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Lateral Behavior Of Post Grouted Drilled Shafts
By Emad Farouz, Ehab S. Shatnawi, Charles Winter
The increasing demand for small deformations and high-capacity drilled shafts without enlarging drilled-shaft diameters has motivated the development and increased use of a base grouting (BG) techniqu
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Bi-directional Load Testing Using Donut Super Cells For Hangzhou West Railway Station
By Antonio Marinucci, Robin Mao
The new Hangzhou West Railway Station, which is currently in the early stages of construction, will be located in the city of Hangzhou, China. To accomplish the ambitious goals of the project, the con
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One Seam At A Time: Interactive Quality Assurance To Identify Coal Seams During Foundation Construction
By Matthew Runion, Christopher Lawler
The Aeolus – Jim Bridger Transmission Line Project is located in southern Wyoming, home to some of the largest coal seams in the world. Coal seams present unique challenges to underground construction
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Simulation Of Soil-structure Interaction With Sheet Pile And Retained Soil
By Clarissa Aguiar, Seok hyeon Chai, Thamer Yacoub, Sina Javankhoshdel
Sheet piles are used as an excavation support for soil retention. They are interlocked systems to form a wall for earth support along with anchors to provide an extra lateral support in excavations. T
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Risk Management For Dam Rehabilitation Projects
By Dave Paul
Dam rehabilitation involves a range of design, construction, and operation risks, some of which are not encountered in new dam construction. These risks can have significant impact on project schedule
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Lessons Learned From Construction Of A Tire Plant In Karst, Ns2 Tires, White, Ga
By Robert L. Goehring, Fred Munene
This case history for three major additions to a tire manufacturing plant in north Georgia discusses the impact of highly variable Karst (sinkhole) geology on both foundation design and construction.
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Quality Assessment Of Drilled Shaft Foundations At The Jane Byrne Interchange
By Travis Coleman, Elvis Ishimwe
Currently, more than 400 drilled shafts have been constructed by various contractors at the I-90/94 and I-290 Jane Byrne (Circle) Interchange, located near downtown Chicago, Illinois. Cross-Hole Sonic
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Centrifuge Modeling Of Axial Failure Of Helical Piles In Cohesive Soils
By Richard Schmidt, Lijun Deng, Mohamed Abdelaziz, Weidong Li
Helical piles are widely used as a foundation supporting a variety of different structures. Understanding the axial behaviour of helical piles is required to confirm the engineering design. Helical pi
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Pile Diameter Effects On Initial Modulus Of Subgrade Reaction For Laterally Loaded Piles
By Hubert Law, Amin Rahmani
This paper evaluates the effects of pile diameter on the initial modulus of subgrade reaction and proposes modifications to the subgrade reaction moduli that are commonly used in the current state of
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Trouble In Paradise: Micropiles As A Solution To Challenging Geotech And Steep, Rugged Terrain On The Island Of Oahu
By Steve Davidow, Scott Tunison
As the demand for electric power grows and generation facilities are constructed in more remote areas, the industry faces an increasing number of foundation construction challenges. The importance of
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On Driven Piles In The Arabian Gulf: Imperfections, Potential Challenges, And Lessons Learned
By Waddah Akili
The demand on pile installation in the offshore of the Arabian Gulf has, over the last two decades, experienced unprecedented boom, triggered by the construction of platforms, to help facilitate the p
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Non-destructive Testing Of Unknown Bridge Foundation Lengths Using Parallel Seismic Testing
By Chetan D. Savani, Mike K. Muchard
The necessity to evaluate undocumented foundation lengths is essential in assessing the useable life, need for scour protection, retrofitting, or full reuse of existing bridge foundations. For this pu
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Installing And Testing Multi-bar High Capacity Rock Tiedowns
By Andrew Pontecorvo, Steven Lowe, David Sposito
Buildings with large height-to-width ratios require foundations with significant uplift resistance. This paper presents a case study of the permanent rock tiedowns installed for One Manhattan West, a
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Three-Dimensional (3D) Limit Equilibrium Method (LEM) Comparative Study of a Landslide Case Study Supported with Piles
By Terence Ma, Seok hyeon Chai, Jeff Lam, Thamer Yacoub, Brigid Cami, Sina Javankhoshdel
The Limit Equilibrium (LE) analysis of pile-supported geotechnical structures normally assumes a constant shear force for the pile instead of considering the non-linear capacity of the pile which is r
Sep 8, 2021
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Today’s Connectivity: Using Historical Data to Anticipate Future Risk
By Michael Frawley, Deana Ruud, Jessica Turner
Technology is allowing for new ways to mitigate risk associated with subsurface exploration and unanticipated subsurface conditions during construction. Unanticipated subsurface conditions have the po
Jan 1, 2019
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Top-Down Methods Utilizing Secant Walls at 110 N. Carpenter: Design And Construction
By David R. Sutfin, Joseph Lodde
110 N. Carpenter is new commercial building located in the West Loop neighborhood of Chicago, Illinois. The new home to the McDonalds Corporation work headquarters, accelerated project delivery method
Jan 1, 2019
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Top-Loaded Bi-Directional Test and the Conventional Bi-Directional Load Test, a Direct Comparison
By Patrick J. Hannigan, Seth Robertson, Frank Rausche, Rozbeh B. Moghaddam
The Top-Loaded Bi-Directional Test (“TLBT”) and the conventional Bi-Directional Load Test (“BDLT”) are full-scale load tests where loads are applied bi-directionally to the foundation element. The BDL
Sep 8, 2021
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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
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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
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TTMJ – The New System for Slurry (Diaphragm) Wall Joints
By Maurizio Siepi, Paul van Horn, John Coupland, Julian Crawley
"TTMJ is the acronym for the Slurry (Diaphragm) Wall Tension Track Milled Joint currently in development as part of the European Union's innovative and far-reaching Horizon 2020 initiative (FTI Pilot-
Jan 1, 2017