Uppsats

Predicting the environmental impact of structural systems with parameterization: Development of a design tool for the early design stages

H

Chalmers tekniska högskola / Institutionen för arkitektur och samhällsbyggnadsteknik (ACE)

Publicerad: 2024

Språk: Engelska

Sammanfattning

With the increasingly alarming threat from global warming, there is an urgent needto reduce the CO2 emissions across all sectors. With 38% of the emissions globallyand 21% in Sweden, there is a great potential to reduce the carbon footprint ofthe construction sector. The emissions from a building are split into embodied andoperational carbon, where new laws and regulations in Sweden will start targetingthe embodied carbon in buildings. In Sweden, the structural system accounts forhalf of the embodied carbon in a building on average.The current procedure of conducting a life cycle assessment is often time-consumingand not suitable for early design stages, where there are many uncertainties. Designersneed to have a holistic view when considering the emissions of a structuralsystem, as optimising one part can increase the emissions from other parts of thesystem. In this thesis, a parametric tool was developed to address these points;uncertainties in the early stages, time constraints and limited knowledge regardinghow the interplay is between the environmental impact and the parameters thatcontrols the design of the structural system.The parametric tool has an emphasis on structural design, where the aim is togenerate structural systems and predict the environmental impact at early stages,where the most impact can be achieved to the lowest cost. This tool models a framedstructural system with columns, beams, and slabs, then performs a load takedown.The modular design of the tool allows it to be modified or expanded in the future.The parametric tool uses pre-calculated elements to design the structural system,after which it calculates and display the environmental impact to the user in acomprehensive way. Optimisation algorithms can be used to find some of the mostoptimised design alternatives for the given objectives.A case study has been performed to verify the performance and accuracy of the tool.The results from the case study showed that the tool will select similar cross sectionsas a structural engineer in the preliminary design stages, resulting in comparablecarbon emissions. It was challenging to compare the emissions for the structuralsystem between the reference building and the system generated by the tool, as thereference building included load bearing walls, which is not included in the tool atthis stage. The tool could be further developed by including load-bearing walls,foundation, and horizontal stabilisation.

Information

Författare
Flyman, Robin
Lärosäte / institution
Chalmers tekniska högskola / Institutionen för arkitektur och samhällsbyggnadsteknik (ACE)
Publiceringsdatum
2024
Uppsatstyp
H
Språk
Engelska

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