Data-driven monitoring system for ground reinforcement using advanced visualization techniques

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초록

Slope stability monitoring aims to prevent damage caused by slope failure. Although various methods have been proposed to track overall slope behavior, these approaches often overlook embedded reinforcements that play a critical role in maintaining slope stability. Therefore, this study proposes a method to visualize and monitor the status of embedded reinforcements to enhance current slope stability monitoring practices. To intuitively understand the status of the embedded reinforcement, reinforcement information and measured data were integrated into a Building Information Model (BIM) using Dynamo for visualization. In laboratory-scale slope models subjected to 150 mm/h rainfall, embedded strain gauges captured deformation leading to localized shear failure, validating the proposed method. These strain data were automatically imported into BIM, where color-coded elements highlighted ‘Safe’, ‘Warning’, and ‘Danger’. This proof-of-concept establishes a scalable digital-twin workflow for proactive maintenance and decision-making, enhancing the resilience and sustainability of slope-reinforced infrastructure. Additionally, this approach is expected to enhance the sustainability of various infrastructure structures through disaster prevention, including structural reinforcement and ground reinforcement of roads, bridges, and tunnels over slopes. © 2025 Elsevier B.V.

키워드

BIM-based data visualizationData-driven monitoringDisaster preventionGround reinforcementSlope stability monitoringSLOPELANDSLIDESMODEL
제목
Data-driven monitoring system for ground reinforcement using advanced visualization techniques
저자
Cho, JunhwiRodrigazo, Shanelle AiraKim, ChaehyeonKim, YongseongKim, YongjinYeon, Jaeheum
DOI
10.1016/j.enggeo.2025.108266
발행일
2025-09
유형
Article
저널명
Engineering Geology
356