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Resonant Pile Driving - Part I - The Promise & The Reality - Part II - Soldier Pile Installation - Light Rail Transit - Buffalo, New York - 1. Historic Background.
By D. R. Dance
The Resonant, or as it has more commonly come to be known the 'Sonic' Pile Driver, dates back to the early 1960's, when prototypes were produced by Charlie Guild, of Providence, Rhode I
Jan 1, 1987
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Mini-Pile Design And Construction Methods Change To Mitigate Soil Loss Through Glacial Till
By Cassandra A. Wetzel
Rock socketed mini-piles are a desirable foundation alternative when design capacity is more than 40 tons and there is limited access. In this case history mini-piles were designed to support between
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Performance Of A Large Diameter Drilled Pier
By A. J. Partos
One Liberty Place, at 315 m is the tallest building in Philadelphia, PA USA. It is supported on drilled piers socketed in heterogeneous rock. 3832 kN/m2 end bearing and 383 to 766 kN/m2 shaft resistan
Jan 1, 1989
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Non-Destructive Geophysical Evaluation Of Deep-Mixed Soil: A Computer Modeling Study
By David A. Staab
Numerical modeling was used to investigate the feasibility of using two geophysical imaging techniques, cross-borehole ground penetrating radar (XBGPR) tomography and electrical resistivity (ER) tomog
Jan 1, 2004
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Response Of A Pile In Soft Clay Under One-Way Cyclic Lateral Loading
By Padmavathi V. Sagi
In this paper, effect of cyclic loading on the behavior of a long, flexible, unrestrained vertical pile loaded laterally in soft clay is examined. For cyclic loading, the analysis is carried out usin
Jan 1, 2006
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Predication Of Heave For Deep Excavation With Irregular Plane Shape
By Zhang Jiaju
For the highrise buildings with deep foundstion of irregular plane shape, an appropriate calculate model to the heave of foundation soil after excavation is proposed and studied using analytic method
Jan 1, 1991
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The Historical Evolution Of Piling And Deep Foundations And Prospects For The Future.
By W. G. K. Fleming
The general history of piling is traced up to the present time with regard to the evolution of methods and materials. The processes have been strongly influenced by developments in basic equipment and
Jan 1, 1999
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Case History: Multiple Axial Statnamic Tests On A Drilled Shaft Embedded In Shale
By Paul J. Axtell
Two new railroad bridges in Kansas City, Missouri are founded on drilled shafts embedded into the soil and underlying shale. The uncertainty arising from the non-homogeneous, anisotropic nature of mo
Jan 1, 2006
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Harmonization and Status of Geotechnical Standards in Europe
By Trevor L. L. Orr
"AbstractThe background to the harmonization of geotechnical standards that has taken place in recent years in Europe has been the move to more economic and political integration following World War I
Jan 1, 2014
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Design Optimization - Drilled Shafts Installed In Sand, Gravel And Cobble Formation
By Emad Farouz
The resistance of very dense glacial outwash formations consisting of sand, gravel and cobble formations can be quite high, and techniques for measuring the strength and deformation properties often c
Jan 1, 2006
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Little Britain Project: Construction Of Basement
By R. H. Wright
This paper describes the design philosophy and methods employed in constructing the foundation elements for the Little Britain Project in the City of London. The Contract is a design and construct pac
Jan 1, 1989
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Innovative Application Of Piled Raft Foundation To Optimize The Design Of High-Rise Buildings And Bridge Foundations
By Y. El-Mossallamy
The piled raft foundation was extensive applied in the last two decades in different soil conditions e.g. in soft to stiff clay as well as in medium to dense sand and even in highly weathered rock. Th
Jan 1, 2006
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Friction Piles In Boston Blue Clay, Suffolk County House Of Corrections, Massachusetts ? Summary
By Harry K. Weatherbee
The paper presents a design case study for a four-story correction facility addition in south Boston, Massachusetts, supported on friction piles driven into the Boston Blue Clay. 356 mm (14-in.) squar
Jan 1, 2003
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Single Axis Tooling Methods - A. Introduction
By George K. Burke
Single axis soil mixing is a mechanical method of blending soil in situ with a reagent binder to achieve improved character. Generally this achieves a design compressive strength or shear strength and
Jan 1, 2001
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Prediction Of Ultimate Pile Bearing Capacity Using Artificial Neural Networks
By Vahid Tajdar
The behavior similarity between pile and cone penetration test, has guided the researchers to use the CPT results in prediction of piles bearing capacity. In this article, artificial neural networks h
Jan 1, 2006
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Jet Grouting As Soil Improvement In Southeast Florida
By Evelio N. Horta
The influence of soil improvement replacement area in foundation settlements is discussed for soil improvement methods used in Southeast Florida. A 3D Finite element analysis is used for two typical c
Jan 1, 2007
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Helical Pulldown? Micropiles Support Museum Celebrating The Bicentennial Of The Lewis And Clark Expedition
By Roy Jennings
The Discovery Expedition of St. Charles, MO chose to build its two-story museum in the flood plain of the Missouri River, near the starting point of the Lewis and Clark Expedition. Should the lower le
Jan 1, 2003
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Collaborative Alliances – A Sustainable Way Forward For Construction?
By Stefano Trevisani
Abstract The FIEC Sustainability Vision states that “risks should be identified and allocated in a fair manner across the project team from the early stages of the design phase. A partnering approach,
Jan 1, 2014
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Pile Foundation - A Critical Study Of Some Design Aspects. - Synopsis
By S. L. Karunakaran
Selection of an appropriate foundation system requires great skill and ingenuity on the part of the designer. Certain guidelines for choosing between a pile and raft foundation are presented. A number
Jan 1, 1996
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Construction Of Long Tubular Column Foundations Under Deep Water ? Synopsis
By C. L. Liao
The chief experiences for constructing deep tubular columns foundation under deep water are as follows: 1. P.C. tubular columns were sunk inside the caisson. 2. P.O. tubular columns of 3.6 M. diameter
Jan 1, 2010