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  • DFI
    Soldier Pile Installation Light Rail Rapid Transit Buffalo, New York - Project Description

    By Daniel J. Rider

    In 1980 the Niagara Frontier Transportation Authority contracted for three miles of cut and cover box structure and station construction in Main Street, Buffalo, New York. Project depths ranged from

    Jan 1, 1987

  • DFI
    Test Pile Program To Determine Axial Capacity And Pile Setup For The Biloxi Bay Bridge

    By W. Robert Thompson

    Hurricane Katrina caused significant damage to transportation structures on the Gulf coast in August, 2005, including the destruction of the US 90 Bridge over Biloxi Bay, Mississippi. Part of the suc

    Jan 1, 2009

  • DFI
    Regulations Of Construction Vibrations

    By Mark R. Svinkin

    Regulations are needed to keep construction vibrations in tolerable limits. The existing regulations were developed for low-rise residential structures, but they are incorrectly used for different sup

    Jan 1, 2006

  • DFI
    Value Engineering And Field Testing Of Pre-Cast Concrete Piles For The kcICON Project

    By Elizabeth M. Smith

    The kcICON design-build project in Kansas City, Missouri includes widening the existing roadway, improving interchanges and grade separation bridges, and replacing the Missouri River Bridge. The Miss

    Jan 1, 2009

  • DFI
    Recent Developments in Wind Turbine Foundation Design: Post Tensioned Single Pier

    By Mohsen Elsayed, Amr Sallam, Ahmad Mohamed, Xuebing Zheng, Mohamed Alrowaimi

    The foundation is an essential component of the wind turbine that ensures continued operation under stable and safe conditions. Both shallow and deep foundations are utilized to support wind turbines

    Jan 1, 2019

  • DFI
    ACIP Pile Performance and Installation in the Northeastern United States

    By Jr NeSmith

    "Augered-cast-in-place (ACIP) pile installation technology has matured extensively since the first auger, pressure grouted pile was patented in 1959. The current technology allows for successful pile

    Jan 1, 2016

  • DFI
    Improvements in Deep Compaction Using Vibratory Pile Hammers (a877ad8a-6d27-4e33-a419-f0edb9bac870)

    By Dennis Nottingham

    "Increased interest in seismic soil liquefaction and preventative soil stabilization sets the stage for improved deep compaction methods using pile driving techniques. In 1971, L.B. Foster Company per

    Jan 1, 2005

  • DFI
    Development Of Vertical-Horizontal Yield Envelopes Of Pile Group Supported Bridges Subjected To Scour

    By Aditi Sharma, Sumanta Haldar

    Scouring of soil is the major concern forthe various hydraulic structures built in the flowing rivers since scouring impacts the bearing capacity of foundations. Hence, consideration of scouring in th

    Sep 1, 2022

  • DFI
    Kosciuszko Bridge Main Pylon Deep Foundation Solution

    By A. Daugiala, D. Coleman

    In 2014 the New York State Department of Transportation (NYSDOT) awarded a Design-Build contract to the joint venture team consisting of Skanska which is the managing partner; Kiewit Corporation and E

    Jan 1, 2016

  • DFI
    Ground Improvement Using Stone Columns To Mitigate Liquefaction, Reduce Settlements And To Increase Safe Bearing Capacity Of In-Situ Soils – A Case Study

    By Venkata Krishnaiah Yeddala, Sai Vivek Adari, Suresh Kumar Velugu

    Assam cancer care foundation (ACCF) proposed the construction of hospitals and related facilities across 18 locations in the state of Assam-India. Tezpur is one among the 18 locations of Assam with hi

    Nov 1, 2022

  • DFI
    Jet Grout Underpinning to Support the Waterman Hospital

    By Piotr Kozlowski, Stanley L. Worst, Matthew J. Niermann

    The Waterman Hospital in Tavares, Florida was undergoing an expansion and required a below-grade excavation immediately adjacent to the Emergency Department. This wing of the hospital was under high t

    Jan 1, 2019

  • DFI
    Piling Framed Tie down Concrete Retaining Wall

    By Saieb Haddad, Henry Pate

    "Building retaining walls in an urban area is becoming more difficult due to right-of-way restraints. Using standard concrete cantilever walls requires a construction easement behind the walls for ins

    Jan 1, 2007

  • DFI
    Piling Framed Tie Down Concrete Retaining Wall (4e2f4102-889f-44e0-a228-adb5cc7c450f)

    By Saieb Haddad, Henry Pate

    "Building retaining walls in an urban area is becoming more diffi cult due to right-of-way restraints. Using standard concrete cantilever walls requires a construction easement behind the walls for in

    Jan 1, 2007

  • DFI
    The Seven Steps To Foundation Retrofit

    By Javier Rodriguez

    Adaptive re-use of existing structures in urban environments has become very common due to lack of available space in our cities and requirements for increased structural capacity. Often, it involves

    Jan 1, 2006

  • DFI
    Cooperative Effort Overcomes Problems With Pier And Cofferdam Construction Caused By Rock Slope

    By Herbert F. ?Buck? Darling

    A bridge replacement project in Rochester, NY, encountered difficulties when it was determined that rock below one pier was sloping downward toward the river at an angle of 42 degrees versus anticipat

    Jan 1, 2013

  • DFI
    Design for Installation of Suction Piles in Sand Deposits for Mooring of Floating Offshore Structures

    By Chul Soo Park, Juhyung Lee, Duhyun Baek

    "In this study the preliminary design of suction pile as the supporting system of the concrete floating structures was performed at the offshore pilot project area in Korea. The suction pile of the fl

    Jan 1, 2017

  • DFI
    Davison Freeway Reconstruction Utilizes Design/Build Retaining Walls

    By Thomas C. Anderson

    Thirty-four retaining walls are part of the $46 million upgrade of a 1942 depressed highway in Highland Park, Michigan near Detroit. This project will close a missing link between two newer roadways,

    Jan 1, 1999

  • DFI
    Ground Improvement For The Deep Foundation Of A 650 M Long Quay Wall In The Port Of Hamburg

    By Peter Arz

    In the port of Hamburg a 650 m long quay wall was completed in mid-1985. The watertight wall consists of loadbearing steel buttress piles PSP 1012 which are up to 28 m long and infill interlocking she

    Jan 1, 1987

  • DFI
    Innovations and Challenges during Urban Development – Shoring and Foundations of Canada’s Tallest Residential Building

    By Shawna Munn, Nadir Ansari, Toben Jerry

    With ever increasing demands on space in urban environments and smaller available footprints, buildings are being designed to increasing heights to meet the need. This case study discusses the increas

    Jan 1, 2019

  • DFI
    Macropiles: Ultra-High-Capacity Micropiles For Foundation Support

    By John R. Wolosick

    MACROPILES are defined as ultra-high-capacity micropiles, with working loads in excess of 250 tons. The piles are typically 9-5/8 to 24 inch (244 to 610 mm) outside diameter. They are drilled and gr

    Jan 1, 2006