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The Alternate Technical Concept Process For Foundations At The New Mississippi River Bridge, St. LouisBy Dan A. Brown
The New Mississippi River Bridge (MRB) employed conventional design-bid-build procurement, but the bidding process included the opportunity for pre-qualified bidders to develop and propose confidentia
Jan 1, 2011
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Emplacement Techniques: Impervious And Pervious Wall Construction ? SummaryBy Fred C. Schmednecht
For years, the strategy was to contain waste and in many applications, is still the recommended method. Recently, it has become acceptable to create filters below ground for the in-situ treatment of w
Jan 1, 1999
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Minipiles And Jet-Grouting: A Strong Foundation In Parma, ItalyBy Bruno Gemmi
The objective of the ? 200 million ($280 million) project Parma Railways Station-Urban Transformation was the reconnection of the North and South parts of the town by constructing an 80 m (250 ft) wid
Jan 1, 2011
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Static Alternating Cyclic Horizontal Load Tests On Driven Steel Pipe Piles Of Foundations For Highway BridgesBy Kouichi Tomisawa
Two bridges were constructed for extension work of Central Hokkaido Connection Road in 2005 at two different sites. Pile group foundations were employed for the foundations of abutments of the two bri
Jan 1, 2006
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Deep Foundations on Buildings using Driven Ductile Iron Micropiles.By Antonio A. Cristóvão, Alexandre Pinto
"Abstract Deep foundations of buildings using driven ductile iron micropiles TRIM solutions, leads to recognized advantages, from technical, schedule and economic points of view. High production rate
Jan 1, 2014
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Effect of Non-Plastic Fines on Liquefaction Susceptibility of Fine SandsBy Kodi Ranga Swamy, N. Sankar, M. Akhila
"Until recently, liquefaction-related studies concentrated on clean sands believing that only sands are susceptible to liquefaction. However, a few earthquakes like 1976 Tangshan earthquake, the 1989
Jan 1, 2017
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Tunnel Headwall Softeyes: Fiberglass Design Applications and Constructability ChallengesBy Shawna Munn, Jakub Hudler
This paper outlines the use of tunneling headwall softeyes for transit construction projects in the Greater Toronto Area (GTA) over the past decade. Due to spatial constraints, tunnel boring machines
Jan 1, 2018
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Extrapolation of Unit Side Resistance in Drilled Shaft Foundations Based on Bi-Directional Load Test DataBy Ramin Motamed, Joseph A. W. Toth
Evaluation of the capacity of large-diameter drilled shafts using current load test methods present challenges when considering the magnitude of loads required to fully mobilize their capacities. Ofte
Jan 1, 2018
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Kentucky Route 9 - Licking Pike Widening Design Build Slope StabilizationBy Frederick W. Slack
This paper will discuss the inherent value engineering associated with the design and construction of approximately 184,000 SF of anchored tieback wall, installed as part of the widening and drainage
Jan 1, 2003
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Port Mackenzie, Alaska - Deep Soil Compaction, Spin Fin- Pile Tension Test And Dock ConstructionBy Garth Howlett
In 1998 the Matanuska-Susitna Borough formed the new port district at Point MacKenzie, known as Port MacKenzie, located directly across the Knik Arm from Anchorage. In 1991 PND Engineers Inc. (PND), w
Jan 1, 2006
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Innovations in the Design and Construction of Marine FoundationsBy Robert B. Bittner
"AbstractLarge diameter tubular piles offer significant advantages in terms of design performance and economy for major marine structures. This is particularly true for foundations of major overwater
Jan 1, 2014
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Design And Application Of Vertical Micropiles To Resist Large Lateral LoadsBy Helen D. Robinson
Traditional practice to resist large lateral loads on foundations is the use of large diameter caissons, battered driven piles, or battered micropiles. Dense urban construction environments, however,
Jan 1, 2010
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Case History: Deep Soil-Cement Mixing At The I-90/I-93NB Interchange On The Central Artery/Tunnel Project, Contract C09A7 At Fort Point Channel Site, Boston, MA - SynopsisBy Robert Jakiel
The following paper is being presented to provide an understanding of the Deep Soil-Cement Mixing (DMM) performed at Contract C09A7 at the Fort Point Channel Site (FPC), for the I-90/I-93 Interchange
Jan 1, 2000
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Deep Excavations And Foundations For Locks ? SynopsisBy B. H. Moore
Foundation and excavation problems associated with lock construction projects vary widely. Each lock requires a different foundation to respond to a unique geologic setting. The range of heights and f
Jan 1, 2010
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25 Story Structure On River Flood Plain Soils Improved By Vibrocompaction And Compaction GroutingBy Frank Callanan
The Ameristar Casino expansion project included the design and construction of a 25-story hotel and 9-story parking structure expansion. The site is located in a floodplain on the banks of the Missour
Jan 1, 2009
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Design And Installation Of Pretensioned Spun Concrete Piles To Support A Large Diameter SewerBy Naresh Koirala
The Greater Vancouver Regional District completed installation of a 2.5 Km long, 2400 mm diameter concrete sewer in Delta, British Columbia in 2000. The sewer traverses through area of peat and soft
Jan 1, 2004
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Ground Improvement for the Distressed Earth Bund Using Stone Column - A Case StudyBy M. Kumaran, A. Vetriselvan, A. Purantharan
"This paper presents a case history of evaluating the stability of a distressed earth bund and rectification measures carried out. A 5.45 km long, 7m high earth bund for drinking water storage was con
Jan 1, 2017
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Driving And Testing Of 75 M Long H-Piles In Shanghai - 1 . SynopsisBy Lucien Weber
In the Shanghai area, the soil conditions are such that bearing piles have become an essential foundation part of the new highrise buildings. In order to reduce the settlements under the high working
Jan 1, 1987
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Recent Advances In Soil Nailed Earth RetentionBy Tom A. Armour
Different variations of soil nailing techniques have been used in the United States since the late 1970's. Such techniques owe their origins to French developments, which began in the early 1970&
Jan 1, 2003
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Deep Foundations On Deer IslandBy Michael W. Oakland
Deer Island is the site of the Massachusetts Water Resources Authority (MWRA) wastewater treatment plant which, when completed in 1999, will serve 43 cities and towns in central eastern Massachusetts.
Jan 1, 1994