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Numerical analysis of ground motion in a South African mine using SPECFEM3D

机译:用SPECFEM3D南非矿地面运动的数值分析

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Intensive seismicity was often observed in the front of tabular stopes in South African gold mines. The seismicity was usually caused by high stress concentration due to excavation, and some of the seismic events were fault rupture events. This study focuses on numerical modelling of seismic wave propagation resulted from a moment magnitude Mw = 1.4 seismic event occurring on 9 July 1996 at Mponeng mine in South Africa, using an advanced numerical tool called SPECFEM3D. Both point and non-point source models are considered and ground motions along a haulage tunnel at a depth of 2,650 m are analysed and compared with field monitoring data. It is found that the non-point source model produces better results than the point source model in near-source field. The haulage tunnel and the mined-out areas have a large influence on the ground motions. In the modelling results, strong ground motion localisation is observed at certain areas of the haulage tunnel and in the mined-out areas. Most of the simulated seismograms agree with the field recorded ones. It is seen that SPECFEM3D is a useful tool for modelling seismic wave propagation in underground mines.
机译:强化地震往往是在南非的金矿采场表格的正面观察。地震活动物通常是由高应力集中,由于挖掘引起的,一些地震事件是故障破裂事件。本研究着重对地震波传播的数值模拟的起因是矩震级Mw为1996年7月在南非Mponeng矿发生在9 = 1.4的地震事件,采用了先进的数字工具,叫做SPECFEM3D。两个点和非点源模型被认为和沿在2650米的深度一个拖运隧道的地面运动进行分析并与现场监测数据进行比较。研究发现,非点源模型产生比在近源场的点源模型更好的效果。该运输巷道和采空区对地面运动有很大的影响。在建模的结果,强地面运动定位在所述拖运隧道的某些区域,并在采空区观察到。大多数模拟地震的同意与现场录制的。可以看出,SPECFEM3D是在地下矿井模拟地震波传播的有用工具。

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