Research and application of multi data integrated tunnel construction safety information management platform

Wen WANG , Jikang YANG , Yifan ZHU

Water Resources and Hydropower Engineering ›› 2025, Vol. 56 ›› Issue (S2) : 239 -243.

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Water Resources and Hydropower Engineering ›› 2025, Vol. 56 ›› Issue (S2) :239 -243. DOI: 10.13928/j.cnki.wrahe.2025.S2.043
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Research and application of multi data integrated tunnel construction safety information management platform
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Abstract

Tunnel construction, as a crucial component of infrastructure development, often encounters complex geological conditions and high-risk construction environments, posing significant challenges to construction safety management. To effectively utilize multi-source data and intelligent technologies for the efficient management of safety and quality in tunnel construction, a multi-data integrated tunnel construction safety information management platform has been developed. This platform aims to address the information management challenges of various types of data in tunnel construction and enhance the controllability of the construction process. Based on BIM, artificial intelligence, and IoT technologies, the platform integrates modules such as personnel management, equipment monitoring, safety warning, and progress management, achieving refined management throughout the entire tunnel construction process. The platform also includes the lining trolley in the scope of digital management and improves the predictive capability and response efficiency of construction management through intelligent data collection and multi-dimensional data analysis. Practical application result demonstrate that the platform effectively enhances the safety and management efficiency of tunnel construction.

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tunnel construction / multi-source data / intelligent technology / information management platform

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Wen WANG, Jikang YANG, Yifan ZHU. Research and application of multi data integrated tunnel construction safety information management platform. Water Resources and Hydropower Engineering, 2025, 56(S2): 239-243 DOI:10.13928/j.cnki.wrahe.2025.S2.043

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