ISSN 1000-3665 CN 11-2202/P

    崩塌滑坡灾害微动监测与超前报警技术

    Micro-vibration monitoring and pre-warning technology for landslide and rockfall disasters

    • 摘要: 针对崩塌滑坡灾害监测预警中低成本、简便性与可靠性难以兼顾的问题,提出一种基于微机电系统的微动监测与报警技术。以崩塌滑坡灾害前兆的共性“动”特征(位移、倾斜、振动)为感知对象,遵循“灾害源–传播路径–承灾体”的综合感知原则,构建了基于多点异常强度因子的超前预警算法,并研制了具备边缘计算能力的微动监测-报警仪。通过危岩崩塌原位试验与滑坡大型物理模型试验,对整套技术的有效性进行了系统验证。试验结果表明,所研制的监测仪能够有效识别危岩与滑坡失稳前兆信号;报警仪依托边缘计算实现秒级预警判断,显著提升了预警的时效性与准确性。微动监测-报警仪适用于山区“房前屋后”斜坡监测预警,与传统监测预警技术结合,可实现对地质灾害风险的精细化防控。

       

      Abstract: To address the challenge of achieving low cost, simplicity, and reliability in geological disaster monitoring and early warning, this study proposes a micro-vibration monitoring and pre-warning technology based on Micro-Electro-Mechanical System (MEMS) sensors. Focusing on the common “dynamic” precursors of geological disasters, such as displacement, tilt, and vibration, and adhering to the comprehensive sensing principle of “hazard source–transmission path–affected body”, a pre-warning algorithm based on multi-point anomaly intensity factors was developed. Additionally, a micro-vibration monitoring and warning device with edge computing capabilities was designed. The effectiveness of the technology was systematically validated through in-situ tests on unstable rock masses and large-scale physical model experiments of landslides. Experimental results demonstrate that the monitoring device can effectively detect weak precursor signals prior to rockfall and landslide instability. Leveraging its edge computing capability, the warning device achieves pre-warning judgments within seconds, significantly enhancing the timeliness and accuracy of warnings. The micro-vibration monitoring and warning device is suitable for monitoring and pre-warning slopes and embankments in mountainous areas, particularly around residential areas. When integrated with traditional monitoring and warning technologies, it enables refined risk prevention and control of geological disasters.

       

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