Impact of pile head restraint and soil stiffness on the response of steel piles for integral abutment bridges
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Publicerad
Författare
Typ
Examensarbete för masterexamen
Master's Thesis
Master's Thesis
Modellbyggare
Tidskriftstitel
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Sammanfattning
Integral abutment bridges are commonly designed using simplified pile models where
the pile is treated as an isolated structural element with a free pile head. To better
represent the actual structural behaviour, global buckling analysis can be used as an
alternative modelling approach, where stabilisation from the surrounding soil and
the integrated bridge system is considered. The purpose of this study is therefore
to evaluate whether alternative modelling approaches can provide a more realistic
estimation of axial pile capacity in integral abutment bridges.
The study combines literature review, case study and finite element modelling. A
finite element model was developed in BRIGADE/Plus and verified against hand
calculations using simplified single pile models. The analyses were gradually ex
tended to include soil resistance, transverse loading, and different boundary condi
tions. Both single piles and piles integrated into the bridge system were analysed
under two different soil conditions to evaluate force distribution, bending moments,
buckling behaviour, and pile capacity.
The results show significant differences in structural behaviour depending on soil
conditions and model assumptions. The piles embedded in friction soil developed
a higher axial capacity than the piles surrounded by soft clay. Compared with the
isolated pile models, the piles integrated into the bridge system generally exhibited
an increased capacity due to redistribution of internal forces and the sequential for
mation of plastic hinges. The results also indicate that simplified assumptions with
free pile heads may underestimate the stabilising effect provided by the surrounding
structural system.
The study demonstrates that modelling assumptions regarding soil stiffness and
pile restraint significantly influence the predicted pile capacity in integral abutment
bridges. Simplified single pile models may therefore underestimate the structural
capacity of piles interacting with the bridge system. The results indicate that soil
structure interaction and restrained pile behaviour should be considered in non
linear analyses of integral abutment bridges, particularly when evaluating ultimate
limit states and buckling behaviour.
Beskrivning
Ämne/nyckelord
Integral abutment bridge, structural behaviour
