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  • DFI
    Deep and Extra Deep Diaphragm Walls in Shanghai – Increasing Demand for Infrastructure in Megacities Drives the Requirement of Increasing Depth for Diaphragm Walls

    By Wu Jie Mei, Li Yao Liang, Franz-Werner Gerressen, Arthur Bi

    Diaphragm walls (D-walls) are known as underground structural elements commonly used for retention systems and permanent foundation elements. In addition, they are also quite often used as deep ground

    Jan 1, 2018

  • DFI
    Kinematic Response Characteristics of a Piled Raft Foundation

    By Ramon Varghese, A. Boominathan, Subhadeep Banerjee

    Pile raft foundation system has been accepted as an economic foundation design for high rises and heavily loaded structures. Seismic response analysis of PR foundation systems involves complex pile-so

    Jan 1, 2018

  • DFI
    Rapid Vibratory Pile Driving Hammer For Deep Foundation

    By Li Tiemin

    It is one of important tasks in research of vibratory pile driving to increase speed of pile driving and depth of pile driving -- this means to increase capability of penetrating hard layer. In genera

    Jan 1, 1991

  • DFI
    Soil Nail And Jet Grouted Excavation Support Wall At Peirce Mill Dam

    By Eric M. Klein

    As part of the Woodrow Wilson Replacement Bridge project several damaged wetland and environmental areas were to be mitigated. One of the mitigation projects consisted of constructing a Denil fish lad

    Jan 1, 2006

  • DFI
    111,000m Of Continuous Flight Auger Piling For LNG Tank Bases In Poor Alluvial Soils, Isle Of Grain, UK

    By Shane Baker

    Cementation Foundations Skanska Ltd encountered many significant challenges in designing and constructing the foundations for the LNG (Liquefied Natural Gas) tanks and associated structures at the Isl

    Jan 1, 2006

  • DFI
    Prediction Of Ultimate Pile Bearing Capacity Using Artificial Neural Networks

    By Vahid Tajdar

    The behavior similarity between pile and cone penetration test, has guided the researchers to use the CPT results in prediction of piles bearing capacity. In this article, artificial neural networks h

    Jan 1, 2006

  • DFI
    High-Strain Dynamic Testing Of Drilled Shafts And Cast-In-Place Piles

    By Garland E. Likins

    High-strain dynamic testing of drilled shafts and cast-in-place piles has become routine procedure in many parts of the world today. Field testing is performed by measuring strain and acceleration rec

    Jan 1, 1995

  • DFI
    Micropiles To Support Electric Power Transmission Towers

    By Wendy L. Mathieson

    The Bonneville Power Administration (BPA) will build about 500 miles of new 500-kV transmission lines in the next 5 years. Many new lattice towers will be built in remote locations or in environmenta

    Jan 1, 2004

  • DFI
    Drilling And Dewatering In An Urban Environmentprivate - Project Description And Location

    By Joel Moskowitz

    In 1990, the United States General Services Administration (GSA) issued a contract for design and construction of a new federal court building in New York City. Mueser Rutledge Consulting Engineers (M

    Jan 1, 1996

  • DFI
    Advances in Stress-Wave Nondestructive Testing Methods for Evaluation of Deep Foundations

    By Joseph T. Coe, Siavash Mahvelati, Alireza Kordjazi

    This paper introduces recent advances in stress-wave NDT systems for use in assessments of in-service foundation integrity and drilled shaft construction. The primary results of the laboratory experim

    Jan 1, 2018

  • DFI
    Full-Scale Field-Test Studies On Driveability And Induced Ground Vibrations Of Vibratory Driven Sheet Piles

    By K. Viking

    The vibratory characteristics of full-scale sheet piles, vibratory driven into the ground, have so far not been described systematically in detail. This paper concerns the preliminary results of a ser

    Jan 1, 2000

  • 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
    Steel And Concrete Piles Used In The Great Plains Of USA

    By Marius B. Wechsler

    A mathematical analysis is developed for the determination of the cases when HP-piles might be replaced by precast concrete piles. The analysis focuses especially on the "integral abutment-bridges" wh

    Jan 1, 1992

  • DFI
    Interlocking Caisson Walls

    By William E. Lardner

    Interlocking caisson walls developed from conventional "soldier pile and lagging" shoring. In the latter, the soldier piles receive directly most of the soil load. Natural arches form in the soil behi

    Jan 1, 1987

  • DFI
    Development of a New, Advanced form of Sodium Silicate for Chemical Grouting

    By Julie Shang, Tim Evans, Michael McDonald, Yu Guo, Bingfeng Xue

    Effective chemical grouting represents a technical and economic solution to many challenges related to soil stabilization and blocking the flow of water. Chemical grouts are facing increasing demands

    Jan 1, 2018

  • DFI
    Piled Raft On Layered Soils

    By Luca de Sanctis

    The analysis of piled raft foundations in layered soils may be performed by 3D finite elements or by approximate procedures. Among the latter, the code NAPRA (Russo, 1998) is based on the method of th

    Jan 1, 2002

  • DFI
    Capacity Of Piles And Settlement Of Pile Foundations

    By M. Mets

    Pile foundations have been used in Estonia since the beginning of 1960's. To evaluate the capacity of piles nearly 2,500 pile tests and 1,800 pile loading tests Have been carried out. The pile fo

    Jan 1, 2000

  • DFI
    Large Diameter CIDH Construction In Cohesionless Soils By The Use Of Rotator/Ocsillator Techniques: A Case Study - 116th Avenue Bridge Over The Gila River Phoenix, Az.

    By M. Cornelius

    Drilled shaft construction through caving soils has historically been an uncertain, risky and costly operation. Uncertain, because the zone of caving may or may not be known, risky because the loss of

    Jan 1, 1999

  • DFI
    Overcoming Grouting Difficulties During Retaining Wall Stabilization

    By Jared M. Green

    This paper presents the wall stabilization design and implementation for a 541 linear ft masonry and concrete gravity-type retaining wall flanking the west perimeter of a 7.37 acre parcel in Bronx, Ne

    Jan 1, 2011

  • DFI
    Treatment of Soft Clays by Combined Encased Stone Columns and Vacuum Consolidation

    By Ganesh Kumar S.

    "Soil reinforcement using stone columns is one of the well-developed ground improvement techniques for soft clay deposits. The load carrying capacity can be further improved by encasing it with geosyn

    Jan 1, 2017