煤矿地下水库下压煤层开采中层间岩体裂隙网络的拓扑演化分析

Underground reservoirs-belowed coal mining-induced topological evolution of fracture networks in rock interlayer

  • 摘要: 在地下水库下压煤层开采过程中,层间岩体受到开采扰动影响发生变形破坏,其裂隙的扩展贯通威胁到地下水库的安全。文中以神华大柳塔煤矿大柳塔井2-2与5-2煤层工作面为原型,开展物理相似模拟试验,分析下压煤层开采过程中层间岩体的应力与裂隙演化规律。通过将裂隙划分为迹线和段线,分析开采过程中裂隙拓扑几何特征的演化过程。基于裂隙平均连接数绘制裂隙三相图定量评价裂隙连通性。结果表明,随着下压煤层开采工作面的推进,层间岩体经历非线性增压、突降卸压和应力波动3个阶段,层间岩体裂隙在产生后持续张开,达到最大值后转而趋于闭合。随着开采推进,迹线、段线及节点数均呈增大趋势,其中最长迹线通常是水平离层裂隙。在裂隙演化过程中,裂隙网络主要以连通簇的形式向外蔓延,且其空间分布具有延续性。研究成果可为煤矿地下水库下压煤层开采的安全距离计算,以及层间岩体安全性评价提供依据与参考。

     

    Abstract: During the mining of lower coal seams beneath underground reservoirs, the interlayer rock mass undergoes deformation and failure due to mining-induced disturbances. Crack propagation and interconnection pose significant threat to reservoir safety. Taking the working faces of 2-2 and 5-2 coal seams in Shenhua Daliuta Mine as prototypes, this study conducted physical similarity simulation experiments to analyze stress and crack evolution patterns in interlayer rock masses during lower seam extraction. We classified fractures into trace lines and segment lines to investigate the evolution of their topological and geometric characteristics. A three-phase diagram of fractures was established based on average connection numbers to quantitatively evaluate connectivity. Results indicate that as mining advanced, the interlayer rock mass experienced a nonlinear increase in pressure, followed by sudden pressure relief and stress fluctuations. Cracks continued to expand until reaching a maximum aperture before closing. The number of nodes in trace lines and segment lines increased with mining advancement, with the longest trace line typically being a horizontal bedding separation fracture. During evolution, fracture networks predominantly propagated as connected clusters while maintaining spatial continuity. This study provides a method for calculating the safety distance of coal seam mining beneath underground reservoirs and evaluating the safety of interlayer rock masses in coal mines.

     

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