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Surrounding Rock Movement of Steeply Dipping Coal Seam Using Backfill Mining

机译:使用回填采矿陡峭浸煤缝的周围岩石运动

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The movement of the overlying strata in steeply dipping coal seams is complex, and the deformation of roof rock beam is obvious. In general, the backfill mining method can improve the stability of the surrounding rock effectively. In this study, the 645 working face of the tested mine is used as a prototype to establish the mechanical model of the inclined roof beam using the sloping flexible shield support backfilling method in a steeply dipping coal seam, and the deflection equation is derived to obtain the roof damage structure and the maximum deflection position of the roof beam. Finally, numerical simulation and physical similarity simulation experiments are carried out to study the stability of the surrounding rock structure under backfilling mining in steeply dipping coal seams. The results show the following: (1) With the support of the gangue filling body, the inclined roof beam has smaller roof subsidence, and the maximum deflection position moves to the upper part of working face. (2) With the increase of the stope height, the stress and displacement field of the surrounding rock using the backfilling method show an asymmetrical distribution, the movement, deformation, and failure increase slowly, and the increase of the strain is relatively stable. Compared with the caving method, the range and degree of the surrounding rock disturbed by the mining stress are lower. The results of numerical simulation and physical similarity simulation experiment are generally consistent with the theoretically derived results. Overall, this study can provide theoretical basis for the safe and efficient production of steeply dipping coal seams.
机译:覆盖层在陡峭的浸渍煤层中的运动复杂,屋顶岩梁的变形是显而易见的。通常,回填采矿方法可以有效地提高周围岩石的稳定性。在该研究中,测试矿井的645个工作面用作建立倾斜柔性屏蔽支撑回填方法在陡峭浸渍煤层中建立倾斜屋顶束的机械模型,并导出偏转方程以获得屋顶损伤结构及屋顶梁的最大偏转位置。最后,进行了数值模拟和物理相似性仿真实验,以研究陡峭浸煤接缝在回填采矿下周围岩石结构的稳定性。结果表明以下:(1)随着钻石填充体的支撑,倾斜的屋顶梁具有较小的屋顶沉降,并且最大偏转位置移动到工作面的上部。 (2)随着突起高度的增加,使用回填方法的周围岩石的应力和位移场显示出不对称分布,运动,变形和失效缓慢增加,并且应变的增加相对稳定。与塌陷方法相比,采矿应力干扰的周围岩石的范围和程度较低。数值模拟和物理相似性模拟实验的结果通常与理论衍生的结果一致。总体而言,该研究可以为安全有效地生产陡峭浸渍煤层提供理论依据。

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