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Design Of Axially Loaded Compression Piles According To Eurocode 7By Bauduin C. Besix
The Eurocode 7 "Geotechnical Design" is based on "Limit State Design", tackling the uncertainties as much as possible at their source through: - selection of characteristic values of variables (load
Jan 1, 2002
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The Effect Of Drilling Fluid On Axial Capacity, Cape Fear River, NCBy Dan Brown
Two drilled shaft foundations were subjected to axial load tests in order to measure the influence of drilling fluid on performance. Other than the differing drilling fluids, the shafts were construct
Jan 1, 2002
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Mechanical Characterization of a Chemically Stabilized Soft Soil Reinforced with Fibers When Subjected to Tensile SolicitationsBy J. M. N. P. C. Teles, Venda Oliveira P. J., Correia A. A. S.
"AbstractA laboratory work was performed to study the mechanical behavior of a Portuguese soft soil chemically stabilized with binders and reinforced with metallic fibers when subjected to tensile str
Jan 1, 2014
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Reinforcement of Existing Deep Foundations with MicropilesBy Mauricio Terceros, Martin Achmus, Freddy Lopez
The massive use of deep foundations had a remarkable influence in the building industry in the 20th century. Piles and micropiles made possible to erect thousands of civil structures around the world,
Jan 1, 2018
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Micropiles Prove Advantageous Over Drilled Shafts For Merchants Railroad Bridge RehabilitationBy Jeffrey R. Hill
To extend the life of the Merchants Railroad Bridge crossing the Mississippi River in St. Louis, MO, the owner implemented a rehabilitation and reconstruction project. The Merchants Bridge provides a
Jan 1, 2006
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Overview Of Earth Retaining Systems And Their SelectionBy Raymond J. Castelli
The paper provides a general overview of the numerous types of earth retaining systems currently available, and organizes these various systems by several classification methods. These classifications
Jan 1, 2003
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Lateral Load Tests On Drilled Piers In San Diego Area Residual And Formational SoilsBy Kul Bhushan
This paper presents the results of lateral load tests on 0.61-m to 1.27-m (24 to 50-inch) diameter drilled and cast-in-place piers in San Diego area residual/formational soils. The test piers were ins
Jan 1, 2002
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Hydraulic Impact Pile Hammers ? BackgroundBy Patrick Bermingham
The advancement of hydraulic impact hammers has followed the general advancement of hydraulics. The construction industry has been revolutionized by the application of hydraulics in excavators, cranes
Jan 1, 1987
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Installation Of Augered Cast-In-Place Piles (3e8ab035-87ca-4b14-9759-c57d4f787aa0)By Tracy Brettmann
Equipment ? Hollow Stem Auger ? Drill Bits ? Leads/Torque Arm ? Hydraulic Gearbox ? Hydraulic Power Unit ? Grout Pump ? Crawler Crane
Jan 1, 2004
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Augered Cast-In-Place Piles: Regional Project Profiles - Community Osteopathic Hospital Harrisburg, PaGENERAL CONTRACTOR: ALEXANDER CONSTRUCTORS, INC. STRUCTURAL ENGINEER: CAGLEY & ASSOCIATES, INC. GEOTECHNICAL ENGINEER: F.T. KITLINSKI & ASSOCIATES, INC. PILE FOUNDATION CONTRACTOR: L.G. BA
Jan 1, 2001
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Stabilization Of Organic Soil With The Limix SystemBy Magnus Ruin
The dry deep mixing method for stabilization of soft soil has been used in the Scandinavian countries for 25 years. The typical application has been stabilization of soft inorganic clay. Today the met
Jan 1, 2001
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The Influence Of RC Nonlinearity On P-Y Curves For CIDH Bridge PiersBy Leonardo Massone
The p-y method is one of the most popular methods in pile design and has been calibrated for various boundary conditions using numerical and experimental studies during recent years. Most studies on r
Jan 1, 2012
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Macropiles: Ultra-High-Capacity Micropiles For Foundation SupportBy John R. Wolosick
MACROPILES are defined as ultra-high-capacity micropiles, with working loads in excess of 250 tons. The piles are typically 9-5/8 to 24 inch (244 to 610 mm) outside diameter. They are drilled and gr
Jan 1, 2006
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Press-In Piling Technology For Sustainable ConstructionBy Philip Dubbeling
Conventional dynamic sheetpiling techniques are ill-suited to urban development because of the emission of excessive noise and ground vibrations. Drilled shafts and slurry walls alleviate some of thes
Jan 1, 2006
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Construction Productivity Advancement Research Program (CPAR)By Jesse A. Pfeiffer
CPAR, the Construction Productivity Advancement Research Program, is a new initiative of the Corps of Engineers to enhance U.S. construction industry productivity through the development and applicati
Jan 1, 1989
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Effect Of Transverse Stresses On The Strength Of Steel Sheet Piling And Recommended Changes In Design ProcedureBy Richard J. Hartman
Current design practice is to select steel sheet piling sections using sufficient section modulus and yield strength to resist the calculated bending moment. Thus, section modulus is the only property
Jan 1, 2006
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Foundation Retrofit Design and Construction for the Benicia-Martinez Bridge, Martinez, California - 1998 DFI Annual Conference October 7th-9th, 1998 Seattle, WashingtonBy Roy A. Imbsen
Following the 1989 Loma Prieta earthquake, California Department of Transportation (Caltrans) expedited an effort to evaluate and retrofit important state-owned toll bridges to enhance performance of
Jan 1, 1998
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Approach To Reliability Based Design On Deep Mixing Improved GroundBy Masaki Kitazume
Deep mixing method, in-situ admixture stabilization technique, has been developed and adopted for on land and marine construction works in Japan. The geotechnical design procedure of the method has be
Jan 1, 2004
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Tied-Back Offset Tangent Caisson Retaining Wall For The North Bulkhead Third Harbor Tunnel Project Boston, Massachusetts ? IntroductionBy Daniel L. Hanson
This paper presents a case history of the design, installation and performance of a tied-back tangent caisson retaining wall which was constructed as part of the Third Harbor Tunnel project currently
Jan 1, 1994
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Case History Of The Support Of Excavation System At The San Diego State University (SDSU) LRT StationBy Allan Sylvester
This paper will discuss the design, construction, and performance of the support of excavation on the San Diego State University LRT Station. The vertical elements of the system include drilled secant
Jan 1, 2002