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  • DFI
    Large-scale Shake Table Experiment On The Performance Of Helical Piles In Liquefiable Soils

    By Athul Prabhakaran, Ramin Motamed, Ahmed Elgamal, Milad Jahed Orang, Reza Boushehri

    Documented case histories from past earthquakes have exhibited the devastating effects of the liquefaction phenomenon on the performance of buildings that are often presented in the form of excessive

  • DFI
    Top-Loaded Bidirectional Test, a New Approach to Deep Foundations Load Testing

    By Patrick J. Hannigan, Frank Rausche, Rozbeh B. Moghaddam

    The Top-Loaded Bi-Directional Test (“TLBT”) is a new method to apply bi-directional loads to a deep foundation element with the loading source located above the foundation head. In the TLBT reusable l

    Sep 8, 2021

  • DFI
    Stability Analysis Of Micro Pile Reinforced Idukki Soil Slopes

    By Anjana C. P, K. Ranga Swamy

    The hilly regions of Kerala are severely affected by excess rainfall, causing tremendous damage due to landslides and slope failures. It is necessary to strengthen the existing slope profiles to preve

    Sep 1, 2022

  • DFI
    Dynamic Load Testing Of Non-Uniform Piles

    By Thai Nguyen Ph. D

    Dynamic Load Test (DLT) on driven piles has been performed routinely all over the world. In several recent projects, even 100% testing has become a norm where every single pile is dynamically load tes

    Oct 1, 2022

  • DFI
    Pile Design Using Cpt Results: The “Lpc Method”

    By Frederic A. Verheyde

    The CPT pile design method of the ‘Laboratoire des Ponts et Chaussées’ (LPC) uses the cone resistance (qc) for the design of axially loaded piles. It was originally proposed in 1982 and was revised in

    Nov 1, 2022

  • DFI
    Designed, PDA Assisted Load Tested, And Constructed Pile Foundation Provides An Economical Foundation Solution - A Case History

    By Gregory A. Stephan

    A case history of design, prediction, probe pile driving, and construction of a pile foundation for Building 3 of Waterside at Bay Beach Condominiums located in Fort Myers Beach, southwest Florida, is

    Jan 1, 2003

  • DFI
    Soil Mixing for the Rio Puerto Nuevo Project in San Juan, PR: A Case History

    By Filippo Maria Leoni, Wesley Schmutzler, Matteo Bertoni

    "Deep Mixing Method (DMM) for the Rio Puerto Nuevo Project (Project) in San Juan was chosen by the Corps of Engineers to improve the soils adjacent to a 92 inch ID forced sewer main relocation and to

    Jan 1, 2015

  • DFI
    Repair Methods for Corroded Steel Piles (0af709a8-9f1e-4f35-81ea-c69c3ee7fb05)

    By C. Vipulanandan, M. Dawood, Dongmei Pan

    "With the aging infrastructure, there is a need to maintain and extend the service life of steel structures in general and steel piles in particular. Steel piles support not only vertical loads but al

    Jan 1, 2017

  • DFI
    Research on the Stability Analysis of TDM Column Composite Foundation Supported Embankment

    By Song-yu Liu, Chao Yan, Yong-feng Deng

    "In order to investigate the stability of embankment on soft subgrade improved by T-shaped deep mixed column composite foundation, the internal forces and failure modes of columns were analyzed on the

    Jan 1, 2015

  • DFI
    Experimental Studies on Behaviour of Single Pile under Combined Uplift and Lateral Loads (5ae0a39a-734f-4c2b-bd6b-06fe19e6d6ea)

    By K. Madhusudan Reddy

    "Pile response under combined uplift and lateral load is very important and it is imperative to evaluate the effect of combined loading and only few studies were reported on pile behavior under combin

    Jan 1, 2017

  • DFI
    Ultimate Lateral Resistance of Piles in Cohesive Soil

    By Lassaad Hazzar

    The ultimate lateral resistance of piles in cohesive soil is studied using the well-known finite difference code, FLAC2D. The Modified Cam Clay (MCC) constitutive relation is adopted in the analyses t

    Aug 1, 2013

  • DFI
    Buttressing Berms for Stability of Cantilever Sheet Piles – Limit Equilibrium and Finite Element Approaches

    By Ali Ebrahimi, Meena L. Viswanath, John F. Beech, Mustafa B. Erten, Ming Zhu

    "Excessive deformation of a cantilever sheetpile wall can occur due to dredging, excavation, backfilling, or long-term creep behavior of soil. A buttressing berm constructed in front of the wall can b

    Jan 1, 2016

  • DFI
    Dynamic and Static Load Tests on Tapered Piles in Soils Exhibiting Time-Dependent Capacity Gain

    By Terrence M. Carroll, Chu E. Ho

    "A pile installation and load testing program on driven tapered piles was undertaken at John F. Kennedy International Airport in New York City for the extension of the existing Terminal 4. As part of

    Jan 1, 2015

  • DFI
    Secant Pile Barrier Wall Overlap, Thickness, and Position at the U.S. Army Corps of Engineers Wolf Creek Dam, Jamestown, KY

    By Bernard B. Vannoy, Howard W. Gault, Ramesh Bobba

    "Treviicos-Soletanche Joint Venture (JV) and the US Army Corps of Engineers (USACE) have installed a 3800-foot long, 275-foot deep and minimum 2-foot wide secant pile barrier wall at Wolf Creek Dam in

    Jan 1, 2015

  • DFI
    Concrete Filled Steel Tubes for Deep Foundations of Transportation Structures

    By Charles Roeder, Amy Leland, Dawn E. Lehman

    Concrete filled steel tubes (CFSTs) are composite members that are commonly used in many countries today. CFST components are used in the United States, but they are more common in Asia, in part becau

    Jan 1, 2019

  • DFI
    Evaluating Bending Failure Of Floating Soil-cement (Sc) Columns Under Road Embankments Using 3d Fea

    By Sailesh S. Author

    The current design method for soil-cement (SC) columns improved soft clayey ground under the highway embankments assumes a slip circle failure surface shearing through the columns and the soils using

  • DFI
    Estimation Of Wind Turbine Foundation Rotational Stiffness Based On Fully Non-Linear Dynamic Analysis

    By Yazn Khasawneh Ph. D. P. E., Will Tjaden, Spencer E. Ness P. E., Mohammed Nasim Ph. D. P. E.

    Wind turbine components undergo many loading cycles during their operational life. Additionally, wind turbines may undergo extreme loading conditions from natural hazards, mechanical failures, or emer

    Oct 1, 2022

  • DFI
    Residual Load Development Case Study In Driven Cast-In-Situ Piles

    By Packer M. L

    Residual load development in driven precast piles has been widely researched in recent decades, however, cast-in-situ piles are often falsely assumed to be unaffected by this mechanism. In contrast to

    May 1, 2022

  • DFI
    Evaluation of Crane Pad Performance on Partially Improved Ground Adjacent to a Seawall

    By Paul J. Sabatini, Yazen A. Khasawneh

    "A Demag CC1800 crawler crane was partially erected on crane mats adjacent to a seawall when settlements near a corner of the crane mat area were observed to be slightly larger than previously assesse

    Jan 1, 2017

  • DFI
    Helix Deflection Effect on Load Settlement Behavior of Pile with Increasing Stress Level

    By Adnan A. Malik, Tadashi Maejima, Jiro Kuwano

    "Previous studies revealed that the helix deflection reduced the end bearing capacity of screw pile in dense ground even if the installation process is completed with minimal soil disturbance. The ult

    Jan 1, 2017