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Deep-hole pre-split blasting mechanism and its application for controlled roof caving in shallow depth seams

机译:深孔预裂爆破机理及其在浅层煤层控制放顶中的应用

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The shallow depth coal seams mined in the Shendong Mining Area has led to large area roof weighting frequently due to large thickness, high tensile strength and small overlying load of the main roof. As a result, many accidents have happened including hydraulic support being iron-bound, water inrush through the penetrating cracks along coal wall, and potentially induce large area residual pillars instability and even wind blast damage particularly in the conditions beneath a room mining goaf. To prevent the large area roof weighting accidents, deep-hole pre-split blasting technology for controlled roof caving is a suitable method and has been widely applied in the mines, and many in situ trials have already achieved a sound performance. According to the field conditions of the shallow depth coal seams, this paper employs cylindrical cavity expansion theory to calculate the three blasting-induced divisions including break zone, fracture zone and elastic vibration zone. The software of LS-DYNA3D was applied to establish a deep-hole pre-split blasting model, which presented the rock stress field and the break scope affected by the high energy explosion stress wave. The simulation results revealed the blasting for controlled roof caving mechanism and also optimized the blasting parameters. The field observations showed that, with the application of deep-hole pre-split blasting technology in Shigetai Mine, Shendong Mining Area, the first main roof weighting length was about 17.4 m, and neither a hydraulic support being iron-bound nor a serious roof subsidence in the form of step convergence in the mining face happened during the first weighting period. The field application of deep-hole pre-split blasting for controlled roof caving has achieved the expected effects.
机译:神东矿区开采的浅层煤层由于厚度大,抗拉强度高和主顶板的上覆载荷小而导致大面积顶板加重。结果,发生了许多事故,包括液压支架被铁束缚,通过沿煤壁穿透的裂缝涌入的水,并可能导致大面积残留柱的不稳定性,甚至造成风灾,特别是在采空区的情况下。为防止大面积顶板加重事故的发生,控制顶板冒顶的深孔预裂爆破技术是一种合适的方法,已在矿井中得到广泛应用,许多现场试验已经取得了良好的性能。根据浅层煤层的野外条件,采用圆柱孔扩张理论,计算了爆破破裂区,断裂区和弹性振动区三段。应用LS-DYNA3D软件建立了深孔预裂爆破模型,给出了高应力爆炸应力波影响下的岩石应力场和破坏范围。仿真结果揭示了爆破的可控顶板机理,并优化了爆破参数。现场观察表明,深深预裂爆破技术在神东矿区石台煤矿的应用,其第一主顶重约17.4 m,既无水力支撑铁束缚也无严重顶板。在第一个加权期间,采煤工作面以阶梯收敛的形式沉陷。深孔预裂爆破在控制放顶中的现场应用取得了预期的效果。

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