Long-Term Behaviour of Floating Pile Foundations in Soft Gothenburg Clay - Advanced Numerical Modelling of Creep Settlements and Soil Pile Interaction
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Författare
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Examensarbete för masterexamen
Master's Thesis
Master's Thesis
Modellbyggare
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Sammanfattning
Urban development in the city of Gothenburg has become increasingly dependent on
complex geotechnical solutions thus the high extent of deep deposits of soft clay and
the ongoing densification of the urban environment. In areas subjected to long-term
creep settlements, the utilisation of floating piles have become significant. Reliable
predictions is therefore essential for safe foundation design.
The aim of the study was to evaluate the long-term behaviour of floating pile found
ations in deep deposits of soft clay subjected to creep settlements and asses how
these effects can be represented in advanced numerical analyses. The study focused
on the area of Lilla Bommen in Gothenburg and was carried out in collaboration
with Skanska.
Finite element analyses were carried out using both two-dimensional and three
dimensional numerical models in Plaxis. The Creep-SCLAY1S constitutive model
was utilised to simulate long-term consolidation and especially creep behaviour of
the clay. The numerical results were later compared to measurements of settlements
and axial force observed in instrumented piles. Additional investigations were also
carried out on the influence of pile spacing and pile length.
The numerical results were compared with the measured settlement data and ob
served axial forces. It was shown that the numerical model was able to capture
long-term settlement behaviour and partially the development of negative skin fric
tion within the floating pile system. However, differences between measured and
simulated axial force distribution indicated that the simplified numerical approach
may not fully capture realistic pile-group interactions effects and time-dependent
load redistribution.
The additional investigations on the influence of pile spacing and pile lengths made
it possible to conclude that it has high affect on both settlement behaviour and axial
load distribution. Smaller spacing resulted in increased settlements and reduced pile
efficiency due to pile group effects. On the other hand, the increasing pile length
showed to reduce settlements. Furthermore, substantial differences were observed
in the comparison between 2D and 3D analyses, particularly load distribution and
the behaviour of edge piles and their effect on piles closer to the centre.
To conclude, the study demonstrates that a simplified 2D unit cell are able to rep
resent the average behaviour of centrally located piles which can provide valuable
support during design phases. However, the results further indicate that advanced
3D analyses are needed for to capture local effects, edge pile behaviour and load
distribution within pile groups subjected to long-term consolidation and creep set
tlements. Additionally, the findings highlight the importance of creep deformation
in the long-term behaviour of floating piles foundations in Scandinavian soft clay.
Beskrivning
Ämne/nyckelord
Floating pile foundations, soil-pile interaction, axial force, long-term settlements, creep settlements, negative skin friction, Creep-SCLAY1S, soft clay, finite element modelling, pile group behaviour
