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  • DFI
    Application of Deep Soil Mixing Walls in the Warren Avenue Grade Separation Project, Fremont, CA

    By D. S. Yang, Y. D. Wang, G. Watanabe, A. P. Notaro

    "Deep soil mixing (DSM) walls reinforced with steel soldier piles were installed for excavation support and groundwater control for the construction of a grade separation structure at the intersection

    Jan 1, 2015

  • 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
    Geotechnical Assessment Of Highly Saline Soil Stabilized With Fly Ash - Cement Admixtures

    By Jahnavi Parmar, Pranav R. T Peddinti, Saloni Pandya, P. S. Prasad

    Coastal cities are in desperate need of suitable land to meet the ever-increasing demand for urban infrastructure to support commercial, residential, tourism, and off-shore activities. Countries with

    Sep 1, 2022

  • DFI
    Design and Construction of Driven H-Piles for Landslide Stabilization in Marlboro Clay

    By Charbel Khoury, Kwabena Ofori-Awuah, Kofi B. Acheampong

    "Following heavy rains in spring of 2014, Prince George’s County officials issued a mandatory evacuation for homes in the Piscataway Hills subdivision of Fort Washington, Maryland where a landslide al

    Jan 1, 2017

  • 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
    Influence of Pile Geometry on the Dynamic Response of an Under-Reamed Pile

    By M Muzammil, S. Mukerjee, S. Saran, M. Bharathi

    "This paper presents the results of in-situ tests conducted on a set of under-reamed piles in a silty sand deposit. Three piles (i.e. vertical, vertical with one bulb and vertical with two bulbs) of d

    Jan 1, 2015

  • 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
    Observed Driving Performance of Open-Ended Steel Pipe Piles with and Without Plugged Toes

    By Chu E. Ho, Paul Napoli

    This paper presents the performance of nineteen open-ended steel pipe piles driven through highly variable overburden soils into glacial till and schist bedrock. The piles were 16 inches in diameter a

    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
    Insitu Ground Reinforcement Techniques

    By Peter J. Nicholson

    The methods of reinforcement to be discussed in this paper are all insitu methods, ones that can be used on the soil structure as it exists in the ground, and do not rely on excavation and replacement

    Jan 1, 1991

  • DFI
  • 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
    Anchored Hollow Bar Tangent Pile System For Underpinning

    By Marco D. Boscardin, Benjamin H. MacKinney, Kenneth R. Allard, Kenneth A. Pidgeon, Adriane G. Boscardin

    This paper presents a case history for a unique application of a system of vertical micropiles with horizontal soil nail bracing and shotcrete facing for underpinning. The system was used to support a

    Oct 1, 2022

  • DFI
    Design Solutions for Seepage End-Around-Effects at Cutoff Wall Depth Transitions

    By Michael Hughes, Selva Selvamohan, Ray Costa

    "Cutoff walls are commonly used to mitigate underseepage problems for levee remediation projects. At abrupt changes in seepage cutoff wall depths there is a potential for water to flow around the back

    Jan 1, 2015

  • DFI
  • 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
    Dynamic Load Testing of Drilled Deep Foundations

    By Paikowsky, Samuel G.

    "Due to the way drilled deep foundations are being constructed, their structural integrity and geotechnical capacity are highly variable. Drop weight systems are increasingly being used to dynamically

    Jan 1, 2015

  • DFI
  • DFI
    Probabilistic Subsurface Characterization for Transmission Line Foundation Design

    By Neil T. Russo, Peter M. Kandaris, Jogi S. Gadok

    "Assessment of subsurface data for foundation design in support of long high voltage electric transmission lines is best accomplished using a probabilistic strategy since only a small portion of struc

    Jan 1, 2017

  • 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