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  • DFI
    Construction And Instrumentation Of A Deep Foundation ? Synopsis

    By Y. K. Wong

    This paper describes in detail various problems concerning the construction of a pile-raft foundation supporting a 42-storey tower block. The subsurface generally consists of highly weathered sediment

    Jan 1, 2010

  • DFI
    Evaluation Of A New P-y Analysis Tool For Lateral Analysis Of Drilled Shafts Using Load Tests In Nevada

    By David H. Sanders, Ramin Motamed, Fahim M. Bhuiyan, Raj V. Siddharthan

    Large-diameter drilled shafts (DS) are a critical part of a seismic-resistant system, and therefore it is important to be able to accurately model lateral resistance. To undertake the lateral load ana

  • DFI
    Bearing Capacity Of Piles Using Cavity Expansion Theory ? Summary

    By R. Bellotti

    The theory of cavity expansion in an infinite frictional soil mass whose strength is represented by a curved Mohr-Coulomb failure envelope has been used to predict with some confidence the cone resist

    Jan 1, 1987

  • DFI
    Reliability Of Pile Prediction Methods - Summary

    By M. T. Davisson

    Pile compression load capacity prediction methods are divided into four categories for purposes of discussing their reliability compared to static load test results. The categories considered are: 1)

    Jan 1, 1991

  • DFI
    Behavior Of Grouted Shaft Helical Anchors In Clay

    By Alan J. Lutenegger

    Some years ago, a method was developed to incorporate a grout column around square-shaft helical screw-piles and anchors to increase shaft buckling resistance under compression loading. An additional

    Jan 1, 2011

  • DFI
    Crane Boom Loadings From Pile Driving

    By Alan G. MacKinnon

    Loads and stresses from pile driving are increasing from heavier piles and more powerful hammers. Stresses can be dangerous to equipment stability. Equipment developer MacKinnon tells how to compute s

    Jan 1, 1986

  • DFI
    Prediction And Performance Of Drilled Shafts Constructed Under Slurry

    By Clyde N. Baker

    The paper describes procedures used to predict the settlement performance of drilled shafts constructed under slurry through water bearing deposits to a dense bearing strata, considering both side res

    Jan 1, 1991

  • DFI
    Dynamically Cast-In-Place Piles

    By John J. Vieaux

    Allowable loads on Dynamically-Cast-In-Place Piles (the Franki type) can be correlated with N values from the Standard Penetration Test. Using a constant developed by Nordlund, a conservative value fo

    Jan 1, 1984

  • DFI
    Value Engineering – Design Risk and Reward at Major Sport Arena Projects

    By Peter Faust, Jeremy Zorne, Timothy Siegel, Diane Fiorelli

    Professional sport venue construction follows a very simple rule. Once the decision has been made to move the team to a new place, construction shall begin immediately, so that not more than one or tw

    Jan 1, 2018

  • DFI
    Instrumentation Of Construction Vibrations

    By Mark R. Svinkin

    Construction vibrations may adversely affect surrounding buildings and their effects range from human discomfort and disturbance of sensitive devices to visible structural damage. There is no unique c

    Jan 1, 2002

  • DFI
    Capacity Of Large Diameter Bored Piles Determind By Stress-Wave Theory ? Synopsis

    By S. X. Liang

    In China, the bearing capacity predictions of the pile with Stress-Wave Theory have been developed rapidly in recent years. This paper recommended a DZH-3 Pile Driving Analyzer and its relevant comput

    Jan 1, 2010

  • DFI
    A Simple Evaluation Of Dynamic Pile Tests

    By D. Kolymbas

    A simple formula is introduced which allows the evaluation of dynamic pile tests. The following case is considered: The pile top is dynamically loaded by an impact. The velocity v of the pile top is r

    Jan 1, 1989

  • DFI
    Review Of The Methods Used To Construct Large Diameter Bored Piles For Top Down Construction

    By J. D. Findlay

    The demands on development in London in recent years has led to the increasing use of top down construction methods in which there is a requirement to place steel columns to high tolerances into large

    Jan 1, 1989

  • DFI
    Drilled Shaft Difficulties and a Micropile Solution

    By Jeff Jackson, Paul Axtell, David Graham

    The Montana Department of Transportation recently awarded a contract to construct a replacement bridge across the Clark Fork River in Heron, MT. Both abutments and both intermediate bridge bents were

    Jan 1, 2018

  • DFI
    Optimal Subsurface Investigation Approach for Overhead Transmission Structures

    By Haijian Shi, Drew Pizzo

    This article focuses on the appropriate application of subsurface investigation methods for transmission structures, which are typically designed to resist lateral rather than vertical loads. Currentl

    Jan 1, 2018

  • DFI
    Unusual Solutions To Difficult Earth Retention And Underpinning Projects ? Summary

    By Larry Rayburn

    Design of cost effective engineered solutions to complex problems requires the team efforts of the owner, the designer and the specialty construction contractor. The basic ingredients of success requi

    Jan 1, 1991

  • DFI
    Design Methods For Earthquake-Induced Pile Bending

    By George Mylonakis

    The curvatures and subsequent bending imposed to piles by the surrounding soil during the passage of strong seismic waves is studied. This type of bending develops even in the absence of a superstruct

    Jan 1, 2002

  • DFI
    Optimization of the Piled-Raft Foundations Considering the Soil-Pile-Raft Interaction

    By Hessam Yazdani

    In comparison to the conventional piled foundations, the piled-raft foundations provide a more economical solution to support high-rise buildings constructed on soft soils. In this type of foundations

    Jan 1, 2013

  • DFI
    Uncertainty And Bias In Evaluation Of LRFD Ultimate Limit State For Axially Loaded Driven Piles

    By James A. Schneider

    Selection of resistance factors within Load and Resistance Factor Design (LRFD) requires accurate assessment of uncertainty and bias in load and resistance. To date, many studies have focused predomin

    Jan 1, 2009

  • DFI
    Deep Mixing Method: An International Overview Of Technology, Testing And Product

    By D. A. Bruce

    The Deep Mixing Method is a very valuable tool for combating problems related to in situ soil treatment, improvement, and retention. Many different variations are used throughout the world, and there

    Jan 1, 2001