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  • 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
    Keynote Lecture 2: Dr. Masaaki Terashi The State of Practice in Deep Mixing Methods

    By Masaaki Terashi

    The machine for the hybrid method called JACSMAN is ordinarily a dual shaft machine. Each shaft has augers at three different levels and nozzles for jetting at two different levels. The distance betwe

    Feb 10, 2003

  • DFI
    Shoring of Long Beach Main Pump Station Utilizing Ground Improvement Methods, Long Beach, CA

    By Eric Lindquist, John Compagnone, Gabriel Carvajal

    "Condon-Johnson & Associates, Inc. (CJA) with the assistance of design consultant, Brierley Associates, designed and installed a water tight shoring system utilizing several ground improvement techniq

    Jan 1, 2017

  • DFI
    Deep Compaction Using Vibratory Pile Hammers

    By Dennis Nottingham

    The need for deep compaction of submerged granular soils has led to improvements in this area. In 1971, L.B. Foster Company personnel patented a method of deep compaction using a vibratory pile hammer

    Jan 1, 2013

  • DFI
    Driving and Extraction of Steel Pipe Piles in Nearshore Environment

    By Jim Rix, Ken Been, Nihal Bohra, Anthony Rice, Juan Lopez

    "A temporary bridge, supported on steel pipe piles, was built to expedite the construction of a breakwater structure off the western coast of Peru. The bridge provided access for dump trucks to the br

    Jan 1, 2017

  • DFI
    Driving And Extraction Of Steel Pipe Piles In Nearshore Environment

    By Nihal Bohra

    A temporary bridge, supported on steel pipe piles, was built to expedite the construction of a breakwater structure off the western coast of Peru. The bridge provided access for dump trucks to the bre

  • DFI
    Estimating Kinematic Demands From Lateral Ground Deformations On Pile-Supported Wharves

    By Arash Khosravifar Ph. D. P. E., Thomas Torkelson P. E., Milad Souri Ph. D. P. E.

    Kinematic demands from lateral ground deformations can be a major cause of damage to maritime and highway transportation structures such as wharves, piers, and bridges. These kinematic demands are dif

    Oct 1, 2022

  • DFI
    Design, Construction and Design Validation through High Strength Testing (PDA) of CFA and DD Foundations

    By Stefano Pirrello

    "Sydney’s booming real estate market has pushed property developers to invest in historically “no-go” areas, which were previously too expensive to develop. These areas are usually near rivers where t

    Jan 1, 1900

  • DFI
    Frustum Confining Vessel (FCV) For Investigation of Deep Foundation Performance

    By Abolfazl Eslami, Masoud Zare, Ali Asadi, Ali Abrang

    "Physical small scale models for study of deep foundations can be performed in simple chambers (1g), calibration chambers (CC), and centrifuge apparatus (ng) which involve some limitations and difficu

    Jan 1, 2015

  • DFI
    Thirty Years of Experience with the Wave Equation Solution Based on the Method of Characteristics

    By Peter Middendorp, Gerald E. H. Verbeek

    "This paper will describe a brief history of the method of characteristics as an accurate solution of the wave equation, and the author's experiences with the method of characteristics over a period o

    Jan 1, 2005

  • DFI
    Dynamic Analysis Of A Base-Isolated Bridge, Seattle, Washington

    By Jeremy Butkovich

    Dynamic soil-structure interaction (DSSI) analyses are becoming more common in bridge designs, especially in seismically active areas. Because of its proximity to two active fault zones, the Evergree

  • DFI
    Large Scale Jet Grouting And Deep Mixing Test Program At Tuttle Creek Dam

    By Mario Mauro

    Tuttle Creek Dam was constructed by the U.S. Army Corps of Engineers in the 1950?s on the Big Blue River in north-east Kansas. Since the dam is located in a seismic area, the safety of the dam was re-

    Jan 1, 2008

  • DFI
    Ground Improvement Using Stone Columns To Mitigate Liquefaction Potential Of Fine Sand By Wet Top Feed Vibro Replacement Method – A Case Study

    By Parameswaran V. S, Anshuman Singh

    This is a case study on ground improvement using Stone columns at Kokrajhar in Assam which comes under seismic Zone V as per IS: 1893. The strata at site comprised of mostly fine sands with low SPTN v

    Nov 1, 2022

  • 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
    Self Hardening Slurry Wall Installation By Hydromill At The Herbert Hoover Dike ? An Innovative Solution

    By Mario Mauro

    In 2007 the US Army Corps of Engineers classified the Herbert Hoover Dike in Florida as a Dam Safety Action Classification (DSAC) 1 dam, and started the implementation of one of the largest dam rehabi

  • DFI
    Effect of Cold Joint on Behavior of Block Type Deep Mixing Improved Ground

    By M. Kitazume, H. Imai

    The deep mixing method was developed in Japan and put into practice in the middle of 1970s. Since then, the wet and dry type methods have been applied for various improvement purposes in Japan. One st

    Sep 8, 2021

  • DFI
    The Little Lake Harris Bridge Settlement Restoration Project: Lessons Learned

    By Amr Sallam, David Thompson, Moataz Hassan

    "The Little Lake Harris (LLH) Bridge was constructed in 1951 to replace the eastwest County Road 48 Bridge connecting the towns of Howey-in-the-Hills and Astatula in Lake County, Florida, United State

    Jan 1, 2015

  • DFI
    Buttressing Berms for Stability of Cantilever Sheet Piles – Limit Equilibrium and Finite Element Approaches

    By Ali Ebrahimi, Meena L. Viswanath, John F. Beech, Mustafa B. Erten, Ming Zhu

    "Excessive deformation of a cantilever sheetpile wall can occur due to dredging, excavation, backfilling, or long-term creep behavior of soil. A buttressing berm constructed in front of the wall can b

    Jan 1, 2016

  • DFI
    John F. Kennedy Airport Site Redevelopment: Tapertube Pile Foundation

    By Gisele R. Passalacqua, Aly Mohammad, Joanna Smith

    The $13 billion John F. Kennedy (JFK) airport construction redevelopment program includes new terminals and buildings that are supported on piles to meet the airport expansion demand due to increased

  • DFI
    Horseshoe Secant Compression Shoring System For Tunnel Repair

    By Karen Talbot, Noah Maier, Rob Jameson, Giuseppe Gaspari

    A storage and drainage tunnel advancing below I-75 in Detroit, Michigan experienced sudden subsidence. The Tunnel Boring Machine (TBM) was damaged to the extent that its shield, cutting head and exten

    Oct 1, 2022