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April 3, 20260 citationsOpen Access

Inventory of the material bank A demonstration of the innovation BIM for circular value flow planning

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NANiklas Arnby

Key Points

  • The aim is to improve material flow planning to promote circularity and maintain high material quality in industrial systems.
  • Utilize a BIM model for data collection from the built environment.
  • Test methods for recycling flat glass into new flat glass.
  • Explore scenarios for existing and new BIM model creation using 3D scans and pointclouds.
  • Implement data within the CP-IM platform for decision-making on material recycling.
  • Identified materials suitable for recycling and those requiring downgrade or landfill.
  • Enhanced understanding of how to enrich collected data in a BIM model.
  • Demonstrated effective data collection methods in the inventory phase.

Abstract

The innovation BIM for circular value flow planning (BIM-CVFP) builds on the concept of Circular value flow planning (CVFP). The aim is to enable better planning of material flows and thus enable circular material flows and keeping material at a high quality in the industrial system as long and qualitative as possible. BIM for circular value flow planning is enabled by using a BIM model as the facilitator of data collected from the built environment to estimate the amount of material as well as the material quality and by doing so, enable decision making for increased circularity. Ragn-Sells is demonstrating the innovation by testing how flat glass from windows are recycled to new flat glass for windows. The demo “flat glass to flat glass” shows the end of hat circle while the demonstration “inventory of the material bank”, demonstrates the initiating phase of theinnovation. In the demonstration “inventory of the material bank” we explore methods for data collection and how the collected data can be enriched in a BIM-model. We look at a scenario where a BIM-model exists as well as a scenario where a BIM-model needs to be created using a 3D scan and pointcloud conversion. Once data is collected and applied in the CP-IM platform, the CVFP module suggests what materials can be recycled, and which needs to be downgraded or sent to landfill.

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Cite This Study

Niklas Arnby (2026) studied this question.

synapsesocial.com/papers/69cf5d055a333a821460a964https://doi.org/10.5281/zenodo.19348364
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1BIM for Circular Value Flow Planning, Demo case/ Inventory of the material bank2026
  2. 2BIM for Circular Value Flow Planning, Demo Case/ Flat glass to flat glass2026
  3. 3Flat glass to flat glass A demonstration of the innovation BIM for circular value networks2026
  4. 4Inventory of the material bank2026
  5. 5Circular material flows: Flat glass to flat glass2026