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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:在南非金矿的表格停止前经常观察到密集的地震性。地震性通常由于挖掘引起的高应力集中,并且一些地震事件是故障发生的事件。本研究重点介绍了1996年7月9日在南非2006年7月9日在南非的Mponeng Mine发生的瞬间MW = 1.4地震事件的数值模拟。考虑两个点和非点源模型,分析了沿着拖运隧道的地面运动,深度为2,650米,与现场监测数据进行比较。结果发现,非点源模型在近源场中的点源模型产生更好的结果。拖运隧道和挖掘地区对地面运动有很大影响。在建模结果中,在运输隧道的某些区域和挖出区域的某些区域观察到强大的地面运动定位。大多数模拟地震图都同意现场记录的地震。可以看出,SpecFem3D是一种有用的工具,用于在地下矿山中建模地震波传播。

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