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Acoustic emission induced by progressive excavation of an underground powerhouse

机译:地下厂房逐步开挖引起的声发射

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摘要

We monitored acoustic emission (AE) events associated with the progressive excavation of an underground chamber for a powerhouse at a depth of 280 m below the surface in a porphyritic rock mass of the Mesozoic era. Large AE events rarely occur under such conditions; specifically, low-stress environments due to the shallow depth, careful excavation, and sufficient reinforcement. However, upon employing sensitive, high-frequency monitoring (15 to 40 kHz) in a relatively small region, some AE events were located and, by using fault-plane solutions, their fracture mechanisms were identified. Strike and dip angles of fracture planes and the directions of principal stresses, all derived from fault-plane solutions, were consistent with the directions of dominant joint surfaces, the measured initial stress conditions, and the shape of nearby excavated openings. This suggests that by employing sensitive, high-frequency AE monitoring, fault-plane solutions can be effectively utilized as a tool to assess the stability of a chamber excavated at shallow depth, as well as in deep mines where fault-plane solutions have already been used in practice to assess and control rockbursts.
机译:我们监测了中生代斑岩质岩体中地下深280 m处与动力室地下室的逐步开挖有关的声发射(AE)事件。在这种情况下,很少发生大型AE事件。具体来说,是由于深度浅,开挖仔细和加固效果好而导致的低应力环境。但是,在相对较小的区域中采用敏感的高频监测(15至40 kHz)时,会定位到一些AE事件,并通过使用断层平面解决方案来确定其破裂机制。断裂平面的走向和倾角以及主应力的方向,均来自断层平面解,与主关节面的方向,测得的初始应力条件以及附近开挖孔的形状一致。这表明通过采用灵敏的高频AE监测,可以将断层平面解决方案有效地用作评估在浅深度开挖的暗室以及已经采用断层平面解决方案的深层矿山中稳定性的工具。在实践中用于评估和控制岩爆。

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