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Shear Walls Used For Liquefaction Stabilization Of Earthen Dam EmbankmentsBy Peter J. Nicholson
Recognition of the liquefaction susceptibility of dam embankments has been heightened since the San Fernando Dam near failure incident in 1971. Both the downstream and upstream slopes of dams can be
Jan 1, 2008
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Deflection-based Design For The Capitol Crossing Support Of ExcavationBy Harald P. Ludwig, Matthew J. Niermann
The support of excavation (SOE) for the Capitol Crossing project in Washington, DC consisted of a combination of soldier piles, lagging, tiebacks, braces, underpinning, single auger soil mixed (SASM)
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Innovations in Mass Stabilization for Ground Improvement and Environmental RemediationBy Charles M. Wilk
"Mass stabilization (MS) is a ground improvement technique that can prepare areas of low bearing strength soil for subsequent infrastructure development. The technique involves mixing binding agents s
Jan 1, 2015
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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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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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Opimization of Solid and Hollow Micropiles for Shallow Foundations on SandBy P. D. Arumairaj, B. Vani
"Micropiles are small diameter cast insitu reinforced grouted piles and it has been effectively used in many applications of ground improvement. It increases the load carrying capacity of soil and red
Jan 1, 2015
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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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Numerical Analysis Of The Osterberg Cell Loading TestBy Brunella Recinto
Pile loading tests are carried out with two main objectives: 1) evaluating the ultimate resistance; 2) checking the behaviour of the pile under live load. In the first case and particularly for large
Jan 1, 2003
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Construction Of Foundations For Zuari, Mandovi Railway Bridges In Goa ? SynopsisBy N. V. Nayak
Konkan Railway Project is one of the most ambitious railway construction projects in India, involving construction of a 760.km long, Broad Gauge (1676 mm), single track railway line, connecting Roha i
Jan 1, 1996
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Historical Evolution Of The Micropile "Palo Radice" - Inception Of The MicropileBy Pier Luigi Iovino
As Technical Director of the Naples, Italy based Fondedile, a geotechnical construction firm specializing in static restoration of structures, Fernando Lizzi, Ing., devoted over 30 years to the pursui
Jan 1, 2003
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Deep Foundation Underpinning Support For Fort Monroe, Virginia YMCA Historic Building RenovationBy David C. Kraft
Atlas Systems, Inc. (ASI) resistance type piers were used to underpin a 100 year old historic structure at Fort Monroe, Virginia. This 3-story structure with basement was underpinned with 155 steel tu
Jan 1, 2002
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LRFD For Deep Foundations: Replacing The Traditional Factor Of Safety In DesignBy Lance A. Roberts
The Federal Highway Administration (FHWA) has mandated the use of the AASHTO Load and Resistance Factor Design (LRFD) specifications for all new federally-funded transportation infrastructure projects
Jan 1, 2008
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An Investigation Of Pile Foundations Installed During The Late 19th And Early 20th Century For Re-Use In Building SupportBy Scott M. Doehla
A proposed rehabilitation of a 200,000 sf, 75-foot high steel-frame building at the former U.S. Navy Yard in Brooklyn, New York required the review of existing foundation data and an investigation of
Jan 1, 2008
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Toe Protection For H-Piles On Sloping Bedrock At Rainy River - SummaryBy Jon E. Bischoff
Construction of a secondary clarifier on the banks of Rainy River, Northern Minnesota, required the driving of H-piles 14HP102 to a sloping, very strong bedrock through thick deposits of soft and medi
Jan 1, 1993
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The Choice between HSDT and RLT: Selection Criteria for Concrete Pile TestingBy P. Middendorp, Gerald E. H. Verbeek
"INTRODUCTIONStatic Load Testing (SLT) is generally considered the pile testing method that provides the de-facto answers regarding pile capacity and load-deflection behavior. However, as this testing
Jan 1, 2006
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Owing to an Increasing Demand to Manage Risk and Maximize Cost-Effectiveness, Preference for Reliability-Based Design (RBD) Over Traditional Deterministic Design Procedures has increased for Deep Foundation ElementsBy Armin W. Stuedlein, Seth C. Reddy
In this study, factors affecting the reliability of augered cast-in-place (ACIP) piles under axial compression at the serviceability limit state are addressed using a simple probabilistic hyperbolic m
Jan 1, 2013
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2023 OPA Winner: Climate Pledge ArenaBy Meeok Kim, Thornton Tomasetti, Seth Knihtila, Michael Oakland, Shawn Leary
The transformation of Seattle's historic KeyArena into the state-of-the-art Climate Pledge Arena, home to the NHL's Seattle Kraken, was no small feat. The $930-million renovation and expansion require
Sep 1, 2023
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Double Rotary Head Piling Systems (Cased CFA)By Franz-Werner Gerressen
In the changing construction environment clients are searching for new technology to complete their projects in shorter times. Manufacturers are therefore developing solutions to speed up established
Jan 1, 2009
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Marine Foundations Of Bridges In The Northeastern USABy James S. Graham
Marine design and construction methods are presented on the caisson foundations for the tower piers at the Brooklyn, Ben Franklin, Delaware Memorial 1st, Tappan Zee, Walt Whitman, Throgs Neck, Verraza
Jan 1, 2005
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Port Said East Port Project - Deep Diaphragm Walls For The Quay Wall ConstructionBy Mamdouh Hamza
The construction of 1200 m length new quay wall located 1,300 m East of the existing Suez Canal bypass and about 1,000 m south of the Mediterranean shoreline is one of the main projects currently unde
Jan 1, 2002