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Numerical Analysis of Roadway Rock-Burst Hazard Under Superposed Dynamic and Static Loads

机译:动静载荷叠加作用下巷道岩爆危险数值分析

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Microseismic events commonly occur during the excavation of long wall panels and often cause rock-burst accidents when the roadway is influenced by dynamic loads. In this paper, the Fast Lagrangian Analysis of Continua in 3-Dimensions (FLAC3D) software is used to study the deformation and rock-burst potential of roadways under different dynamic and static loads. The results show that the larger the dynamic load is, the greater the increase in the deformation of the roadway under the same static loading conditions. A roadway under a high static load is more susceptible to deformation and instability when affected by dynamic loads. Under different static loading conditions, the dynamic responses of the roadway abutment stress distribution are different. When the roadway is shallow buried and the dynamic load is small, the stress and elastic energy density of the coal body in the area of the peak abutment stress after the dynamic load are greater than the static calculations. The dynamic load provides energy storage for the coal body in the area of the peak abutment stress. When the roadway is deep, a small dynamic load can still cause the stress in the coal body and the elastic energy density to decrease in the area of the peak abutment stress, and a rock-burst is more likely to occur in a deep mine roadway with a combination of a high static load and a weak dynamic load. When the dynamic load is large, the peak abutment stress decreases greatly after the dynamic loading, and under the same dynamic loading conditions, the greater the depth the roadway is, the greater the elastic energy released by the dynamic load. Control measures are discussed for different dynamic and static load sources of rock-burst accidents. The results provide a reference for the control of rock-burst disasters under dynamic loads.
机译:微地震事件通常发生在长壁板的开挖过程中,当巷道受到动态载荷的影响时,经常会引起岩爆事故。在本文中,使用三维快速连续性拉格朗日分析(FLAC3D)软件来研究不同动,静载荷作用下巷道的变形和岩爆潜力。结果表明,动静载荷越大,在相同静载荷条件下巷道变形的增加越大。高静载荷下的巷道在受到动态载荷影响时更容易变形和不稳定。在不同的静态载荷条件下,巷道桥台应力分布的动态响应是不同的。当巷道埋藏较浅且动荷载较小时,动荷载后的顶基应力峰值区域的煤体应力和弹性能密度大于静力计算值。动载荷为煤体在峰值邻接应力区域内提供能量存储。当巷道较深时,较小的动载荷仍会导致煤体中的应力和弹性能量密度在峰值邻接应力区域内减小,并且在较深的矿井巷道中更可能发生岩爆。高静态负载和弱动态负载的组合。当动载荷较大时,动载荷作用后,峰值支座应力大大降低,在相同动载荷条件下,巷道深度越大,动载荷释放的弹性能越大。讨论了岩爆事故不同动,静载荷源的控制措施。研究结果可为控制动荷载下的岩爆灾害提供参考。

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