Structural Modeling for Preliminary Design of Steel-Concrete Composite Bridges
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Publicerad
Författare
Typ
Examensarbete för masterexamen
Master's Thesis
Master's Thesis
Modellbyggare
Tidskriftstitel
ISSN
Volymtitel
Utgivare
Sammanfattning
The preliminary design of steel-concrete composite bridges must be completed in a
limited time frame, often representing a small fraction of the time allocated to the final
design. This requires fast and accurate methods for estimating load effects, member di
mensions, and material quantities. At the same time, preliminary estimates must remain
consistent with the final design while being competitive in bidding.
This study evaluates modeling approaches for determining load effects using Brigade/
Plus and investigates methods for preliminary cross-section design. A literature study
was conducted to identify relevant modeling approaches, followed by a case study of
a steel-concrete composite bridge in Akalla. Three main modeling approaches were
examined: a shell model, a grillage model, and three-beam-element-based models. The
approaches were assessed with respect to accuracy, computational efficiency, and suit
ability for preliminary design.
The results show that a transverse beam model with vertical springs in combination
with a longitudinal beam model is the most suitable modeling approach for preliminary
design. Although conservative, the model provides a favorable balance between accu
racy, simplicity, and computational efficiency. The study further demonstrates that the
model could be improved by considering the spread of the load through the concrete
slab using distribution angles. By updating the model by incorporating the resulting
effective widths, material consumption was reduced by up to 17% compared to the
original model. Furthermore, adjusting the slab strip width proved more effective than
modifying the spring stiffness alone. The greatest improvements were observed in cases
where fatigue governed the design.
The proposed modeling approach provides a practical workflow for preliminary design,
enabling more accurate estimations of material quantities during the limited time frame.
Keywords: Steel-concrete composite bridges, preliminary design, load distribution fac
tors, transverse beam model, structural modeling
Beskrivning
Ämne/nyckelord
Steel-concrete composite bridges, preliminary design, load distribution fac tors, transverse beam model, structural modeling
