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An Alternative Pile TechnologyBy Rimas Veitas, James Panton, Erich Steinlechner
"Ductile Iron Piles (DIPs) are a proven, viable alternative to conventional piles, and for the past five years have been successfully used throughout New England. The installation process of DIPs lend
Jan 1, 2017
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Bentonite Self-Hardening Slurry Mix Variations and Field Implementation MethodsBy Christopher R. Harris
"Considerations are presented for developing and implementing self-hardening slurry mix designs to be utilized in barrier seepage walls. Slag-cement-cement-bentonite (SCCB) slurries are the primary fo
Jan 1, 2016
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Port Orange Drilled Shaft Load Tests - IntroductionBy David K. Crapps
The drilled shaft load tests at Port Orange were part of a demonstration project sponsored by the Federal Highway Administration (FHWA) and the Florida Department of Transportation (FDOT). Three load
Jan 1, 1989
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Permanent Soil Nail Earth Retention System, Stanley Hall Replacement Project, UC BerkeleyBy Pirooz Barar
The new Stanley Hall building will house the center for bio-engineering and technology research for the UC Berkeley campus. The structure is located at the northeast part of campus, adjacent to Donne
Jan 1, 2004
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Underpinning and Temporary Earth Retention for the ReTRAC Trench in RenoBy K. Ronald Chapman, Claus Ludwig, Doug Jenevein
"In the spring of 2005 Schnabel Foundation Company completed a $15.2 million Design/Build subcontract to underpin 11 structures, and provide 202,800 square feet of earth retention for the Reno Transpo
Jan 1, 2006
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Micropiles for Seismic RetrofitsBy Rob Jameson
"Although seismic retrofit is recognized as a key micropile application, widely-used reference documents do not clearly address design and testing recommendations for micropiles that are loaded primar
Jan 1, 2009
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No. 1 Queens Road - Melbourne, AustraliaBy Tom George
"INTRODUCTIONNo. 1 Queens Rd was an existing 10-storey office building founded on large pad footings. This project involved the construction of a 6-level, 15m (50-ft.) deep basement excavated immediat
Jan 1, 2005
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Drilling And Grouted Pipe Pile Foundation For Department Of Energy Spallation Neutron Source Target Building, Oak Ridge, Tennessee ? IntroductionBy Ronald E. Walkington
The U.S. Department of Energy (DOE) is building the world's newest accelerator-based, pulsed-neutron system, called Spallation Neutron Source (SNS). The facility, located in Oak Ridge, Tennessee,
Jan 1, 2001
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Construction Dewatering Challenges in Urban EnvironmentsBy Rafael A. Rivera
"Since the dawn of construction, there has been a need for excavations, which sometimes need to occur below the groundwater table. Excavations in themselves are difficult enough, with the myriad of re
Jan 1, 2017
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Pressure-Grouted Helical Piles Aid Urban RedevelopmentBy Karen Dawson
Pressure-grouted helical piles support a new seven-story homeless housing center in the Coney Island neighborhood of Brooklyn, New York. The project team instrumented and statically load tested piles
May 1, 2022
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Applications of Diaphragm Wall Technology for Deep Foundations and Permanent Underground Structures for the Transbay Transit Center and the Transbay DevelopmentsBy Mikael Calando, Thomas Joussellin
"San Francisco's rapid growth has caused the city to plan for the Transbay Transit Center Project, a visionary transportation and housing project, that will transform downtown San Francisco and the Sa
Jan 1, 2016
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Route 9A Pedestrian Tunnel at the World Trade CenterBy Raymond E. Sandiford
"The redevelopment of the World Trade Center (WTC) provided an opportunity for the Port Authority of NY and NJ to complete a long sought underground connection between all of Lower Manhattan’s transit
Jan 1, 2012
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Cased Auger Piles (CAP): An Effective Piling SolutionBy Federico Pagliacci
Continuous Flight Auger (CFA) technique represents an important technological advance in the construction of piles in soft soils. The possibility of excavation under the water table with no need for
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Cased Auger Piles (CAP): An Effective Piling Solution (With CAP Technique)By Federico Pagliacci
Continuous Flight Auger (CFA) technique represents an important technological advance in the construction of piles in soft soils. The possibility of excavation under the water table with no need for d
Jan 1, 2017
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Guidelines For Selection Of Parameters For Design Of Caisson Foundations For Certain Conditions. - SynopsisBy Dinesh R. Katti
Caissons which are locally known as well foundations, which may very in diameter from 30 m to more than 30 m and in majority of the cases having depth to diameter ratio between 1 to 1.5, are normally
Jan 1, 1996
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Design Of Piles With The Dual Role Of Structural Stability And As A Sustainable Source Of Energy For The Heating And Cooling Of BuildingsBy Alice DiDonna
The heating and cooling of buildings worldwide represent a large amount of a country?s energy needs and are major sources of CO2. Therefore, decreasing the environmental impact of residential and offi
Jan 1, 2011
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Soil-Structure Interaction Of A High-Rise Building Near Sensitive Structures In Soft Soil ConditionsBy Mohamed Hassan, Matthias Seip, Steffen Leppla
In the east of Frankfurt am Main, Germany, a new high-rise building is planned directly next to the river Main. The high-rise building will have a height of about 75 m and will be founded on a Combine
May 1, 2022
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Army Corps Megaprojects: The Benefits of Innovative FoundationsBy Dale Berner, Michael O’Sullivan
"This article focuses on lessons learned from innovative designs including in-the-wet construction methodology and modified foundation conditions, for two United States Army Corps of Engineers (USACE)
Jan 1, 2016
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Testing Foundations for Major Minnesota BridgesBy Dan A. Brown, Rich A. Lamb, Paul J. Axtell
"Over the last 10 years, the Minnesota Department of Transportation (Mn/DOT) has had a very active program of replacing many major bridges, large structures spanning the Mississippi River. The deep fo
Jan 1, 2013
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Bluestone Dam Safety Assurance Program: An OPA Runner UpBy Jeff Hopple
"Bluestone Dam in Hinton, W.Va., along the New River, is owned and operated by the U.S. Army Corps of Engineers (USACE). Completed in 1949, the dam is 165 ft (50 m) tall, 2,048 ft (624 m) wide, and en
Jan 1, 2014