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CPT Methods for Helical Pile DesignBy Howard A. Perko, Margaret Dring, Gerald Verbeek, Scott Slaughter
Helical piles have become a widely used deep foundation system in recent years due to their many inherent advantages. The cone penetration test (CPT) is commonly used in geotechnical practice to evalu
Sep 8, 2021
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Investigation and Design for Large Drilled Shaft Foundations in Southwest ArizonaBy John C. Tosh, Peter M. Kandaris, Sheldon John
Geologic, geotechnical and hydrologic studies were performed for the design of 115 deep, large diameter drilled shaft reinforced concrete foundations (6 to 12 feet) to support tall steel monopoles for
Sep 8, 2021
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Support For Deep Excavation In China ? SynopsisBy X. M. Wu
The paper describes four different types of support for deep excavations, which are currently used in China. Local experiences were illustrated by presenting case histories for each type of support. F
Jan 1, 2010
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Limiting Damage To Historic Structures In New York City, 1981 To PresentBy Andrew J. Ciancia
The construction of the Pennsylvania Station in Manhattan, the Beaux-Arts masterpiece, was completed in 1910. In financial ruin, the Pennsylvania Railroad Company sold the station in the 1960?s and t
Jan 1, 2008
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Drilled Shaft Foundations For The Float-In Dam On The Monongahela River At Braddock, PaBy Robert B. Bittner
The new gated dam on the Monongahela River at Braddock, Pennsylvania, was built for the US Army Corps of Engineers using an innovative ?In-the-Wet? technology. A key feature of this technology involv
Jan 1, 2013
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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
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Innovative Use Of ACIP Piles And Geogrid To Support Kroger SuperstoreBy George C. Webb
A wide variety and variable depth (up to 40 ft.) of compressible, uncontrolled fill (including construction debris and a perched water condition) was present at a proposed Kroger construction site in
Jan 1, 2005
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Foundation Behaviour Of A Large HS-Train Viaduct After 4 Years' OperationBy Michel Bustamante
The Arbre viaduct, 200 metres long, is the most important structure on the Belgian portion of the High Speed Train line between Paris and Brussels. The particular geotechnical conditions of the soil w
Jan 1, 2002
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Deep Mixing Technology: Comparison between Laboratory and Field Test Result, Different Jobsite Application.By Alessandro Bertero, Stefano Valagussa, Filippo Maria, Wesley Schmutzler, Leoni
"Abstract The Deep Mixing Method (DMM) represents a viable solution to improve the adverse geotechnical properties of foundation soils. Differences and the importance of performing pre-construction la
Jan 1, 2014
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First Use In The USA Of The CSM Method For Use As Microtunnel Sending And Receiving ShaftsBy Brett K. Mainer
In the summer and fall of 2007, Drill Tech Drilling and Shoring, Inc. designed and built three 24-foot inside diameter shafts in Northern California using soil mix panels for support. The soil mixing
Jan 1, 2008
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New Tacoma Narrows Bridge CaissonsBy R. Bruce Patterson
The New Tacoma Narrows Bridge is a classic suspension bridge founded on concrete caissons. Caisson construction was complicated by the proximity of the existing bridge piers, only sixty feet away. H
Jan 1, 2013
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Effects Of Confining Stress During Curing And Shearing On Shear Strength Of Lime-Cement Improved ClaysBy Ingrid Engeset, Solve Hov, Arnfinn Endal, Per-Anders Mortensen, Priscilla Paniagua, Bjørn Kristian Fiskvik Bache
During the last decades, it has become common practice in the Nordic countries to use dry deep mixing in soft clays with lime and cement in for example deep excavation pits in soft clay, or as a reinf
May 1, 2022
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Improvement of Soil Properties by Basalt Fibre ReinforcementBy Ramanathan Ayothiraman, Anurag Singh
"An experimental program was undertaken to investigate the effects of randomly distributed basalt fibre on the index and engineering properties of Dhanori clay and to compare its performance with the
Jan 1, 1900
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A Non Linear Fractal Model for the Analysis of Pile FoundationsBy Paola Campana, Maurizio Lenzi
"In the paper a non linear model for the analysis of the pile response to the axial loads is presented. The study aims to find a general analytical solution concerning the pile-soil interaction modele
Jan 1, 2017
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Development of Environmental Double Pile (EDP) for Improvement of Contaminated Soft GroundBy Hyunsuk Yoon, Kiho Lee, Juhyng Lee, Younghoon Jung, Junboum Park
"The environmental double pile method is presented as a device to improve the engineering properties and to clean up contamination of low-permeability soil. This method is one of the novel technologie
Jan 1, 2005
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An Analysis of LRFD for Helical AnchorsBy Ronaldo Luna, Donald Deardorff
"The use of load and resistance factor design (LRFD) is well documented since the 1960s for structural applications when it was first adopted into the American Concrete Institute Building Code in 1963
Jan 1, 2009
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Instrumented Static Load Testing-Auger Cast-In-Place Piles - Introduction And PurposeBy Michael T. Lambert
The purpose of the this paper is to demonstrate the benefits of using additional instrumentation during load tests of auger-cast-in-place piles. Traditionally, only load and butt displacement are dete
Jan 1, 2000
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Behaviour Of Piled Raft- Importance Of Observational StudyBy Abhirami B., V. Balakumar
Piled raft foundation system is an intelligent geotechnical concept, developed towards reducing the settlement of the raft and the footings by providing pile elements below the raft or footings, as th
Nov 1, 2022
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Pile-Supported Raft Foundation System (fd70e68a-eb6f-470f-9fd8-5fc4c0cc8d20)By Mohab Sabry, Emre Biringen
"Over the past decades, there has been an increasing recognition of the strategic use of pile-supported rafts in design of heavily-loaded structures to reduce total and differential settlements. Howev
Jan 1, 2017
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Pile-Supported Raft Foundation SystemBy Emre Biringen
Over the past decades, there has been an increasing recognition of the strategic use of pile-supported rafts in design of heavily-loaded structures to reduce total and differential settlements. Howeve