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LRFD Resistance Factors for Design of Driven Piles Using the Texas Cone Penetration (TCP) TestBy Rozbeh Moghaddam, William D. Lawson, Priyantha W. Jayawickrama, Hoyoung Seo, James G. Surles
"This study provides calibration of resistance factors (?) for design of driven piles to implement Load and Resistance Factor Design (LRFD) for bridge foundations using Texas Cone Penetration (TCP) Te
Jan 1, 2017
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High-Capacity Rock Anchors Provide Uplift Resistance For Concrete-Filled Steel Pipe Piles - A Case StudyBy James Weaver
During the past 16 years, the authors have successfully used high-capacity rock anchors installed inside open-ended pipe piles, driven to bedrock, to provide uplift and overturning resistance for vari
Jan 1, 2011
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Practical Soil Nail Wall Design And Constructability IssuesBy Walter G. Kutschke
Four significant soil nail wall projects in the eastern United States were recently completed with a combined area of 175,000 square feet of finished shotcrete surface. These projects required the us
Jan 1, 2007
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Soil-Cement Columns For Building FoundationsBy Osamu Taki
The development of new auger bits for soil cement column drilling equipment has made it possible to create a homogeneous mixture of soil and cement-reagent slurry. As a result, soil-cement columns are
Jan 1, 1992
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Structure Support on Laterally Swept PilesBy Morgan L. Race, Matthew R. Glisson
"Most driven pile projects have plumbness limits from 0.25 in/ft (21 mm/m) to 0.5 in/ft (42 mm/m) to control bending stresses. For two projects, the project teams performed static load testing to eval
Jan 1, 2017
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Kinematic Response Characteristics of a Piled Raft FoundationBy Ramon Varghese, A. Boominathan, Subhadeep Banerjee
Pile raft foundation system has been accepted as an economic foundation design for high rises and heavily loaded structures. Seismic response analysis of PR foundation systems involves complex pile-so
Jan 1, 2018
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Seismic Hazards Evaluation and Lateral Pile Design in Diatomaceous EarthBy Arash Khosravifar, Matt Steffan
An expansion of the City of Klamath Falls Wastewater Treatment plant required geotechnical seismic hazard evaluations and deep foundation design. The site is located on the shore of Lake Ewauna and is
Jan 1, 2018
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The Heritage of Swedish Foundation EngineeringBy Stefan Aronsson, K. Rainer Massarsch
"ABSTRACT The geology of Sweden is characterized by the most recent glacial period with deposition of very soft clays and loose sand. Due to these difficult geotechnical conditions, new, innovative fo
Jan 1, 2014
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Site Management Towards Pile Execution At Qurashiya BridgeBy Emad W. Shublaq
Contractual site plans are implemented for executing pile foundations (5 x 5) at segmental concrete bridge. Project schedule demands have forced the contractor to find out the most economical procedur
Jan 1, 1992
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Presentation #1 - Deep Foundation Inspection And Integrity Testing - Introduction - Why Use Drilled Shafts?By Bernard Hertlein
¦ Drilled shafts resist scour seismic loads better than groups of driven piles ¦ Drilled shaft construction creates less noise and vibration than driving piles ¦ Drilled shafts permit direct obser
Jan 1, 2001
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Determination Of Pile Damage In Concrete PilesBy Gerald E. H. Verbeek
As the number of driven concrete piles with Embedded Data Collectors increases, it has become possible to compare the widely used Beta Method to assess pile damage (using the change of pile impedance)
Jan 1, 2011
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Development of Site-Specific Acceleration Response Spectra fora Liquefiable Bridge SiteBy S. Ali Bastani, Ashley Varni
Design acceleration response spectra (ARS) are directly correlated with dynamic forces and estimated dynamic bridge displacements, which make them a critical aspect of dynamic bridge design. Nonlinear
Jan 1, 2018
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Deep Mixing Method: A Global PerspectiveBy Donald A. Bruce
Various types of contemporary Deep Mixing Method (DMM) techniques have been used in the United States since 1986. Such techniques owe their origins to Japanese and Scandinavian developments, which beg
Jan 1, 1998
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Volume Averaging Technique for Modelling Deformations in Soft Soil Improved with Deep Mixed ColumnsBy Minna Karstunen, Patrick Becker
"Abstract The deformation behaviour of a foundation on deep mixed columns in a natural soft soil is a three-dimensional problem, which has to be considered adequately in numerical modelling. However,
Jan 1, 2014
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Determination of Initial Stiffness of Drilled Shafts for the Analysis of Settlements under Service LoadsBy Carlos A. Prato, Federico Pinto
"ABSTRACTThe design of drilled shafts often incorporates large factors of safety, for which settlements under service loads are highly influenced by the initial elastic stiffness. In the case of group
Jan 1, 2014
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Piled Foundation Design as Reflected In Codes and StandardsBy Bengt H. Fellenius
"ABSTRACTAn example from a guidelines document for the Eurocode is discussed that addresses design for geotechnical strength of piled foundations in settling soil, generating drag force and downdrag.
Jan 1, 2014
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The Deep Soil Mixing for the Galataport Project in Istanbul, Turkey.By Federico Pagliacci, Marco Chiarabelli, Salvatore Miranda
The paper describes the adopted technologies and performance controls related to a special geotechnical engineering solution provided within the scope of the Galataport Project, in Istanbul, Turkey. T
Jan 1, 2018
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Deep Foundations In Karst - Lessons Learned From I-40 Corridor Widening In Knoxville, TennesseeBy James L. Vinson
Wilbur Smith Associates (WSA) has provided planning, engineering and construction oversight assistance to the Tennessee Department of Transportation (TDOT) for three construction projects intended to
Jan 1, 2006
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Recommended Steps And Procedures For Planning And Performing A Geotechnical Investigation For A Seismic Retrofit ? IntroductionBy Mark DeSalvatore
Currently, at Caltrans, the Office of Structure Design is carrying out an extensive seismic retrofit program involving transportation structures throughout California. The goal of the retrofit program
Jan 1, 1993
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Deep Foundation Shoring in South FloridaBy Douglas C. Brunot
Mabey Inc. is providing for the shoring design for the Naples bay Center project, located in Naples, FL. The excavation is approximately 374' long by 164' wide and is 27'-8" deep at the shoring line w
Jan 1, 2018