Total BIM for sustainable renovation: enabling reuse and data-informed climate decision-making
Journal article, 2026
Design/methodology/approach-A mixed-methods study was conducted on a Swedish renovation and adaptive reuse project implementing Total BIM. Quantitative BIM-derived data on quantities, costs and embodied carbon were combined with qualitative project insights to examine Total BIM enabled workflows for reuse and climate assessment.
Findings-Total BIM enabled a reuse-oriented digital ecosystem supporting material and component reuse from early design through disassembly and reinstallation. Reuse strategies delivered substantial reductions in embodied carbon, while selected reuse cases remained cost-competitive with new materials. Innovative automated BIM-life cycle assessment (LCA) workflows enabled regular climate reporting aligned with evolving project data. Challenges included regulatory constraints, limited supply-chain readiness and weak market incentives for reuse.
Originality/value-The study provides rare empirical evidence of how legally binding BIM can enable integrated reuse and BIM-LCA workflows in renovation and adaptive reuse projects. The findings contribute practice-based insights into how Total BIM can support climate-informed decision-making and digitally enabled circular renovation practices.
BIM-LCA integration
Total BIM
Embodied carbon
Life Cycle Assessment (LCA)
Adaptive reuse
Building Information Modeling (BIM)
Author
Oliver Disney
Chalmers, Architecture and Civil Engineering, Construction Management
Mikael Johansson
Chalmers, Architecture and Civil Engineering, Construction Management
Per Hoglin
Byggstyrning
Kjell Karlsson
Byggstyrning
Mattias Roupé
Chalmers, Architecture and Civil Engineering, Construction Management
Smart and Sustainable Built Environment
2046-6099 (ISSN) 2046-6102 (eISSN)
Vol. In PressDigital Twin Cities Centre
VINNOVA (2019-00041), 2020-02-29 -- 2024-12-31.
Subject Categories (SSIF 2025)
Construction Management
DOI
10.1108/SASBE-12-2025-0835