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  • DFI
    Deep Soil Mixing Design and Construction for Surface Fault Rupture Mitigation

    By James R. Gingery, Byron Foster, Bret Lingwall

    While microzonation and setbacks are the typical mitigation for structures exposed to surface fault rupture hazards, lifelines and lifeline facilities are not easily relocated to avoid faulting. In th

    Sep 8, 2021

  • DFI
    Analysis And Performance Of Sheet Pile Cofferdam Under Demolition Blast Loads

    By Michael Oakland

    This paper will discuss the design analysis of sheet pile cofferdams for static and dynamic blast loads. Following construction of the new Willis Avenue Bridge across the East River between Brooklyn

  • DFI
    Analysis and Performance of Sheet Pile Cofferdam under Demolition Blast Loads

    By John Mould, Gordon Chen, Michael Oakland, William McElwee

    "This paper will discuss the design analysis of sheet pile cofferdams for static and dynamic blast loads. Following construction of the new Willis Avenue Bridge across the East River between Brooklyn

    Jan 1, 2017

  • DFI
    Deep Mixing Core Data from LPV 111

    By Donald Bruce, Alex Reeb, George Filz, Wesley Schmutzler, Mitsuo Nozu

    "One million seven-hundred thousand cubic yards of deep mixing were installed to support an elevation raise of an earthen levee known as LPV 111, which is located in east New Orleans. The deep mixing

    Jan 1, 2015

  • DFI
    Repair Methods for Corroded Steel Piles (0af709a8-9f1e-4f35-81ea-c69c3ee7fb05)

    By C. Vipulanandan, M. Dawood, Dongmei Pan

    "With the aging infrastructure, there is a need to maintain and extend the service life of steel structures in general and steel piles in particular. Steel piles support not only vertical loads but al

    Jan 1, 2017

  • DFI
    Small-Strain Behaviour of Artificially Cemented Sand in Deep Mixing Application

    By Stephen Darmawan, Mahdi M. Disfani, Arul Arulrajah, Alireza Mohammadinia

    Deep mixing using cementitious compounds is an in-situ method of ground improvement for improving the strength, compressibility of loose sand. Artificial light cementation can increase the stiffness o

    Jan 1, 1900

  • DFI
    Efficient Deep Foundations, Earth Retention Systems and Ground Improvement – New School Techniques for Columbia Manhattanville’s Subsurface Challenges

    By Justin Lukens, Di Stasim Jeffrey, Frank Di Salvo

    Columbia University’s Manhattanville Campus expansion includes the construction of two new business school buildings. The new buildings require development of an entire city block bound by 12th Avenue

    Jan 1, 2019

  • DFI
    Improvement Of Toe Resistance Of Drilled Shaft Foundations Using Smart Cells

    By Mario A. Terceros Herrera, Mario Terceros Arce, Antonio Marinucci

    A Smart Cell is a closed-type tip post-grouting device that is attached to the bottom of the steel reinforcement cage of a drilled shaft and is used to enhance performance and to reduce uncertainty th

  • DFI
    Switching From Monetary Process Management To Critical Success Factors Using An Appropriate Process Information System

    By Jochen Maurer, Dr. Christian Hoyme, Dr. Hans Regler

    Currently, it is very difficult to obtain qualitative and quantitative information about the status and production process of a construction site. As a rule, companies depend on reports from on-site e

  • DFI
    Solving Variable Bedrock Challenges With Ductile Iron Piles

    By Kevin R. Johnson, Matt Caskey, Bryan Plaskett

    Working in urban environments presents unique logistical challenges beyond those typically associated with traditional geotechnical design and construction. These challenges can include constrained si

    Oct 1, 2022

  • DFI
    Large Diameter Steel Pipe Piles Running Under Self Weight In Soft Clay ' Predicted Vs. Observed Behavior ' Richmond San Rafael Bridge Seismic Retrofit

    By A. R. Dover

    The Richmond San Rafael Bridge (Figure 1) is a 4.3 mile long major toll bridge span across northern San Francisco Bay. Tutor-Saliba/Koch/Tidewater (TSKT) conducted a comprehensive seismic retrofit, wh

    Jan 1, 2006

  • DFI
    Vsm And Ofd® Technology: Mechanized Solutions For Deep On- And Offshore Foundations

    By Nils Schneider, Marc Peters, Stefan Frey, Andrea Fluck

    Due to the worldwide population growth, the development of sustainable infrastructure and the exploration of renewable energies plays a key role to handle the rising megacity trends and to limit carbo

    Nov 1, 2022

  • DFI
    130 M Deep Bored Piles – A New Superlative

    By Vijay Kumar, Serhat Baycan, Karsten Beckhans

    For the deep foundation of podium and tower of the Kuala Lumpur City Centre, BAUER (MALAYSIA) SDN. BHD. constructed 225 bored piles with diameter range of 2.0 to 2.5 m. In order to comply with the dep

    Nov 1, 2022

  • DFI
    Design Build & Failure: Perils at a High Risk Shoring and Retaining Wall Project.

    By Mark Spence, Tom Lardner, Matthew Janes

    "IntroductionThe design-build method streamlines project delivery through a single contract between the Contract manager and the design-build team. The design-build method places emphasis on collabora

    Jan 1, 2015

  • DFI
    Application Of Pile Test Data For The Foundation Design Of Rail Viaduct At Carrum, Victoria

    By Nick M. Withers, Suthagarann Visvalingam, Cillian Mc Colgan

    The level crossings removal project in Victoria is removing 75 level crossings across Melbourne to improve safety by separating trains from traffic, with other benefits such as reduced congestion, an

    Nov 1, 2022

  • DFI
    Applying The Carbon Hierarchy To Geotechnical Contractors

    By J. E. De Waele, J. J. Lee, M. J. Mulheron, Luke R. Deamer

    There is increasing demand for geotechnical contractors to commit to carbon reduction, net zero or science based targets. A lot of focus has therefore been placed on using low carbon materials and low

    May 1, 2022

  • DFI
    Construction of Large Drilled Shafts the 2nd Annual Mike O'neill Lecture

    By Dan Brown

    Improvements in construction equipment and techniques in recent years have made possible the use of drilled shaft foundations in diameters and lengths not previously considered practical or feasible.

    May 11, 2007

  • 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
    Geotechnical Investigation For Fashion Island Boulevard Bridge Earthquake Repair State Bridge No. 35C-160 San Mateo, California

    By Lawrence P. Goldfarb

    This paper presents the results of the geotechnical investigation for the repair of the Fashion Island Boulevard Bridge, Bridge No. 350160, in San Mateo, California. The concrete, precast girder bridg

    Jan 1, 1993

  • DFI
    Construction Of Large Drilled Shafts (The 2nd Annual Mike O'Neill Lecture)

    By Dan Brown

    Improvements in construction equipment and techniques in recent years have made possible the use of drilled shaft foundations in diameters and lengths not previously considered practical or feasible.

    Jan 1, 2008