冯龙飞, 窦林名, 武光辉, 王正义, 康凯, 焦彪. 厚煤层巷道冲击矿压的强矿震诱发机制与防治[J]. 煤矿安全, 2017, 48(8): 190-193.
    引用本文: 冯龙飞, 窦林名, 武光辉, 王正义, 康凯, 焦彪. 厚煤层巷道冲击矿压的强矿震诱发机制与防治[J]. 煤矿安全, 2017, 48(8): 190-193.
    FENG Longfei, DOU Linming, WU Guanghui, WANG Zhengyi, KANG Kai, JIAO Biao. Mechanism and Prevention of Rock Burst Induced by Strong Mine Earthquake in Thick Coal Seam[J]. Safety in Coal Mines, 2017, 48(8): 190-193.
    Citation: FENG Longfei, DOU Linming, WU Guanghui, WANG Zhengyi, KANG Kai, JIAO Biao. Mechanism and Prevention of Rock Burst Induced by Strong Mine Earthquake in Thick Coal Seam[J]. Safety in Coal Mines, 2017, 48(8): 190-193.

    厚煤层巷道冲击矿压的强矿震诱发机制与防治

    Mechanism and Prevention of Rock Burst Induced by Strong Mine Earthquake in Thick Coal Seam

    • 摘要: 针对厚煤层大巷强矿震诱冲实例,通过建立底板梁动静载力学模型,结合数值模拟及微震监测等进行研究,得出结论:动载主导型底板冲击分为拉应力破坏和挠曲变形破坏,其中震动加速度引起的惯性力的大小决定底板梁是否破坏及其破坏类型;对于同一底板深度的质点,距震源水平距离越近,越大,底板梁越容易冲击破坏,距震源水平距离相同的质点,深度越小,越大。模拟结果对比证实了理论分析的科学性,并指导制订了卸压解危措施,取得了良好的防治效果。

       

      Abstract: Aiming at the example of strong earthquake inducing burst in thick coal mine roadway, the dynamic and static loading model of floor beam is established, and numerical simulation and micro-seismic monitoring are carried out. The results show that dynamic load leading floor impact is divided into tensile stress damage and flexural deformation and failure, and the magnitude of inertial force caused by vibration acceleration determines whether the floor beam is damaged or not and the destroyed types. The particle of the same depth has the same distance from the source level, and the bigger the distance, the easier it is to impact and destroy; the particle of the same distance from the horizontal level, the smaller the depth, the greater the inertial force. The comparison of numerical simulation results confirms the scientific nature of the theoretical analysis, and guides the development of pressure relief measures to achieve good control effect.

       

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