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A case study of multi-seam coal mine entry stability analysis with strength reduction method

机译:强度折减法的多煤层煤巷巷道稳定性分析实例

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摘要

In this paper, the advantage of using numerical models with the strength reduction method (SRM) to evaluate entry stability in complex multiple-seam conditions is demonstrated. A coal mine under variable topography from the Central Appalachian region is used as a case study. At this mine, unexpected roof conditions were encountered during development below previously mined panels. Stress mapping and observation of ground conditions were used to quantify the success of entry support systems in three room-and-pillar panels. Numerical model analyses were initially conducted to estimate the stresses induced by the multiple-seam mining at the locations of the affected entries. The SRM was used to quantify the stability factor of the supported roof of the entries at selected locations. The SRM-calculated stability factors were compared with observations made during the site visits, and the results demonstrate that the SRM adequately identifies the unexpected roof conditions in this complex case. It is concluded that the SRM can be used to effectively evaluate the likely success of roof supports and the stability condition of entries in coal mines.
机译:在本文中,展示了使用带有强度折减法(SRM)的数值模型来评估复杂多接缝条件下进入稳定性的优势。以阿巴拉契亚中部地区地形变化的煤矿为例。在该矿山中,开发过程中在先前开采的面板下方遇到了意外的屋顶条件。应力分布图和地面状况的观察被用来量化三个房间和支柱面板中进入支持系统的成功。最初进行了数值模型分析,以估计由多煤层开采在受影响入口位置引起的应力。 SRM用于量化选定位置入口支撑屋顶的稳定系数。将SRM计算的稳定性因子与实地考察期间的观察结果进行比较,结果表明SRM在这种复杂的情况下可以充分识别出意外的屋顶状况。结论是,SRM可以有效地评估顶板支护的成功可能性和煤矿巷道的稳定性条件。

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