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Numerical Simulation of Fluid-Solid Coupling in Surrounding Rock for River Stope Mining

机译:河流矿井周围岩石流体固体耦合的数值模拟

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Mining disturbance will induce further weakening of faults and rock bridges, improve rock mass permeability and, in serious cases, conduct surface rivers to cause disasters. A numerical calculation model of river-fault in the mining area is established. Based on the fluid-solid coupling theory of rock mass, the influence of mining disturbance on the development and evolution process of rock bridge rupture and river-fault-stope potential seepage channel is simulated and calculated. Research studies show that under the disturbance of ore body mining, it is possible to form a channel from the river to fault to seepage and drainage in the stope. The disturbance of ore body mining has no great adverse effect on the stability of the rock mass at the top of F2 fault. The rock mass damage caused by mining is only distributed in local areas, and the rock bridge between the river, fault, and stope is not completely connected. The fracture of mining rock mass leads to the increase in permeability of rock mass, and seepage tends to spread in the direction of the fault, but there is no obvious through drainage channel from surface water to the stope. The results of research provide technical guidance for the mine to use the filling mining method after the river does not change the road safety and reliability certification and can also provide reference for similar mines.
机译:采矿干扰将诱导断层和岩石桥梁的进一步削弱,提高岩石质量渗透性,在严重的情况下,开展灾害造成灾害。建立了矿区河流故障的数值计算模型。基于岩体的流体固体耦合理论,模拟和计算了采矿干扰对岩桥破裂和河流故障潜在渗流通道的影响和演化过程的影响。研究表明,在矿体挖掘的干扰下,可以从河流中形成一个渠道,以避免渗流和排水。矿体挖掘的干扰对F2故障顶部岩石质量的稳定性没有大的不利影响。采矿引起的岩石质量损坏仅在局部区域分发,河流,故障和术之间的岩石桥并不完全连接。采矿岩体的骨折导致岩体渗透性的增加,渗漏趋于在故障方向上传播,但通过从地表水到迹象的排水通道没有明显。研究结果为矿井提供了技术指导,在河流不改变道路安全和可靠性认证后,可以使用填充采矿方法,也可以为类似地雷提供参考。

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