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Research on Deformation Characteristics and Control Technology of Soft Rock Roadway under Dynamic Disturbance

机译:动态干扰下软岩巷道变形特征及控制技术研究

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In the mining process of an underground coal mine, the dynamic load often causes great damage to the roadway and affects the normal mining of coal mine. In this paper, the deformation of surrounding rocks under static load and different disturbance intensities is studied by numerical simulation. The results show that under the same static load condition, the greater the dynamic load strength is, the more obvious the roadway roof displacement subsidence is. With the increase in dynamic load propagation distance, the amplitude of the dynamic load waveform decreases gradually. Under the same disturbance load intensity, the variation of roadway displacement with different disturbance load frequencies is studied. According to the influence of dynamic load on the deformation of the roadway, a combined support plan of shotcrete anchor net and reinforcement anchor cable is proposed. Finally, the rationality of the optimized support scheme is verified by numerical simulation and field results. The results show that the combined support scheme can effectively increase the strength of the broken soft rock and reduce the deformation of the surrounding rock. At the same time, it releases the expansion energy generated by the mutual compression and deformation of the rock layers, effectively maintaining the long-term stability of the roadway.
机译:在地下煤矿的采矿过程中,动态载荷常常对道路造成巨大损害,影响煤矿的正常采矿。本文通过数值模拟研究了静载荷下围岩和不同干扰强度的变形。结果表明,在相同的静电负载条件下,动态负载强度越大,道路屋顶位移沉降越明显。随着动态负荷传播距离的增加,动态负载波形的幅度逐渐减小。在相同的干扰负荷强度下,研究了具有不同干扰负载频率的道路位移的变化。根据动态载荷对道路变形的影响,提出了喷射锚固网和加强锚电缆的组合支撑方案。最后,通过数值模拟和现场结果验证了优化支持方案的合理性。结果表明,合并的支撑方案可以有效地提高破碎的软岩的强度,减少周围岩石的变形。同时,它释放出通过岩层的相互压缩和变形产生的扩展能量,有效地保持道路的长期稳定性。

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