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Bending Moment Calculations for Piles Based on the Finite Element Method
Author(s) -
Yuxin Jie,
Huina Yuan,
Hou-de Zhou,
Yuzhen Yu
Publication year - 2013
Publication title -
journal of applied mathematics
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.307
H-Index - 43
eISSN - 1687-0042
pISSN - 1110-757X
DOI - 10.1155/2013/784583
Subject(s) - bending moment , pile , cantilever , structural engineering , shear and moment diagram , moment (physics) , finite element method , displacement (psychology) , computation , bending , grid , pure bending , bending stiffness , shear (geology) , mathematics , engineering , materials science , geometry , physics , classical mechanics , algorithm , composite material , psychology , psychotherapist
Using the finite element analysis program ABAQUS, a series of calculations on a cantilever beam, pile, and sheet pile wall were made to investigate the bending moment computational methods. The analyses demonstrated that the shear locking is not significant for the passive pile embedded in soil. Therefore, higher-order elements are not always necessary in the computation. The number of grids across the pile section is important for bending moment calculated with stress and less significant for that calculated with displacement. Although computing bending moment with displacement requires fewer grid numbers across the pile section, it sometimes results in variation of the results. For displacement calculation, a pile row can be suitably represented by an equivalent sheet pile wall, whereas the resulting bending moments may be different. Calculated results of bending moment may differ greatly with different grid partitions and computational methods. Therefore, a comparison of results is necessary when performing the analysis

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