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  • DFI
    Construction Of A Pre-Founded Anchored Wall, Monitoring Of Execution Based On The Eurocode 7 Observation Method, And Taking Account Of The Transmission Of Seismic Forces In The Retaining Structures Towards The Buildings Structure

    By Denis Huber

    The technical assessment of the final works on the "Stéphany Palace" project at Menton in France's Alpes-Maritimes region shows the importance of daily project monitoring based on the observation

    Jan 1, 2002

  • DFI
    Wolf Creek Dam Foundation Remediation – An Innovative Solution

    By Fabio Santillan, Lyndon Bedford

    "This paper presents the main features of the Wolf Creek Dam Foundation Remediation Project, highlighting the innovative construction approach and stressing on how the collaboration between the contra

    Jan 1, 2015

  • DFI
    Three Deep Mixing Projects: Comparison between Laboratory and Field Test Results

    By George Filz, Morales, Carlos, Bertero, Filippo Maria, Alessandro, Leoni

    "The Deep Mixing Method (DMM) represents a viable solution to improve adverse geotechnical properties of foundation soils for many practical applications. A pre-construction soil investigation campaig

    Jan 1, 2015

  • 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
    Efficient Torque-Installed Pile Use in Southern California

    By Jason Buenker, Molly Winston

    Torque-installed piles are gaining popularity in Southern California as the go-to deep foundation element for small- to medium-capacity loads in urban environments. The torque-installed pile is a disp

    Jan 1, 2019

  • DFI
    Verification Of Drilled Shaft Resistance By The Post Grouting Method

    By Suthan Pooranampillai

    Verification of drilled shaft resistance is primarily obtained through the use of different load testing methods. Procedures utilized include conventional top down static loading, the Osterberg load c

    Jan 1, 2010

  • DFI
    Session 26 "Groutability and Grout Evaluation"

    By Peter Yen

    This session consists of five papers. Three involved research on the properties of grout materials, specifically ultrafine cements and polyurethane grouts. Two papers present the development of soil g

    Feb 10, 2003

  • DFI
    Construction Of The Drilled Shaft Foundations For The Huey Long Mississippi River Bridge, New Orleans

    By Dan A. Brown

    The foundations at the Huey P. Long Bridge in New Orleans presented special challenges for construction due to the requirements for very deep drilled shafts in the Mississippi River beneath the existi

    Jan 1, 2010

  • DFI
    Foundation Soil Strength Characterization Of Coastal Plain Deposits Along I-64 Corridor In Virginia

    By Sushant Upadhyaya, Deniz Karadeniz

    As part of the widening of I-64 in Williamsburg, Virginia, an extensive subsurface exploration program consisting of Standard Penetration Tests (SPT), Cone Penetration Tests (CPT), Dilatometer Tests (

  • 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
    Evaluation of Existing T-Z Models for Caliche Based on Numerical Analysis of Bi-Directional Load Tests Using NVShaft

    By Ramin Motamed, Fahim M. Bhuiyan, Raj V. Siddharthan, Joseph Toth

    The difficulty in material characterization and the erratic response of cemented soil layers, such as caliche in the Las Vegas valley, creates challenges for practicing engineers to reliably predict t

    Sep 8, 2021

  • DFI
    Construction of Long Deep Mixing Columns by Low-Height Rig

    By Shigenori Horikawa, Nobutaka Tanaka, Toshiro Hara, Kengo Yamamoto

    "The CDM-LODIC method(Low Displacement and Control method), a modified the CDM(Cement Deep Mixing) method, reduces the ground displacement through the removal of in-situ soil equivalent to the amount

    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
    Utilizing Drones to Improve Project Workflows

    By Barritt Lovelace

    Collins Engineers has been researching and implementing the use of drones on Civil Engineering Projects since 2015. Applications include bridge inspection, asset management, mapping, construction site

    Jan 1, 2019

  • DFI
    PPP Contract Delivery System- Contractual Risks and Ethical Issues Regarding Deep Foundation Subcontractors

    By Alexander Filotti, Richard Kalson

    "1. INTRODUCTION- WHAT IS P3 OR PPP ?The Public Private Partnership (PPP or 3P) is a project delivery scheme based on the government providing land and/or a concession agreement, and on a private enti

    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
    Deep Foundation Advancements in Fargo

    By Ezra Ballinger, Matthew R. Glisson

    Located in downtown Fargo, North Dakota, the Block 9 Redevelopment project site contains highly- compressible soils in the upper 100 feet with groundwater about 10 to 15 feet below the existing ground

    Jan 1, 2019

  • DFI
    Top-Loaded Bi-Directional Test and the Conventional Bi-Directional Load Test, a Direct Comparison

    By Patrick J. Hannigan, Seth Robertson, Frank Rausche, Rozbeh B. Moghaddam

    The Top-Loaded Bi-Directional Test (“TLBT”) and the conventional Bi-Directional Load Test (“BDLT”) are full-scale load tests where loads are applied bi-directionally to the foundation element. The BDL

    Sep 8, 2021

  • DFI
    Seismic Analysis Of Drilled Shafts As Earth Retaining Structure Based On Site Characterization

    By Bernardo J. Jiménez Vega, Edy L. T. Montalvan

    During the last phase of the Circunvalacion Norte project in San Jose, Costa Rica, preliminary designs for an underpass structure of over 16 km (10 miles) considered drilled shafts as an earth retaini

    Oct 1, 2022

  • DFI
    Practical Reuse of Foundations in High Rise Construction

    By William H. Walton, Clyde N. Baker Jr., Darren S. Diehm

    "A 51-story concrete core and steel frame commercial office tower was recently constructed on the site of the former US Gypsum building in downtown Chicago, Illinois, USA The structure foundation reus

    Jan 1, 2005