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  • DFI
    Experiences of High Strain Dynamics Pile Testing (HSDPT) in Accordance with EC7 in Sweden

    By Ingemar Hermansson, Thomas Bjerendal, Mattias Grävare, Carl-John Grävare

    "AbstractHigh strain dynamic pile tests (HSDPT) on driven piles have been carried out on a routine basis in Sweden for more than 30 years. The Swedish Commission on Pile research established, in the e

    Jan 1, 2014

  • DFI
    Vessel Collision Design - Risk Analysis And Deep Foundation Issues For Bridges Over Navigable Waterways

    By Michael A. Knott

    Large lateral forces on bridge foundations due to extreme events such as vessel collisions, earthquakes, and wave forces on storm surges during hurricane events are often the controlling design condit

    Jan 1, 2013

  • DFI
    Experiences With A New Type Of Displacement Screw Pile - Synopsis

    By William Van Impe

    A most renewing and promissing soil displacement screw pile is called the O-pile. The O-screw pile is a soil displacement auger pile based on a screwing in - screwing out procedure. The displacement a

    Jan 1, 1996

  • DFI
    On The Effects Of Sand Grading On Driven Pile Performance

    Precast prestressed concrete piles designed to be end-bearing in a sand stratum at Drax Power Station met with extremely variable resistance during driving. Some piles came to virtual refusal almost i

    Jan 1, 1989

  • DFI
    Deep Vibrocompactation By Stone Columns And Liquefaction Investigation

    By P. Ventura

    Reliability of the liquefaction analysis is based on data plotted as by piezocone, as by deep vibrocompactation monitored tests. The negative porewater pressure, re lated to hydrostatic value, recorde

    Jan 1, 1989

  • DFI
    Soil-Cement Pile Foundations For A Large Storage Tank And Retaining Wall - Case History - Summary

    By Roy A. Bell

    A 200-foot diameter, 72-foot high petroleum storage tank was built in a hillside ravine where a portion of the site contained soft clay fill. Soil-cement piles, 40 inches in diameter and up to 38 feet

    Jan 1, 1997

  • DFI
    Case Study: Innovative Soil Nail Stabilization Of A 100 Foot High Urban Slope

    By Mike Fabius

    The Lakehead Region Conservation Authority is responsible for slopes along the Kaministiquia River, one of the largest tributaries to Lake Superior in Canada. After arresting toe erosion for a mile o

    Jan 1, 2006

  • DFI
    Creative Shoring Solutions For A Tight Urban Site

    By David G. Winter

    The Olive 8 excavation site in Seattle was surrounded on three sides by conditions requiring innovation, careful modeling, and extensive instrumentation to support use of a first-of-its-kind shoring s

    Jan 1, 2009

  • DFI
    Pin Piles For Seismic Rehabilitation Of Bridges

    Since the 1989 Loma Prieta Earthquake in the San Francisco Bay Area, the California Department of Transportation (CALTRANS) has accelerated seismic upgrading of their bridges. Many structures can be i

    Jan 1, 1993

  • DFI
    Water Tightness Of Diaphragm Walls

    By Radianto Elprama

    For the realisation of the underground railway line RandstadRail in the city area of Rotterdam a bored tunnel is under construction. Diaphragm walls up to a depth of about 40 m were used to construct

    Jan 1, 2006

  • DFI
    Analysis of Plugging Effect for Open-Ended Piles in Sandy Soil

    By Sangseom Jeong, Moonkyung Chung, Junyoung Ko

    "Abstract The plugging effect of open-ended piles in sandy soil is analyzed by full-scale field test and plugging measurement. PLR (plug length ratio) measurement data from 144 field cases are analyze

    Jan 1, 2014

  • DFI
    Design Of Drilled Shafts Supporting Sound Walls

    By Ke Yang

    Drilled shafts are widely adopted as the foundation for sound walls. However, there has been a lack of uniformity in design and analysis methods and design criteria, in terms of factor of safety again

    Jan 1, 2007

  • DFI
    Deep Excavation In The Shanghai Soft Clay Under Protection Of A Cast-In-Situ Retaining Wall ? Synopsis

    By M. Pernot

    A 12 m-deep excavation has to be perfomed in the Shanghai soft clay to install an underground electric substation. This article was originally intended to study the behaviour of the wall, the excavati

    Jan 1, 2010

  • DFI
    Design Of Sheet Piling For The Prague Metro Line C

    By Jan Pru?ka

    This paper describes the sheet pile design for the Line C extension from Ládví station to the North of Prague. The first part of the paper describes the geological conditions and structural configurat

    Jan 1, 2011

  • DFI
    Experiences With Heavy Drop Hammer Testing Of Rock-Socketed Shafts

    By Frank Rausche

    Since the early 1980s, when the Road Construction Authority of Victoria authorized the dynamic proof testing of roughly 100 drilled shafts of 1.5 m diameter and typically 60 m length in Melbourne Aust

    Jan 1, 2006

  • DFI
    Mitigating Settlement with Pile-Supported Approach Slabs

    By Reda M. Bakeer

    "An approach slab is the roadway segment that immediately follows a bridge intended to provide a smooth transition between the two elements. Some approach slabs have developed rough rideability with t

    Jan 1, 2017

  • DFI
    Application Of Neurofuzzy Approach To Estimate Duration And Evaluate Delay For Diaphragm Wall And Barrette Construction

    By Thoedtida Thipparat

    The diaphragm walls and barrettes are very important to the constructions of multi-storeyed buildings, elevated expressways, subway railway stations, etc. Uncertainties particularly increase in accord

    Jan 1, 2006

  • DFI
    Resolution Of Prestressed Concrete Pile Splice Problems - Summary

    By David Siu

    Many problems were encountered with the mechanical wedge-type splices used for the 15-inch square precast prestressed concrete piles installed at an industrial plant site. Many of the wedges were brea

    Jan 1, 1991

  • DFI
    Dynamic Stability Of An Axially Loaded Pile

    By S. S. Gajin

    The paper deals with parametric vibrations of an axially loaded pile. The dynamic model is derived by means of Hamilton's principle and reduced to a partial differen­tial equation with variable c

    Jan 1, 1989

  • DFI
    Constructability Of Tiedback Wall Systems - I. Introduction

    By Thomas C. Anderson

    Tiedback walls are now recognized and accepted as a good solution for a variety of structural problems: ? Retaining Walls and Bridge Abutments in cut situations ? Landslide stabilization ? Rep

    Jan 1, 1991