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  • DFI
    Hydrocutter-Excavated Slurry Wall for Center Hill Dam Foundation Remediation

    By Michael Arnold, Bob Faulhaber, Joe Nichols

    "Center Hill Dam is a critical part of the infrastructure controlling floods at the Caney Fork River and reducing flood levels at the Cumberland, lower Ohio and Mississippi Rivers. The Center Hill Dam

    Jan 1, 2017

  • DFI
    Prediction Of Jet Grout Column Diameter In Cohesive Soil

    By Chu E. Ho

    Current methods of determining jet grout column diameters are highly empirical and site specific, and do not take into account the jet hydrodynamics and soil parameters explicitly. A theoretical model

    Jan 1, 2006

  • DFI
    Deep Soil Mixing for Contaminated Soil Remediation at a Superfund Site

    By Larry Stearns, Lori Tiefenthaler

    Remediation of contaminated soil represents a significant market for application of Deep Soil Mixing (DSM). Eighty-one percent of U.S. Environmental Protection Agency (EPA) Superfund Program’s site re

    Jan 1, 2018

  • DFI
    Deep Foundations In Hong Kong - Synopsis

    By Martin Pratt

    This paper is an overview of deep foundation engineering in Hong Kong past, present and future. The enormity of the subject compared with the space available makes brevity inevitable. Issues of constr

    Jan 1, 2000

  • DFI
    Design And Construction Of Large Diameter Drilled Shafts For The Bath - Woolwich Bridge

    By Andrew Peterson

    The Maine Department of Transportation offered this challenging design-build project for a new, 12-span, bridge over the Kennebec River in Bath, Maine. This structure would be built to replace the exi

    Jan 1, 1999

  • DFI
    Slurry Walls In Building Construction - Urban Conditions

    By Louis Donolo

    New buildings in today's urban environment, especially in down-town areas, invariably involve the construction of multiple level basements. Used for parking, storage and commercial space, these u

    Jan 1, 1987

  • DFI
    Application Of, And Experience With, An Electronically-Controlled Hydraulic Piling Hammer ? 1 ? Introduction

    By D. Arentsen

    Changing environmental laws, new operating requirements and the increasing accuracy with which the bearing capacity of driven piles can be calculated have all led to the development of hydraulic pilin

    Jan 1, 1987

  • DFI
    Numerical Simulation Of Quasi-Static Pile Load Test

    By N. Q. Huy

    This paper describes the application of finite element analysis to simulate the static and quasi-static pile load tests in different drainage conditions. The possible effect of excess pore water press

    Jan 1, 2006

  • DFI
    Improvement Of The Cost-Effectiveness Of H-Bearing Piles By Using High-Strength Histar Steels. - Summary

    By Lucien P. Weber

    Over the last few years, increased customer demands as well as strong competition from substitute materials have accelerated the development of advanced technologies to improve both the performance an

    Jan 1, 1997

  • DFI
    Capacity Of Driven Piles In Sand

    By Mohab Sabry

    Pile foundations are used extensively around the world to support both inland and offshore structures, including important structures such as nuclear plants and oil drilling platforms. The limit of th

    Jan 1, 2006

  • DFI
    Bearing Capacity Of Footings And Piles - A Delusion? - DFI Annual Meting, October 14-16,1999, Dearborn, Michigan - Summary

    By Bengt H. Fellenius

    The bearing capacity equation?"the triple N formula"? is now about 50 years old. It was developed from theory of plastic resistance of metal to a cone being pressed into the surface of the metal, supe

    Jan 1, 1999

  • DFI
    Instrumentation And Interpretation ? Introduction

    By H. Mori

    The session chairman, Dr. H. Mori, welcomed the delegates to Discussion Session 8. AUTHORS PRESENTATIONS 1 . G. Price, Building Research Establishment. UK Mr. Price expanded on the content

    Jan 1, 1991

  • DFI
    Support Of Structures In Expansive Shale Using Recycled Plastic Piles

    By Lance A. Roberts

    Expansive soil formations can be found throughout the United States. When subjected to wetting, these formations have the potential to swell and exert large uplift forces on buildings and foundations.

    Jan 1, 2010

  • DFI
    Maritime Structures

    By D. Waite

    The Chairman opened the session by wondering why so few papers on Maritime Structures had been received for this conference. Perhaps because the marine environment is so hostile and the access so diff

    Jan 1, 1991

  • DFI
    Determination Of Design Pile Uplift Capacities Using Dynamic Pile Testing Methods

    By Juan M. Antorena

    A pile driving and testing program was undertaken to evaluate installation procedures, assess capacity, particularly in uplift, of 360- and 460-mm (14- and 18-inch) square prestressed concrete piles a

    Jan 1, 1995

  • DFI
    Rehabilitation Of Existing Foundation Piles Of Marine Structures In New York City Harbor, USA

    By P. B. Kelleher

    Most of the piers and other pile-supported marine structures in the New York City Harbor area were constructed prior to the widespread use of currently available pile protective systems. As a result,

    Jan 1, 1989

  • DFI
    Complex Piling Works At London Blackfriars Station

    By Jamie D. McEwan

    To cater for the future introduction of 12 car trains, London Blackfriars railway station is being extended from the north end to span across the River Thames. Following the demolition of existing bui

    Jan 1, 2011

  • DFI
    Automated Instrumentation For ACIP And Drilled Displacement Piles - 1. Introduction

    By John Lemke

    Current practice for monitoring static pile load tests commonly consists of measuring load and displacement at the top of a pile. This is typically accomplished by monitoring dial gauge movements, lin

    Jan 1, 2002

  • DFI
    Deep Mixing Method: A Global Perspective

    By Donald A. Bruce

    Various types of contemporary Deep Mixing Method (DMM) techniques have been used in the United States since 1986. Such techniques owe their origins to Japanese and Scandinavian developments, which beg

    Jan 1, 1998

  • DFI
    Load Transfer Curve of Piles in Sands under Uplift Forces

    By Jogeshwar P. Singh, Aser I. Abbas, Mohamed Ashour

    The presented methodology predicts the pile head response (i.e. pile head load - displacement curve) and develops the load transfer (t-z) curve of piles in sandy soils under tension forces based on so

    Jan 1, 2018