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Pattern Recognition of Signals for the Fault-Slip Type of Rock Burst in Coal Mines

机译:煤矿井下滑移型岩爆信号的模式识别

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The fault-slip type of rock burst is a major threat to the safety of coal mining, and effectively recognizing its signals patterns is the foundation for the early warning and prevention. At first, a mechanical model of the fault-slip was established and the mechanism of the rock burst induced by the fault-slip was revealed. Then, the patterns of the electromagnetic radiation, acoustic emission (AE), and microseismic signals in the fault-slip type of rock burst were proposed, in that before the rock burst occurs, the electromagnetic radiation intensity near the sliding surface increases rapidly, the AE energy rises exponentially, and the energy released by microseismic events experiences at least one peak and is close to the next peak. At last, in situ investigations were performed at number 1412 coal face in the Huafeng Mine, China. Results showed that the signals patterns proposed are in good agreement with the process of the fault-slip type of rock burst. The pattern recognition can provide a basis for the early warning and the implementation of relief measures of the fault-slip type of rock burst.
机译:断层滑动型岩爆是煤矿安全的重大威胁,有效识别其信号形态是预警和预防的基础。首先建立了断层滑动的力学模型,揭示了断层引起的岩爆机理。然后,提出了断层滑动型岩爆的电磁辐射,声发射(AE)和微地震信号的模式,因为在岩爆发生之前,滑动面附近的电磁辐射强度迅速增加, AE能量呈指数增长,并且微地震事件释放的能量至少经历一个峰值,并接近下一个峰值。最后,在中国华丰煤矿的1412号工作面进行了现场调查。结果表明,所提出的信号模式与断层滑动型岩爆的过程非常吻合。模式识别可以为岩爆断层型的预警和采取减灾措施提供依据。

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