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  • DFI
    Drilled Pier Foundation with Ground Improvement Using Cement Deep Soil Mixing for Highway Bridges

    By Shahriar Vahdani, Andy Herlache, Andrew Bro, Wei-Yu Chen

    "The Presidio Parkway Project will reconstruct approximately 1.6 miles of highway, including seven bridges, three cut-and-cover tunnels, and an undercrossing connecting the Golden Gate Bridge to the C

    Jan 1, 2014

  • 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
    Allowable Compressive Design Stresses For Pressure-Treated Round Timber Foundation Piling - Presented Before The American Wood-Preservers' Association Reno, Nevada, May 1985

    By James S. Graham

    Research at the University of Colorado on southern pine and Douglas-fir piling has determined that the existing building code design stress values of 1200 psi and 1250 psi, as determined by ASTM D-289

    Jan 1, 1986

  • 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
    Quality Control of Pile Installation Using Digital Pile Penetration and Rebound Monitoring System

    By Hee-suk Yun, Dae-jin Hwang, Jeong-woo Seok, Myoung-mo Kim

    "In this paper, the accuracy of the data measured by a newly developed displacement measuring system, DPRMs (Digital Pile Penetration and Rebound Monitoring system) and its applicability as a quality

    Jan 1, 2005

  • DFI
    Ground Disturbance Due to Static Pressure Driving of Opened-Ended PHC Piles

    By Xiaocen Lu, Guowei Li, Jiantao Wu, Thang N. Nguyen, Andrew C. Amenuvor

    "This paper investigates the effect of driving a group of 52 open-ended Prestressed High Strength Concrete (PHC) piles on an existing highway embankment based on field measurements of excess pore pres

    Jan 1, 2016

  • DFI
    Grouting of an Artesian Zone in Advance of Powerhouse Excavation for the Red Rock Hydroelectric Project

    By Dewey W. Geary, Rachael V. Bisnett, R. Michael Bivens, Thomas G. Andrews

    "The powerhouse for the Red Rock Hydroelectric Project is being constructed at the toe of the existing U.S. Army Corps of Engineers’ Red Rock Dam immediately adjacent to the existing stilling basin re

    Jan 1, 2016

  • DFI
    Ductile Iron Pile Foundation Solution for Interior Retrofit Projects

    By Keithe J. Merl, Brendan FitzPatrick, Gregg Piazza

    Urban and industrial construction projects commonly involve interior work within buildings, warehouses and manufacturing facilities. Renovations of these existing structures must address both structur

    Jan 1, 2019

  • DFI
  • 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
    Augered Pile World Record Depth within a Soil Mix Basement

    By Andres M. Baquerizo, Jeremiah J. Filjones, Nicholas Feldt

    The Estates at Acqualina located in Sunny Isles Beach, FL, is comprised of two, ocean-front, 50-story, luxury towers with podiums and villas. With city regulations now requesting that above-grade floo

    Jan 1, 2019

  • DFI
    Soil Improvement Through Rammed Aggregate Piers To Mitigate Liquefaction Risk In Storage Tanks

    By Francisco A. Flores, José L. Aguirre, Héctor A. de la Fuente, Erika Bernal, Jorge Arroyo-Esquedla

    This paper presents the analysis, design, and construction of soil improvement for storage tanks foundation support at a site in Tabasco, Mexico. A total of 980 Rammed Aggregate Piers of 12.5 m in len

    Oct 1, 2022

  • DFI
    Effects Of Change In The Support System On Temporary Secant Pile Wall

    By Anburaj C., Srinivas A.

    Deep excavation with support system is required to construct various part of underground structures like shafts, stations and entry structures etc. These structures have to be constructed using perman

    Nov 1, 2022

  • DFI
    Estimation of Foundation Design Loads for Liquefaction Induced Lateral Spreads Using Strain Wedge Method

    By Jogeshwar P. Singh, Mohamed Ashour

    The Soil-Foundation-Structure-Interaction (SFSI) problem involves Kinematic Soil- Foundation Interaction occurring during large (cyclic and permanent) ground deformations as well as Inertial Foundatio

    Jan 1, 2015

  • DFI
    Wet Soil Mixing for Supporting Bridge Abutments on Spread Footings

    By Adam Gerondale, David Hemstreet, Lisheng Shao, Kenji Yamasaki

    "Foundation soils of a proposed single-span bridge over a busy railroad in Anchorage, Alaska included a layer of sensitive, non-plastic to low-plasticity silt. Slope stability analyses showed that, wi

    Jan 1, 2015

  • DFI
    Fraser Heights Bridge – Comparison between PDA Tests and Pile Capacity Estimation Methods

    By Ali Azizian, Brian Hall

    "Driven piles were selected to support the Fraser Heights Bridge bents. Piles were a key component of the top-down construction approach, which was adopted for minimizing potential impacts on an envir

    Jan 1, 2016

  • 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
    Collaborative Value Engineering Redesign - DFI 2020

    By Martin Mcdermott, Kevin Tehansky, Robert Ross, Jeffrey Goodwin

    A foundation value engineering redesign is a collaboration between the project owner, original design team, general contractor, foundation contractor and redesign team. Without the acceptance and coll

  • 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

  • DFI
    Determination of Liquefaction in Time Domain Using Shake Table Test, Wavelet Analysis and Numerical Approach

    By Aniruddha Sengupta, Rana Chattaraj, G. R. Reddy, Raj Banerjee

    "Earthquake induced liquefaction in saturated granular soils is an important phenomenon which causes severe damage to life and property. In the present study, dynamically induced liquefaction of satur

    Jan 1, 2015