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A new static p-y approach for piles with arbitrary dimensions in sand

Author(s):


Medium: journal article
Language(s): English
Published in: geotechnik, , n. 4, v. 38
Page(s): 267-288
DOI: 10.1002/gete.201400036
Abstract:

When it comes to the general design of laterally loaded piles in offshore environments, bedding resistance is usually modelled by the p-y method recommended in the offshore guidelines (OGL). Several investigations presented in the literature indicate that the head displacements of large-diameter monopiles are underestimated for extreme loads but overestimated for small operational loads. An extensive evaluation of the OGL method is presented here using three-dimensional numerical simulations. The evaluation has shown that the OGL method is not applicable for the design of large-diameter piles. Moreover, modified p-y formulations presented in the literature accounting for the effect of the pile diameter are also not generally suitable for piles with arbitrary dimensions and load levels. Therefore, the derivation of a new p-y approach is presented in detail. The new approach consists of "basic p-y curves" that are valid for a pile of infinite length exhibiting a constant horizontal deflection. In an iterative scheme, these basic curves are adapted depending on the pile deflection line and the pile length to account for a more realistic bedding resistance along the pile shaft. A comprehensive parametric study with 250 pile-soil systems reveals that the new p-y approach is able to predict the horizontal loadbearing behaviour as well as the local pile-soil interaction quite realistically.

Keywords:
subgrade reaction method p-y method laterally loaded pile sand
Available from: Refer to publisher
Structurae cannot make the full text of this publication available at this time. The full text can be accessed through the publisher via the DOI: 10.1002/gete.201400036.
  • About this
    data sheet
  • Reference-ID
    10072694
  • Published on:
    29/01/2016
  • Last updated on:
    29/01/2016
 
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