Steel-Timber Composite Beams as an Alternative to Conventional Steel and Glulam - A Structural and Sustainability Assessment
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Publicerad
Författare
Typ
Examensarbete för masterexamen
Master's Thesis
Master's Thesis
Modellbyggare
Tidskriftstitel
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Utgivare
Sammanfattning
Steel and timber can be combined into hybrid structural elements known as steel
timber composite (STC) beams, offering improved structural performance while
reducing embodied carbon and cost compared to conventional alternatives. Despite
their potential, no dedicated Eurocode provisions currently exist for STC beam de
sign, limiting their adoption in practice and motivating the need for further research.
This study investigates two STC configurations: STC-1, consisting of a steel HEA
section with a glulam element positioned above the top flange, and STC-2, a glu
lam beam reinforced with a steel plate on its bottom surface. Both configurations
are designed using Newmark’s partial-interaction theory and optimized through a
parameter sweep in MATLAB, in which Life Cycle Assessment(LCA) and Life Cy
cle Cost (LCC) analyses are performed on the candidate configurations to obtain
their CO2 emission and cost performance, with a Marginal Abatement Cost (MAC)
framework subsequently applied as the selection criterion. The optimized STC con
figurations are then compared against pure steel and pure glulam reference beams.
LCA and LCC analyses are conducted across span lengths ranging from 3 m to
12 m, with nonlinear finite element simulations in Abaqus being performed for two
representative spans of 7 m and 12 m under office and shopping mall load cases.
Results show that STC beams can offer environmental and economic advantages
beyond a threshold span length, with STC-1 achieving CO2 reductions of up to 20%
relative to the steel reference beyond approximately 5 m, while STC-2 reduces cost
up to 30% compared to the glulam reference beyond approximately 9 m. Finite el
ement analysis confirms that both configurations exhibit ductile behavior governed
by steel yielding, with failure modes and load-displacement responses varying be
tween configurations and span lengths. These findings demonstrate that Newmark’s
partial-interaction theory provides a viable design basis for STC beams in the ab
sence of dedicated Eurocodes.
Beskrivning
Ämne/nyckelord
Steel-timber composites (STC), Partial interaction, Newmark method, Life cycle assessment (LCA), Life cycle cost (LCC), Marginal Abatement Cost (MAC), Eurocode, Finite element analysis (FEA)
