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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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Sonic Drilling and Sensitive InfrastructureBy George Burnhart
"Sonic drilling is a relatively new technology even though it has been in development since the late 1940s. It was initially funded by the U.S. petroleum industry and then, in the late 40s, Russian sc
Jan 1, 2008
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Time-Dependent Increase In Load Capacity Of Tapered PilesBy Jeongbok Seo
This paper describes successful application of driven tapered-steel-pipe piles for two large-scale projects in the New York metropolitan area: Rego Park Mall, Rego Park, N.Y. and 164 Kent Avenue, Broo
Jan 1, 2008
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Open Cell Sheet Pile® Dock In Remote Alaska Provides Innovative And Cost-Effective SolutionBy Dempsey S. Thieman
Innovative marine bulkhead design and construction techniques were used in the fast-track design and construction of a high-capacity, deep-water dock in the highly seismic region of Alaska?s Aleutian
Jan 1, 2008
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Skin Friction In Shale: Results Of The Hwy. 81 Bridge, Yankton, SD Drilled Shaft Load TestBy Scott M. Mackiewicz
This project includes replacement of the historic vertical-lift span Meridian Bridge (U.S. Highway 81 over the Missouri River) that connects Yankton, South Dakota with rural Cedar County, Nebraska. T
Jan 1, 2008
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In-Situ Permeability Testing For Cement-Bentonite Cutoff Wall ? Lessons LearnedBy François G. Bernardeau
Cement-bentonite (C-B) slurry walls have been used for ground water cutoff in deep excavations, contamination containment, and other applications. Hydraulic conductivity is of great concern for cement
Jan 1, 2008
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King?s Cross Station Re-Development Passive And Active Mitigation Of Tunnelling - Induced SettlementBy Clif Kettle
The paper will detail the design and execution of passive and active settlement control measures, the means adopted to overcome the various physical and operational constraints, and to meet specified
Jan 1, 2008
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Foundation Construction Challenges At 100 11th Avenue In Manhattan - Osterberg Cell Load Test In Mica SchistBy Cem Altuntas
This paper is the second in a series of two describing the design and construction of a foundation for a major high-rise real estate development on the west side of Manhattan, N.Y. The foundation memb
Jan 1, 2008
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Experimental And Numerical Assessment Of Osterberg Load Tests On Large Bored Piles In SandBy Roberto Nova
The selection of the Osterberg Cell (O-Cell) technology as the standard testing method for deep foundations of the Railways Po Viaduct in Northern Italy offered a relevant number of field measures on
Jan 1, 2008
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Construction, Inspection And Lessons Learned For 3.81-M Diameter CIDH Piles ? Richmond-San Rafael Bridge Seismic RetrofitBy A. R. Dover
The Richmond-San Rafael Bridge is a 6.92 kilometer (4.3 mile) long major toll bridge span that crosses the northern San Francisco Bay in a highly seismically active region. Tutor-Saliba / Koch / Tidew
Jan 1, 2008
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Design And Construction Of Micropiles Each Subject To 110 Kips Of Lateral LoadBy Andrew Baxter
The Crystal Bridges Museum of American Art in Bentonville, Arkansas is a beautiful glass and concrete structure cut into a valley that mingles with water ponds spanned by multiple bridges with suspend
Jan 1, 2008
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Predicting The End Bearing Capacity Of Rock Socketed ShaftsBy Lianyang Zhang
For optimal design of rock socketed shafts used to support axial loading, it is important to predict the end bearing capacity. The existing empirical methods for determining the end bearing capacity o
Jan 1, 2008
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Bi-Directional Load Testing Of A Pile Bored Using Bentonite Mud In Guinea BissauBy Frédéric Rocher-Lacoste
On July 2nd, 2007, LCPC and LOADTEST performed a static loading test with an Osterberg-cell on a bored pile of 1600 mm diameter. The 56.50 meters deep test pile constructed by Trevi Spa for Soares da
Jan 1, 2008
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Reconstruction Of Hudson River Pier 86 - Home Of The USS Intrepid Aircraft CarrierBy Michael Quadagno
Hudson River Pier 86, home of the historic USS Intrepid Aircraft Carrier and the Intrepid Sea-Air-Space Museum, is currently undergoing a $30M reconstruction. This project involves the demolition of t
Jan 1, 2008
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DFI 2008 Outstanding Project Award Winner Intricate Excavation for the New South Ferry Subway StationBy Alice Arana, David M. Cacoilo, Joel L. Volterra
"To make space for the new South Ferry Station in lower Manhattan, engineers and contractors carved out a new tunnel beneath three operating subway tunnels and tangentially to yet another tunnel. Crea
Jan 1, 2008
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Oakland Turning Basin Bulkhead Spin Fin® PileBy Todd Nottingham
Channel deepening of major ports is challenging designers to explore innovative solutions to ensure stability of bulkheads, such as for the Oakland Inner Harbor. This particular challenge was met with
Jan 1, 2008
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Philadelphia Dock Story—Pile Challenges at Delaware RiverBy Craig H. Olson
"A new ship dock at a Philadelphia area refinery will be capable of docking the largest tanker to travel the Delaware River, the Stena V-MAX, which will induce significant lateral loads. The loads at
Jan 1, 2008
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The Bow, Encana: Design, Monitoring, And Results Of A Deep Excavation In Downtown CalgaryBy Matthew Janes
The new Bow office complex will become the new headquarters of EnCana Corporation, a leading Canadian oil and gas company. The shoring system, encompassing nearly two city blocks and excavated to a d
Jan 1, 2008
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Piled-Raft Foundation (PRF) Optimization Design With Connected And Disconnected PilesBy A. Eslami
In recent development of piled raft design, the contribution of both raft and piles to tolerate the loads is taken into account, depending on the stiffness and contributions of involved elements i.e.;
Jan 1, 2008
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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