TY - UNPB
T1 - A Bim-Integrated Semantic Framework for Construction Waste Quantification and Optimisation
AU - Sivashanmugam, Subarna
AU - Rodriguez, Sergio
AU - Rahimian, Farzad
PY - 2024/4/16
Y1 - 2024/4/16
N2 - Quantification and optimisation of Construction Waste (CW) in the design stages are vital to implementing preventive CW management measures. Previous ICT-integrated CW models have not been efficiently upscaled to achieve an interoperable and automated workflow. This research, therefore, proposed a BIM-integrated semantic framework for CW quantification and optimisation from the early design stages. A CW data model using Semantic-Web-Technologies (SWT) was developed and integrated with BIM. The results proved that unified data structure, standardised and granular information, established semantic relationships between building material and CW data, and diverse measurement units proposed in the framework facilitate seamless and dynamic information flows between BIM and CW platforms. The research outcomes are critical to improving interoperability and automation across the CW assessment process, enhancing the accuracy and reliability of results, supporting timely and integrated decision-making, and easing communication and collaboration among the supply-chain members. A test-case building demonstrates the application of the framework.
AB - Quantification and optimisation of Construction Waste (CW) in the design stages are vital to implementing preventive CW management measures. Previous ICT-integrated CW models have not been efficiently upscaled to achieve an interoperable and automated workflow. This research, therefore, proposed a BIM-integrated semantic framework for CW quantification and optimisation from the early design stages. A CW data model using Semantic-Web-Technologies (SWT) was developed and integrated with BIM. The results proved that unified data structure, standardised and granular information, established semantic relationships between building material and CW data, and diverse measurement units proposed in the framework facilitate seamless and dynamic information flows between BIM and CW platforms. The research outcomes are critical to improving interoperability and automation across the CW assessment process, enhancing the accuracy and reliability of results, supporting timely and integrated decision-making, and easing communication and collaboration among the supply-chain members. A test-case building demonstrates the application of the framework.
UR - http://www.scopus.com/inward/record.url?eid=2-s2.0-85191054245&partnerID=MN8TOARS
U2 - 10.2139/ssrn.4796144
DO - 10.2139/ssrn.4796144
M3 - Preprint
BT - A Bim-Integrated Semantic Framework for Construction Waste Quantification and Optimisation
PB - SSRN
ER -