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High-frequency hydroacoustic monitoring in an underground iron mine

机译:地下铁矿的高频水声监测

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The monitoring of the stability of old mines constitutes an important research objective for our institution, BRGM. The study reported here shows the contribution of high-frequency (> 30 kHz) acoustic emissions to the detection of the damage within a rock mass, during an experiment within a pilot site of an old flooded iron mine. The experiment consisted of recording all the hydroacoustic events in a broad frequency band (between 30 Hz and 180 kHz), during 18 months. The monitoring network has been calibrated by a triggered block fall that made it possible to highlight a relationship between the occurrence of high-frequency/low-frequency hydroacoustic emissions and rock falls. The events recorded have been associated with the micro-failure of the rock mass near the roof, prior to the detachment of the blocks. This monitoring showed important high-frequency hydroacoustic activity, which may be associated with mechanical instabilities generated by the evolution of water pressure during the experiment. In conclusion, the high-frequency hydroacoustic activity appears to be a good indicator of instability and, therefore, this new technique constitutes a promising tool for monitoring abandoned underground cavities.
机译:监测旧矿山的稳定性是我们机构BRGM的重要研究目标。此处报告的研究表明,在一个老的淹没铁矿的试验场进行的一项实验中,高频声发射(> 30 kHz)对岩体内部损伤的检测有贡献。实验包括在18个月内记录宽频带(30 Hz至180 kHz)中的所有水声事件。监控网络已通过触发的跌倒进行了校准,从而可以突出显示高频/低频水声发射的发生与跌落之间的关系。记录的事件与块体分离前屋顶附近岩体的微破坏有关。这种监测显示出重要的高频水声活动,这可能与实验过程中水压的演变所产生的机械不稳定性有关。总之,高频水声活动似乎是不稳定的良好指标,因此,这项新技术构成了监测废弃地下洞室的有前途的工具。

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