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March 6, 20260 citationsOpen Access

Intelligent HBIM Framework for Group-Oriented Preventive Protection: A Case Study of the Suopo Ancient Watchtower Complex in Danba

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LZLi I. ZhangCTChen TangYYYaofan Ye

Key Points

  • The aim is to develop an intelligent HBIM framework that enhances preventive conservation for masonry heritage clusters.
  • Integrated 3D laser scanning and UAV photogrammetry for data acquisition
  • Parametric semantic modeling for constructing a detailed database
  • Application of a value-risk model for automated assessment
  • Utilization of Revit API and Dynamo for intervention prioritization
  • Improved modeling accuracy and efficiency compared to manual workflows
  • Enhanced decision reliability through automated evaluations
  • Established a closed-loop workflow from data acquisition to intervention planning
  • Framework demonstrated scalability and potential for future IoT integration

Abstract

Heritage Building Information Modeling (HBIM) is accelerating the transition from reactive restoration to preventive conservation in architectural heritage management. Nevertheless, research at the heritage-cluster scale remains limited, particularly in terms of multi-source data integration, dynamic value–risk coupling, and lifecycle-oriented decision support. This study proposes an intelligent HBIM-based framework designed to support integrated data processing, automated value–risk assessment, and preventive intervention planning for masonry heritage clusters. The framework is validated through its application to the Suopo Ancient Watchtower Complex in Danba, Sichuan, consisting of 84 polygonal stepped-in stone towers. By integrating 3D laser scanning, unmanned aerial vehicle (UAV) oblique photogrammetry, and historical archival data, a closed-loop workflow is established, spanning data acquisition, parametric semantic modeling, and intervention prioritization. A dedicated parametric component library and hierarchical semantic database tailored to irregular polygonal masonry significantly enhance modeling consistency, semantic coherence, and cross-building reusability. Leveraging the Revit Application Programming Interface (API) and Dynamo, the framework embeds a value–risk model (P = V × R), enabling automated component-level evaluation, real-time visualization of conservation priorities, and one-click generation of intervention lists. Results demonstrate improved modeling accuracy, efficiency, and decision reliability compared with conventional manual workflows. The framework offers a scalable and replicable pathway for sustainable conservation of masonry heritage clusters in high-seismic regions and provides a foundation for future integration with IoT-enabled digital twin systems.

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Cite This Study

Zhang et al. (2026) studied this question.

synapsesocial.com/papers/69aa70b8531e4c4a9ff5abd6https://doi.org/10.3390/buildings16050995
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