励磁涌流
岩土工程
渗透压
水压
地质学
环境科学
工程类
化学
电气工程
生物化学
变压器
电压
作者
J.G. Wang,Zhibo Ma,Yiran Cong,Sheng‐Qi Yang
标识
DOI:10.1016/j.rineng.2025.105547
摘要
To deeply study the instability and water inrush catastrophe law of a tunnel floor under osmotic water pressure, a self-designed tunnel water inrush test system was used to conduct similar simulation experiments of tunnel floor sudden water under osmotic water pressure. It fills the gap in large model three-dimensional similar simulation water inrush experiment. Through the monitoring of multiple physical information during the experimental process, the distribution of AE results in space and time was obtained, and the fracture sources were further categorized by the AF-RA values of the AE data. We predicted the failure time of tunnel floor destabilizing water inrush based on the critical power-law singularity (CPLS) precursor with acoustic emission event rate and tunnel floor water pressure as response variables, the discrete coefficients of the prediction result were 1.098 % and 0.6523 % respectively. It is proved that this prediction method has a small degree of dispersion and high accuracy. The research results provide theoretical reference and experimental guidance for the prediction and prevention of water inrush disasters on tunnel floors.
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