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  • DFI
    Anchored Hollow Bar Tangent Pile System For Underpinning

    By Marco D. Boscardin, Benjamin H. MacKinney, Kenneth R. Allard, Kenneth A. Pidgeon, Adriane G. Boscardin

    This paper presents a case history for a unique application of a system of vertical micropiles with horizontal soil nail bracing and shotcrete facing for underpinning. The system was used to support a

    Oct 1, 2022

  • 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
    Sao Paulo’s Brooklin Station: An OPA Contender

    By Dario Libano

    "The Line 5 Extension, in Sao Paulo, Brazil, is currently the most important investment in public transportation by Sao Paulo’s state government. It will connect the south part of the city to the city

    Jan 1, 2014

  • DFI
    Conference Papers - Conference Papers: Session 1 - Construction Of A Deep Basement On A Sloping Site In Glasgow: The Aurora Project

    By H. Boghosian

    This paper presents the design and construction of a deep basement in a steeply sloping site in glacial till in Glasgow city centre. Existing foundations, adjacent structures and services, in tandem w

    Jan 1, 2006

  • DFI
    Carbon Footprint Of Common Quay Structures

    By Dr Karsten Galipp, Kai-Julian I. Hendler, Prof. Manuel G. Pinheiro, Dr Peter J. Bourne-Webb

    With a share of approximately 11% of global greenhouse gas emissions, the construction industry contributes significantly towards climate change. This is why construction projects should not only be a

    May 1, 2022

  • DFI
    Construction Of Foundation Of Power House-IV At W.Y.C., Hydro-Electric Project, H.S.E.B., Bhudkalan, Haryana. - Synopsis

    By D. K. ] [Gupta

    The Foundations of the Shear keys and alround cut off for Power House -IV of the Western Yamuna Canal Hydroelectric Project at Bhudkalan, Haryana were to be laid at a depth of 26M below the N.S.L and

    Jan 1, 1996

  • DFI
    Augered Cast-In-Place Piles - Friday, May 5, 2006 - Title ? Table Of Contents - A Historical Perspective On Current Cast-In-Place Piling Practice

    By Willie M. NeSmith

    Cast-in-place piling are a staple of the deep foundation industry, and are used (in various forms) worldwide. In assessing the application of cast-in-place piles, it is of value to reflect on the dev

    Jan 1, 2006

  • DFI
    Design, Construction, And Instrumentation Of An Atypical A-Frame Micropile Wall In Aspen, Colorado

    By Kyle Kershaw

    Micropiles are routinely used in the United States for foundation support and stabilization of slopes. In recent years, several retaining walls have been constructed using micropiles in an A-frame ty

    Jan 1, 2007

  • DFI
  • DFI
    Open Well Caissons Of A 1917 Railroad Bridge: How 19th Century Construction Can Influence 21st Century Construction

    By Alan D. Fisher

    Amtrak made a decision to replace an aging bascule bridge with a vertical lift bridge for their crossing of the Thames River in New London, Connecticut. The new lift bridge occupies the same alignmen

    Jan 1, 2013

  • DFI
    Augercast Piles - History And Advancements

    By Larry Rayburn

    Augercast piles evolved in the late forties from the process of pressure grouting open holes backfilled with stone. In 1956, a patent was issued for a cast in situ pile by pumping high pressure grout

    Jan 1, 2005

  • DFI
    Newtown Creek Pile Foundation Work 2009

    By Thomas Trochalides

    Newtown Creek Water Pollution Control Plant in Brooklyn, NY is the largest of 14 Water Pollution Control Plants in New York City. It services over 1 million people with a current processing capacity

    Jan 1, 2010

  • 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, 2013

  • DFI
    Installation Of Drilled Piers In Shales ? Synopsis

    By A. C. Ackenhell

    The geologic environment of Pittsburgh, Pennsylvania is both inviting and challenging to drilled pier installation. The shales and clayey soil zone of the hills are favorable but the alluvial soils of

    Jan 1, 2010

  • DFI
  • DFI
    New CIGMAT Downhole Penetrometer (DHP-CIGMAT) for Use During Drilled Shaft Construction (7493fc91-7396-4eac-bed2-0406570252cc)

    By Omer F. Usluogullari, C. Vipulanandan

    "It is critical to monitor the ground conditions during excavation and drilling of boreholes during construction to identify possible changes in the soil and rock formations. Drilled shafts are increa

    Jan 1, 2017

  • DFI
    Repairs Of Diaphragm Walls, Lessons Learned

    By Raymond J. Poletto

    This paper describes the special problems that occur with the construction of diaphragm walls and discusses the lessons learned during the repairs of structural walls. Although diaphragm or slurry wal

    Jan 1, 2011

  • DFI
    Field Test of Braced Excavation Supported with Rows of Dry Deep Mixing Columns

    By Stefan Larsson, Sadek Baker, Razvan Ignat

    "This paper describes the execution of two full-scale field tests where a braced steel sheet pile wall interacting with rows of overlapping dry deep mixing columns was first excavated and then loaded

    Jan 1, 2015

  • DFI
    Monitoring Auger Cast In Place Pile Construction And Testing In Hard Clay

    By C. Vipulanandan

    Installation procedure and the quality of the material used in the construction have significant effects on the behavior of the Auger Cast in Place (ACIP) piles. In this study, Installation and curing

  • DFI
    Load And Resistance Factor Design Of Pullout Of A Single Driven Pile In Sands And Clays

    By Dongwook Kim

    Recently, load and resistance factor design (LRFD) is gradually being adopted internationally in geotechnical design due to the advantages of LRFD over the existing allowable stress design (ASD). LRFD

    Jan 1, 2010