Reference : Semantic Material Bank: A web-based linked data approach for building decommissioning...
Scientific congresses, symposiums and conference proceedings : Paper published in a book
Engineering, computing & technology : Civil engineering
Sustainable Development; Computational Sciences
http://hdl.handle.net/10993/54902
Semantic Material Bank: A web-based linked data approach for building decommissioning and material reuse
English
Akbarieh, Arghavan mailto [University of Luxembourg > Faculty of Science, Technology and Medicine (FSTM) > Department of Engineering (DoE) >]
O’Donnell, James [University College Dublin]
Teferle, Felix Norman [University of Luxembourg > Faculty of Science, Technology and Medicine (FSTM) > Department of Engineering (DoE) >]
2022
ECPPM 2022 - eWork and eBusiness in Architecture, Engineering and Construction 2022
Yes
International
European Conference on Product and Process Modelling 2022
from 14-09-2022 to 16-09-2022
Trondheim
Norway
[en] Circular Economy ; Building Information Modelling ; Linked Data ; Material Bank ; End-of-Life Cycle ; Circular Construction
[en] One of the barriers to circular construction is the lack of availability or visibility of reusable
materials and components at the right time and place. Therefore, this paper suggests a digital solution based on
identified key stakeholders’ information requirements and market motivations. This solution helps close the
material loop between the decommissioning phase and the new construction phase through semantic technology-based information exchanges among stakeholders. The proposed ontologies are twofold: 1) a Decommissioning & Reuse Ontology (DOR) that enriches information models with circular and End-of-Life cycle information while 2) the Ontology for Environmental Product Declaration (OEPD) digitalising standardised and
comparable sustainable information. Both ontologies are employed in the Semantic Material Bank (SMB)
proof-of-concept: a BIM-compliant digital urban mining solution through which defined stakeholders can evaluate the availability and status of reusable and recyclable elements for future construction projects.
Investissement pour la Croissance et l’emploi (2017-02-015-15) ; European Union’s Horizon 2020 research and innovation programme through the CBIM-ETN which is funded under the Marie Skłodowska-Curie grant agreement No 860555
Eco-construction for Sustainable Development
Researchers ; Professionals ; Students
http://hdl.handle.net/10993/54902

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