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首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >Analysis of Precursors Prior to Rock Burst in Granite Tunnel Using Acoustic Emission and Far Infrared Monitoring
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Analysis of Precursors Prior to Rock Burst in Granite Tunnel Using Acoustic Emission and Far Infrared Monitoring

机译:声发射和远红外监测分析花岗岩隧道岩爆前体

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To understand the physical mechanism of the anomalous behaviors observed prior to rock burst, the acoustic emission (AE) and far infrared (FIR) techniques were applied to monitor the progressive failure of a rock tunnel model subjected to biaxial stresses. Images of fracturing process, temperature changes of the tunnel, and spatiotemporal serials of acoustic emission were simultaneously recorded during deformation of the model. Theb-value derived from the amplitude distribution data of AE was calculated to predict the tunnel rock burst. The results showed that the vertical stress enhanced the stability of the tunnel, and the tunnels with higher confining pressure demonstrated a more abrupt and strong rock burst. Abnormal temperature changes around the wall were observed prior to the rock burst of the tunnel. Analysis of the AE events showed that a sudden drop and then a quiet period could be considered as the precursors to forecast the rock burst hazard. Statistical analysis indicated that rock fragment spalling occurred earlier than the abnormal temperature changes, and the abnormal temperature occurred earlier than the descent of the AEb-value. The analysis indicated that the temperature changes were more sensitive than the AEb-value changes to predict the tunnel rock bursts.
机译:为了了解在岩石破裂之前观察到的异常行为的物理机制,声发射(AE)和远红外(FIR)技术被应用于监视受双轴应力作用的岩石隧道模型的渐进破坏。在模型变形期间,同时记录了压裂过程,隧道温度变化以及声发射的时空序列的图像。计算从声发射的振幅分布数据得出的b值,以预测隧道岩爆。结果表明,竖向应力提高了隧道的稳定性,围压较高的隧道突岩冲击力更大。在隧道发生岩石破裂之前,已观察到墙体周围温度异常变化。对声发射事件的分析表明,突然下降然后处于平静期可以被视为预测岩爆危险的先兆。统计分析表明,岩石碎片剥落的发生时间早于异常温度的变化,异常温度发生的时间早于AEb值的下降。分析表明,温度变化比AEb值变化更为敏感,可以预测隧道的岩石破裂。

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