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Numerical simulation of rock mass deformation and movement by mining under building and road

机译:建筑物和道路下采矿引起的岩体变形和运动的数值模拟

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There is a temporary ore bin and road to pass through the northern mining area above No.1 orebody cluster in the Songjiapo copper mine. The surface deformation and strata movement caused by underground mining will threaten the safety of ore bin and road transportation. Field investigation and laboratory experiments were carried out. Using numerical simulation method, the rules of ground pressure activity and mechanism of strata deformation movement were analyzed by different mining methods. Moreover, the corresponding control measures were put forward. Two new methods of reserving vertical ore pillar and controlling the span of mined-out area were proposed to preserve the stability of surface ore bin and road. The results show that the stress concentration and the displacement of the overlying strata can be effectively reduced by controlling the span of mined-out area. The optimal first mining area was recommended. The results can provide the theoretical basis for the actual mining design and strata control.
机译:在宋家坡铜矿的一号矿体群上方有一条临时的矿仓和一条道路穿过北部矿区。地下开采引起的地表变形和地层运动将威胁到矿仓和道路运输的安全。进行了现场调查和实验室实验。采用数值模拟的方法,通过不同的开采方法,分析了地压活动规律和地层变形运动机理。并提出了相应的控制措施。提出了两种保留竖立矿柱和控制采空区跨度的新方法,以保持地表矿仓和道路的稳定性。结果表明,通过控制采空区的跨度,可以有效降低上覆地层的应力集中和位移。推荐了最佳的第一矿区。研究结果可为实际的采矿设计和地层控制提供理论依据。

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