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Investigation on the Influence of Abutment Pressure on the Stability of Rock Bolt Reinforced Roof Strata Through Physical and Numerical Modeling

机译:关于邻接压力对岩石螺栓增强屋顶地层稳定性影响的调查

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摘要

In underground coal mining, high abutment loads caused by the extraction of coal can be a major contributor to many rock mechanic issues. In this paper, a large-scale physical modeling of a 2.6 x 2.0 x 1.0 m entry roof has been conducted to investigate the fundamentals of the fracture mechanics of entry roof strata subjected to high abutment loads. Two different types of roof, massive roof and laminated roof, are considered. Rock bolt system has been taken into consideration. A distinct element analyses based on the physical modeling conditions have been performed, and the results are compared with the physical results. The physical and numerical models suggest that under the condition of high abutment loads, the massive roof and the laminated roof fail in a similar pattern which is characterized as vertical tensile fracturing in the middle of the roof and inclined shear fracturing initiated at the roof and rib intersections and propagated deeper into the roof. Both the massive roof and the laminated roof collapse in a shear sliding mode shortly after shear fractures are observed from the roof surface. It is found that shear sliding is a combination of tensile cracking of intact rock and sliding on bedding planes and cross joints. Shear sliding occurs when the abutment load is much less than the compressive strength of roof.
机译:在地下煤矿开采中,由煤炭提取引起的高基台载荷可能是许多岩石机械问题的主要贡献者。在本文中,已经进行了大规模的2.6×2.0×1.0米入口屋顶的大规模物理建模,以研究进入屋顶地层的骨折机制的基本原理。考虑两种不同类型的屋顶,屋顶和层压屋顶。已经考虑了岩石系统。已经进行了基于物理建模条件的不同元素分析,并将结果与​​物理结果进行比较。物理模型表明,在高邻接载荷的条件下,巨大的屋顶和层压屋顶以类似的图案失效,其特征在于在顶部和肋和肋的顶部和倾斜的剪切压裂中间的垂直拉伸压裂。交叉口并在屋顶上深入传播。在从屋顶表面观察到剪切骨折后不久,块状屋顶和层压车顶都在剪切滑动模式下塌陷。发现剪切滑动是完整岩石的拉伸裂纹和滑动在床上用品和交叉接头上的组合。当邻接负载小于屋顶的抗压强度时发生剪切滑动。

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