张广辉, 邓志刚, 蒋军军, 安雨佳. KJ768微震监测系统在高瓦斯矿井强矿压灾害预警中的应用[J]. 煤矿安全, 2020, 51(9): 144-147.
    引用本文: 张广辉, 邓志刚, 蒋军军, 安雨佳. KJ768微震监测系统在高瓦斯矿井强矿压灾害预警中的应用[J]. 煤矿安全, 2020, 51(9): 144-147.
    ZHANG Guanghui, DENG Zhigang, JIANG Junjun, AN Yujia. Application of KJ768 Micro-seismic Monitoring System in Early Warning of Strong Mine Pressure Disaster in High Gassy Mines[J]. Safety in Coal Mines, 2020, 51(9): 144-147.
    Citation: ZHANG Guanghui, DENG Zhigang, JIANG Junjun, AN Yujia. Application of KJ768 Micro-seismic Monitoring System in Early Warning of Strong Mine Pressure Disaster in High Gassy Mines[J]. Safety in Coal Mines, 2020, 51(9): 144-147.

    KJ768微震监测系统在高瓦斯矿井强矿压灾害预警中的应用

    Application of KJ768 Micro-seismic Monitoring System in Early Warning of Strong Mine Pressure Disaster in High Gassy Mines

    • 摘要: 针对晋煤集团某矿埋深大、高瓦斯和硬顶板煤层开采过程中强矿压灾害,利用KJ768微震监测系统探究高瓦斯矿井强矿压预警的可行性。研究表明:KJ768微震监测系统能够在工作面走向和煤岩层垂向上实现顶板局部破裂的精确定位;通过分析微震频次与工作面推进速度的关系可得出该系统对影响覆岩结构稳定因素变化的敏感性较好;利用每日最大微震事件能量值Emax、每日微震事件总能量∑E24和能量异常系数K划定了强矿压预警阀值,并通过现场强矿压显现的校验,表明KJ768微震监测系统能够有效地对现场强矿压现象进行预测。

       

      Abstract: In view of the disasters of strong rock pressure in the process of deep mining, high gas and hard roof coal seam in a mine of Jincheng Coal Group, the feasibility of early warning of strong rock pressure is explored by using KJ768 micro-seismic monitoring system. Research shows: KJ768 micro-seismic monitoring system can accurately locate the local roof rupture in the strike of working face and the vertical direction of coal seam. By analyzing the relationship between micro-seismic frequency and the advancing speed of working face, it can be concluded that the system is sensitive to the change of factors affecting the stability of overburden structure. The early warning threshold of strong rock pressure is delineated by using Emax, total energy∑E24 and energy anomaly K of daily maximum micro-seismic events. The verification of strong rock pressure shows that KJ768 micro-seismic monitoring system can effectively predict the phenomena of strong rock pressure in the field.

       

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