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  • DFI
    Nailed It! The Great Wall of the Chinese Embassy (dbde4e01-35b2-40e7-b641-e07610069e96)

    By Fred Tarquinio, Giovanni Bonita, Lars Wagner

    "A new embassy for the Peoples Republic of China is under construction in Washington, DC. The 475,000 square feet (44,125 m2) structure has five levels below ground and four above, making it the large

    Jan 1, 2007

  • DFI
    Critique of Specifications for Deep Mixing

    By George Filz, Peter R. Cali

    "Unnecessarily restrictive specifications could be limiting the cost effectiveness of deep mixing (DM) applications and therefore limiting use of DM on projects where there are other options. Excessiv

    Jan 1, 2015

  • DFI
    Construction Induced Vibration during Sheet Pile and Pile Driving in Deep Excavation

    By Ambarish Ghosh, Subhaprasad Chakraborty

    "Construction of basement floors has become necessary to meet the requirement of parking in office and residential complexes and in hospitals for radiotherapy treatment. Important projects coming up i

    Jan 1, 2015

  • DFI
    Case Study Of Three Bidirectional Static Load Tests For Bored Piles At Sabana Costa Rica

    By Mauricio Coto

    Three bidirectional static load tests (BDSLT) were executed on bored concrete piles, as part of the permanent foundations for two buildings sites located at the Sabana, San Jose, Costa Rica, separated

  • DFI
    A Case History on Design, Construction, and Performance of Stone Column Ground Improvement beneath an MSE Embankment

    By Dominic Parmantier, Karen Dawson, Suthan Pooranampillai, Seungcheol Shin

    "This paper presents a case study of the deformation-based design, construction, and performance of stone column ground improvement (GI) beneath a mechanically stabilized earth (MSE) wall and bridge a

    Jan 1, 2017

  • DFI
    A Case History On Design, Construction, And Performance Of Stone Column Ground Improvement Beneath An Mse Embankment

    By Karen Dawson

    This paper presents a case study of the deformation-based design, construction, and performance of stone column ground improvement (GI) beneath a mechanically stabilized earth (MSE) wall and bridge ab

  • DFI
    Helical Piles Performance In Golestan Loess Deposits Via Fullscale And Physical Modeling Testings

    By Abolfazl Eslami, Fatemeh Rostami, Sara Heidarie Golafzani, Mohammad Arabameri

    Collapsible loess is classified as problematic soil found in most continents. The loess immediately collapses under stresses induced by axial compressive loading or the soil weight when exposed to moi

    Oct 1, 2022

  • DFI
    Load Tests On Belled Piles With Polystyrene Foam Between The Shaft And The Base

    By José Carlos A. Cintra

    This paper addresses a new experimental procedure to measure the shaft friction and the base resistance of bored piles during static load tests. It is proposed that a set of polystyrene foam discs, pl

    Jan 1, 2002

  • DFI
    Corrosion Protection Of Micropiles

    By Racquel Nottingham, Marc Mastrantuono

    Micropiles often provide a favourable solution for many deep foundation problems especially when significant site constraints such as confined construction sites or vibration limitations have been ide

    Oct 1, 2022

  • DFI
    Rock Socketed Drilled Shafts for the Goethals Bridge Replacement

    By John P. Turner, Steven S. Dapp, Dan A. Brown

    "The Goethals Bridge Replacement (GBR) spanning the Arthur Kill Waterway between Elizabeth, NJ and Staten Island, NY consists of a dual-span 1,982.5-ft long cable-stayed bridge with approach spans of

    Jan 1, 2016

  • DFI
    D-Wall Extreme – Contrast Between Going Deep And Getting Small

    By Alexander Blatt, Franz-Werner Gerressen

    Diaphragm wall technique is usually used to construct structural elements in the ground, commonly used for retention systems, permanent foundation elements or deep groundwater barriers, named Cut-Off-

    May 1, 2022

  • DFI
    Laboratory Validation Of In-Situ Tests - 1. Introduction

    This paper summarizes seven years of Italian ex­perience with the use of large calibration chambers for the calibration, under closely controlled stress and strain conditions, of some in situ testing

    Jan 1, 1987

  • DFI
    Geographic Information Systems Technology Use in Tracking Quality Control in In Situ Barrier Wall Construction (50051f21-259c-48c8-b98a-08fa9c39001e)

    By Michael Arnold, Robert Bachus, Michael Bracher, Jamey Rosen, Robert Roff

    "For a high hazard USACE facility, the Center Hill Dam in Tennessee, several disparate streams of data were compiled into a single geospatial and relational enterprise data management system to store,

    Jan 1, 2017

  • DFI
    Permanent Soil Nail Earth Retention System, Stanley Hall Replacement Project, UC Berkeley

    By Pirooz Barar

    The new Stanley Hall building will house the center for bio-engineering and technology research for the UC Berkeley campus. The structure is located at the northeast part of campus, adjacent to Donne

    Jan 1, 2004

  • DFI
    Monotonic And Cyclic Lateral Full-Scale Testing Of Reinforced Helical Pulldown Micropiles

    By M. Meckkey El Sharnouby

    In this paper, the results of full-scale field testing of reinforced helical pulldown micropiles (RG-HSP) installed in clayey till soils and resting on sandy soils are presented. Piles were tested und

    Jan 1, 2011

  • DFI
    Case History: Innovative Load Test Program Optimizes Pile Capacity In Challenging Ground Conditions

    By Emad Farouz

    This paper presents a case history of a successful construction-phase pile load test program that optimized the pile design in challenging ground conditions at the Great Neck Wastewater Treatment Plan

  • DFI
    Linking the Installation Response of Screw Piles to Soil Strength and Ultimate Capacity

    By James P. Hambleton, Sam A. Stanier

    A perceived advantage of screw-type foundations is the ability infer aspects of foundation performance from quantities measured or observed during installation, especially the installation torque. A p

    Jan 1, 2019

  • DFI
    Design of the Lift-in Dam at Olmsted on the Ohio River

    By Dale E. Berner

    A new navigation dam at Olmsted on the Ohio River will be built "in-the-wet" using a lift-in construction method by the Washington Group/Alberici Joint Venture for the U.S. Army Corps of Engineers, Lo

    May 11, 2007

  • DFI
    Application of the Cement Deep Mixing Method for Shallow Water Areas Using the CDM-Float Technique

    By Takeo Asanuma, Sachihiko Tokunaga, Hirofumi Taguchi, Yasuhiro Ootsuka, Yosuke Tanaka

    The Cement Deep Mixing Method (CDM Method) is a ground improving method that has been used for mainly offshore sites to strengthen the soft ground below the sea bottom by injecting and adequately mixi

    Jan 1, 2015

  • DFI
    St. Anthony Falls I-35W Bridge - Deep Foundation Monitoring Methods And Equipment For Bridge Construction

    By Bryan C. Field

    The proposed construction schedule for the St. Anthony Falls I-35W Bride challenged the abilities of the design-build teams to utilize the best and most efficient methods to meet Minnesota Department

    Jan 1, 2009