4.6 Article

Digital Twin Aided Vulnerability Assessment and Risk-Based Maintenance Planning of Bridge Infrastructures Exposed to Extreme Conditions

期刊

SUSTAINABILITY
卷 13, 期 4, 页码 -

出版社

MDPI
DOI: 10.3390/su13042051

关键词

inspection; bridge; BIM; life cycle; vulnerability; extreme condition; risk-based maintenance; sustainable development

资金

  1. Japan Society for the Promotion of Sciences [JSPS-L15701]
  2. European Commission [691135]
  3. MDPI's invited paper program

向作者/读者索取更多资源

This study demonstrates the unprecedented applications of digital twins to sustainability and vulnerability assessments in bridge management. The integration of digital twins with bridge risk inspection model has the potential to become a more effective information platform for stakeholders to mitigate risks and uncertainties over the entire life cycle.
Over the past centuries, millions of bridge infrastructures have been constructed globally. Many of those bridges are ageing and exhibit significant potential risks. Frequent risk-based inspection and maintenance management of highway bridges is particularly essential for public safety. At present, most bridges rely on manual inspection methods for management. The efficiency is extremely low, causing the risk of bridge deterioration and defects to increase day by day, reducing the load-bearing capacity of bridges, and restricting the normal and safe use of them. At present, the applications of digital twins in the construction industry have gained significant momentum and the industry has gradually entered the information age. In order to obtain and share relevant information, engineers and decision makers have adopted digital twins over the entire life cycle of a project, but their applications are still limited to data sharing and visualization. This study has further demonstrated the unprecedented applications of digital twins to sustainability and vulnerability assessments, which can enable the next generation risk-based inspection and maintenance framework. This study adopts the data obtained from a constructor of Zhongcheng Village Bridge in Zhejiang Province, China as a case study. The applications of digital twins to bridge model establishment, information collection and sharing, data processing, inspection and maintenance planning have been highlighted. Then, the integration of digital twins (or Building Information Modelling, BIM) + bridge risk inspection model has been established, which will become a more effective information platform for all stakeholders to mitigate risks and uncertainties of exposure to extreme weather conditions over the entire life cycle.

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