Dam on the Monongahela River at Braddock, PA (6c19e969-5f09-43f8-9e6e-1837d4537e5e)

    By Robert B. Bittner

    The new gated dam on the Monongahela River at Braddock, Pennsylvania, was built for the US Army Corps of Engineers using an innovative "In-the-Wef' technology. A key feature of this technology in

    May 11, 2007

  • DFI
    Preliminary Assessment of Reliability and Sampling Requirements for Deep Mixing Method (DMM) Foundations for LNG Processing Facility and Storage Tank (52fd79c3-58e2-4970-9b21-5f8e12930105)

    By Paul Summers, Kevin Richardson, Willem (Billy) Villet, Paul J. Sabatini, Attasit Korchaiyapruk, Edward C. Clukey

    "A deep mixing method (DMM) foundation was selected by the Project Team for a very large LNG facility in West Africa. As described in a companion paper, this foundation consists of a large number of c

    Jan 1, 2017

  • DFI
    Founded on Creativity North Dakota’s Four Bears Bridge

    By Terrence R. Udland, Russell D. Call

    "Honored with a DFI 2006 Special Recognition Award, the Four Bears Bridge was constructed across Lake Sakakawea and opened to traffi c in September 2005. The very large lake size and severe winter con

    Jan 1, 2007