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  • DFI
    Probabilistic Development Of Load And Resistance Factor Design For Driven Pipe Piles In Sands: Lessons Learned

    By K. C. Foye

    Use of load and resistance factor design (LRFD) of foundations is growing, from offshore applications to bridge applications and beyond. The development of load and resistance factors for design has

    Jan 1, 2008

  • DFI
    Research On The Interaction Between Pile And Foundation Soil By Boundary Element Method

    By Wang Lushuang

    This thesis is devoted to the research of the interaction between pile and foundation soil by boundary element method (BEM for short). The interaction is simulated by the interaction between two diffe

    Jan 1, 1991

  • DFI
    Micropile Performance Variability: A Fundamental Case Study

    By Walter E. Vanderpool

    Type 1B micropiles (Bruce and Juran, 1997) can be installed rapidly and efficiently. During an 85-day period, 536 micropiles were installed to depths of 61 meters within a site 41 meters by 43 meters.

    Jan 1, 2002

  • DFI
    Helical Piles With Grouted Shafts - A Case History

    By Shawn Downey

    A helical pile with in-situ grouted shaft was used to underpin the existing slab of a large retail store in the Edmonton, Alberta Canada area. The existing structural slab did not have the capacity to

    Jan 1, 2003

  • DFI
    A General Formula To Determine The Allowable Pile Bearing Capacity In Case Of Negative Skin Friction ? Summary

    By Cornelis Van Der Veen

    Foundation piles, partly passing through unconsolidated compressible layers, suffer a downward drag that is called negative skin friction. The negative skin friction depends on the movement of the sur

    Jan 1, 2010

  • DFI
    Numerical Modelling Of Nonlinear Piles ? Synopsis

    By S. P. Lin

    The numerical models of nonlinear piles for deep foundations are studied in this paper. The purpose of these is to clarify the mechanical behaviour of deep foundation nonlinear piles subjected to axia

    Jan 1, 2010

  • DFI
    Design Of Well Cap, Pier And Well Steiming At The Junction Using Strut-And-Tie Model - Synopsis

    Pier, well cap and steining junction is a complicated 3-d re-ion. The prevalent design procedure for the pier, well cap and steining in isolated manner is not rational. In absence of an integrated app

    Jan 1, 1996

  • DFI
    Effect Of Curing Stresses On The Mechanical Properties Of Soil-cement Mixed Materials

    By George Onorato, Giovanni Bonita

    Deep soil mixing (DSM) has now become a ubiquitous ground improvement technique across the globe for producing soil-cementous materials for many types of complex civil and environmental applications.

  • DFI
    Behavior Of Pile Foundation Under Impact Lateral Loads

    By Hajialilue Bonab M.

    The soil-pile interaction under lateral impact loads is not yet completely well known. Many tests on single piles under static lateral loads in centrifuge have been performed and P-y curves have been

    Jan 1, 2002

  • DFI
    Bearing And Friction Design Capacity Software For Helical Anchors And Piles

    By Gary L. Seider

    Chance, a Division of Hubbell Power Systems, Inc., in conjunction with Sailors Engineering, Inc. has updated its Helical Design Capacity Software. This latest version, ?HeliCAP® v2.0?, is a state-of-

    Jan 1, 2007

  • DFI
    Foundation Contracts And Law - Part -1: Relevan[i] Law

    By Kirty Dave

    Foundations in any contract are the most uncertain parts of the contract and most of the "Construction-Contract-Disputes" are either directly related to foundations or arise as 'Side-effects of c

    Jan 1, 1996

  • DFI
    Realizing The Benefits Of LRFD For Deep Foundations

    By Bernard H. Hertlein

    The introduction of LRFD methods for structural design has been a gradual process by AASHTO, ACI, AISC, ASCE, and the FHWA, which has largely been ignored by the deep foundations industry. In 2007, ho

    Jan 1, 2007

  • DFI
    Analysis Of Vertical Piles In Granular Soils Subjected To Static Lateral Loading - Synopsis

    By K. Rama Sarma

    Piles are frequently subjected to lateral forces and moments in addition to vertical forces and hence the piles have to be designed for both lateral loads as well as vertical loads. In the design of s

    Jan 1, 1996

  • DFI
    Current Pile Driving Practices In The United States

    By Alan G. MacKinnon

    The current piling practices in the U. S. have, to a great degree, been influenced by our founding fathers. When our constitution was written by the delegates from the original thirteen colonies, it w

    Jan 1, 1987

  • DFI
    Practice Of Large Diameter Stepped Section Bored Pile Foundation Of A Deep Water Bridge

    By Cen Guoji

    The foundation of bored pouring concrete pile have been adopted in the bridge engineering of China since early in the sixties. They demonstrated tremendous technical advantage and achieved notable eco

    Jan 1, 1991

  • DFI
    Numerical Analysis Of The Pile-Enhanced Raft Of The Queen Elizabeth II Conference Centre In London, UK

    By Trevor I. Addenbrooke

    Stress reducing piles were used for the first time at the Queen Elizabeth II Conference Centre near the Palace of Westminster in London, UK. The inclusion of these piles directly beneath heavily loade

    Jan 1, 2002

  • DFI
    On The Ultimate Capacity And Radial Stress Distribution Of Driven Piles In Sands

    By E. Ulrich Klotz

    It is difficult to predict accurately the capacity of driven piles in sand. In practice, this uncer­tainty either leads to conservative designs if the capacity is under-predicted, or worse, if the cap

    Jan 1, 2002

  • DFI
    Design Of Bored Piles In Chalk At The New Medway Crossing Based On Instrumented Load Tests

    By David J. Puller

    As part of the value engineering process on a major Design Build highway project, instrumented trial pile load tests were used to achieve savings in cost and time on the foundations for a major river

    Jan 1, 2002

  • DFI
    Detailing For Cast-In-Place Pile-Column Ductility ? Introduction

    By Andrew Budek

    Reinforced concrete piles are used to carry foundation loads through considerable depths of soil to provide superstructure stability under gravity loads and lateral forces. The creation of cast-in

    Jan 1, 2007

  • DFI
    Piled Rafts In Geotechnical Practice - An International Perspective

    By Michael W. Neill, O&apos

    The performance of foundations that combine the high bearing capacity of rafts (mats) with the settlement reduction capability of piles is described through a summary of 24 case histories. Structures

    Jan 1, 2003