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Study on the Rheological Failure Mechanism of Weakly Cemented Soft Rock Roadway during the Mining of Close-Distance Coal Seams: A Case Study

机译:近距离煤层采矿过程中弱水泥软岩巷道流变失效机理研究 - 以案例研究

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During the mining of the shallow-buried and close-distance multiple coal seam, the rheological failure of the surrounding weakly cemented soft rock of the roadway in the lower coal seam under the concentrated stress is very rare. However, the stress on the roof of the upper coal seam is transmitted down through the residual pillar, resulting in this situation. Taking the Gaojialiang coal mine which is located in the mining areas of western China as the research object, the failure mechanism of the roadway roof under the residual coal pillar in the shallow-buried and close-distance multiple seam is studied in combination with field monitoring and numerical simulation. Furthermore, suggestions on the roadway support under such geological conditions are proposed. The results show that the residual coal pillar in the working face of the lower coal seam gradually collapses during the mining of the shallow-buried and close-distance multiple coal seam. The concentrated stress transferred by the coal pillar increases further, which makes the roof stress of the lower coal seam roadway to increase continuously. In addition, the stress of the roadway roof also increases further due to the rotation of the broken rock above the goaf, and the peek region of stress moves to the nongoaf area. Combining the heavy concentrated stress and weakly cemented property, the shallow-buried surrounding rock shows rheological behavior and failure. Therefore, we must pay more attention on the creep failure of the roadway roof under the action of the residual coal pillar even in the shallow-buried coal seam.
机译:在浅埋距离多煤层的采矿过程中,浓缩应力下煤层围绕巷道周围弱芯片软岩的流变衰竭非常罕见。然而,上部煤层顶部的应力通过残余支柱传递,导致这种情况。以高嘉良煤矿位于中国西部的矿区,作为研究对象,研究了浅埋距离距离距离多缝的剩余煤柱下的道路屋顶的故障机理与现场监测相结合和数值模拟。此外,提出了在此类地质条件下对道路支持的建议。结果表明,在浅埋距离多煤层的挖掘过程中,下煤层的工作面上的残余煤柱逐渐坍塌。由煤柱传递的浓缩应力进一步增加,这使得下煤层道路的屋顶应力连续增加。此外,由于碎裂上方的破碎岩石的旋转,道路屋顶的应力也进一步增加,并且PEEK应力区域移动到非洲区域。结合重型浓缩应力和弱渗碳性能,浅埋围岩,显示出流变行为和失效。因此,即使在浅埋煤层煤层中,我们必须在距离煤柱的作用下更加关注道路屋顶的蠕变失效。

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