2017 Journal article Legacy File

BIM-based deconstruction tool: Towards essential functionalities

Primary Investigators / Authors

Olugbenga O Akinade; Lukumon O Oyedele; Kamil Omoteso

Document Abstract / Summary Overview

This study discusses the future directions of effective Design for Deconstruction (DfD) using BIM-based approach to design coordination. After a review of extant literatures on existing DfD practices and tools, it became evident that none of the tools is BIM compliant and that BIM implementation has been ignored for end-of-life activities. To understand how BIM could be employed for DfD and to identify essential functionalities for a BIM-based deconstruction tool, Focus Group Interviews (FGIs) were conducted with professionals who have utilised BIM on their projects. The interview transcripts of the FGIs were analysed using descriptive interpretive analysis to identify common themes based on the experiences of the participants. The themes highlight functionalities of BIM in driving effective DfD process, which include improved collaboration among stakeholders, visualisation of deconstruction process, identification of recoverable materials, deconstruction plan development, performance analysis and simulation of end-of-life alternatives, improved building lifecycle management, and interoperability with existing BIM software. The results provide the needed technological support for developing tools for BIM compliant DfD tools.

Technical Properties

Accession ID: DOI: 10.1016/j.ijsbe.2017.01.002
Archival Collection: UKZN-IKS
Language Registry: English
Asset Extent / Duration: 12 Pages
Publisher: Elsevier
Rights Management Attribution: The Gulf Organisation for Research and Development
Licence Data: Elsevier B.V. All rights reserved

Co-Authors & Contributors

Olugbenga O Akinade; Lukumon O Oyedele; Kamil Omoteso creator

Taxonomy Classifications

🏷️ United Kingdom 🏷️ Elsevier 🏷️ The Gulf Organisation for Research and Development 🏷️ Olugbenga O Akinade; Lukumon O Oyedele; Kamil Omoteso 🏷️ Building deconstruction; Building Information Modelling (BIM); Functionality framework; Focus Group Interviews; Descriptive interpretive analysi

Subject Keywords

# Building deconstruction; Building Information Modelling (BIM); Functionality framework; Focus Group Interviews; Descriptive interpretive analysi

Geographic Spatial Coverage

πŸ“ United Kingdom
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