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  • DFI
    Recommended Steps And Procedures For Planning And Performing A Geotechnical Investigation For A Seismic Retrofit ? Introduction

    By Mark DeSalvatore

    Currently, at Caltrans, the Office of Structure Design is carrying out an extensive seismic retrofit program involving transportation structures throughout California. The goal of the retrofit program

    Jan 1, 1993

  • DFI
    Energy Geostructures: Analysis from Research and Systems Installed Around the World

    By Tony Amis, Marco Barla, Alice Di Donna

    "Energy geostructures are becoming an increasingly popular solution around the world for Developers looking to reduce CO2 and system running costs. Energy geostructures are geotechnical structures tha

    Jan 1, 2017

  • DFI
    Foundations Settlement Estimation by Non-Linear Stress-Strain Approach Using CPT Records

    By Abolfazl Eslami, Fatemeh Valikhah

    "Complexity in soil-foundation interaction and subsoil nonlinear behavior cause difficulties and uncertainties in evaluating the actual values of foundation design factors such as settlement. The acqu

    Jan 1, 2017

  • DFI
  • DFI
    The Design of Partial Depth Cement Deep Mixing (CDM) Foundation for an Immersed Tunnel

    By J. S. Lee, R. K. Massarsch

    "A 3.2 km long immersed road tunnel forms part of the Busan-Geoje Fixed Link in South Korea, which connects Korea's second largest city Busan, with the island of Geoje. To ensure the water tightness o

    Jan 1, 2015

  • DFI
  • DFI
    Load-Deformation Based Design of Deep Mixing for Supporting MSE Walls at Kitimat LNG, BC

    By Randy R. Williams, Brian W. Wilson, George M. Filz, Marina S. W. Li

    "Detailed design of an extensive deep mixing (DM) scheme using the Cutter Soil Mixing (CSM) technique was completed for foundation support of mechanically stabilized earth (MSE) walls for Kitimat Liqu

    Jan 1, 2015

  • DFI
    Providing External Confinement to Precast Prestressed Pile Shafts to Improve Ductility - ·Experimental Observations

    By Andrew Budek

    "Analytical and experimental work has shown that achieving the full inelastic lateral capacity of a pile may require the formation of a plastic hinge below ground level, in the pile shaft. The confini

    Jan 1, 2005

  • DFI
    Execution of Pile Installation in Environmentally Challenging Sites

    By Dena Morgan, Emre Biringen

    "Abstract This paper discusses the execution of pile installation and design issues at two environmentally challenging industrial sites in North America. Environmental regulations set constraints on t

    Jan 1, 2014

  • DFI
    Evaluation of Soil-Bentonite Backfill Consolidation Properties

    By Jeffrey C. Evans, Daniel G. Ruffing, Hejintao Huang

    Soil-bentonite slurry trench cutoff walls are the most common type of vertical cutoff wall used in the US for seepage control and for passive control of contaminant migration at environmental sites.

    Jan 1, 2016

  • DFI
    Numerical Study On Uplift Capacity Of Helical Pile Embedded In Clay

    By Muttharam M, Karthick Kumar V

    Helical piles foundation systems have been extensively used in engineering application. It is commonly adopted to resist the compression, uplift force, overturning moment and lateral forces. Helical p

    Nov 1, 2022

  • DFI
    Securing of In-Situ Cement Mixing Quality for the Expansive Soil with the ‘Montmorillonite’ Inclusion

    By Masaru Sakakibara, Ngo Tuan Anh, Mitsuo Nozu

    "In the southern region of Vietnam and the southern United States, numbers of Deep Mixing (DM) columns have been installed to increase the stability of slopes and mitigate ground settlement. However,

    Jan 1, 2015

  • DFI
    Construction Of Two Microtunnel Access Shafts Using The Cutter Soil Mix (CSM) Method In The San Joaquin Delta, California

    By Eric S. Lindquist

    Two microtunnel access shafts were constructed using the Cutter Soil Mixing (CSM) method in the San Joaquin Delta region of California, east of San Francisco. Unlike conventional slurry walls and diap

    Jan 1, 2010

  • 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
    Effectiveness of Head-Enlarged CDM Columns in Evaluating Settlement of Improved Grounds

    By Y. M. Ha, T. D. Nguyen, D. T. Nguyen, H. K. Choi

    Conventionally, cement deep mixing (CDM) columns are designed to have constant diameters over the improved depth as this facilitates the construction procedures. However, this design pattern may be in

    Jan 1, 2019

  • DFI
  • DFI
    Experiment to Determine the Influence of Groundwater Level on Grid-Form Deep Mixing Walls for Liquefaction Control

    By Tsuyoshi Honda, Kazuhiro Kaneda, Masayuki Imai, Kazuo Konishi, Kunio Higashinaka

    "In recent years, the demand for measures to control liquefaction of existing airport runways and harbor structures has increased. However, from the perspectives of constructability and cost, applicat

    Jan 1, 2015

  • DFI
    Assessment of the Durability of Cementitious Barrier Materials

    By Stephan A. Jefferis, Adrian H. Bath

    "This paper draws together some themes on the durability of barrier systems, and particularly cementitious systems. For contaminated land and water retaining structures, durability can be poorly addre

    Jan 1, 2016

  • DFI
    Tresfjord Bridge -Pile Works

    By Andreas Andenæs, Arne Schram Simonsen

    "AbstractThe Tresfjord bridge is with its variety in foundation concepts and difficult soil conditions one of the most geotechnically challenging projects in Norway at the time. The project comprises

    Jan 1, 2014

  • DFI
    Recent Advantages of CDM-LODIC Method (Low Displacement and Control Method)

    By Yuji Yamashita, Kazuyoshi Kamimura, Tsuyoshi Takahashi, Naoya Matayoshi

    "The CDM-LODIC method (cement deep mixing - low displacement and control) method enables ground displacement to be reduced by removing an amount of soil equivalent to that of injected cement slurry an

    Jan 1, 2015