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Seismic Moment Tensor Resolution on a Local Scale: Simulated Rockburst and Mine-induced Seismic Events in the Kopanang Gold Mine, South Africa

机译:局部地震矩张量的分辨率:南非Kopanang金矿的模拟岩爆和矿山诱发的地震事件

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Seismic records contain information about the effect of the source as well as the effect of wave propagation through the rock mass. The effect of wave propagation is usually not well known as only simplified models of geological structures are available. Therefore, the information about the source retrieved by inverting seismograms may include errors due to incomplete knowledge of the rock mass along the propagation path, which in turn cause a distortion in the calculated moment tensor (MT). The distortion of the MT on a local scale was observed by inverting records of a simulated rockburst conducted at the Kopanang gold mine in South Africa. A dominant isotropic component of the explosive characteristics was found from the inversion. The deviatoric components retrieved from the blast are spurious. A test of their stability indicated that they are not significant, assuming an uncertainty above 5% for velocities and 10% for attenuation within the homogeneous model available for the mine. Thus, the retrieval of the MT from records of local networks in mines using a homogeneous model of the rock mass seems to be feasible. However, the homogeneous model of the rock mass can only be applied to close stations, within a few kilometers of the source. The seismic records from distant stations were too complex to be modelled by a homogeneous rock mass. Records of six mine-induced seismic events recorded at the Kopanang gold mine were also inverted. A vertical linear dipole along the pressure (P) axis was found for three of the events, suggesting a pillar burst. The mechanism of two events contains an isotropic implosion together with a nearly vertical dip-slip, and seems to indicate a combination of a cavity collapse with a down dip-slip along a nearly vertical fault. One event corresponds to a dipole along the tensional (T) axis. However, it is vertical, thus its association with tensile faulting of the hangingwall is uncertain.
机译:地震记录包含有关震源影响以及波传播通过岩体的影响的信息。波浪传播的影响通常不是众所周知的,因为只有简化的地质结构模型可用。因此,通过反演地震图获得的有关震源的信息可能包括由于沿传播路径的岩石质量知识不全而导致的误差,进而导致计算出的矩张量(MT)发生变形。通过倒转在南非Kopanang金矿进行的模拟岩爆记录,可以观察到MT在局部范围内的变形。从反演中发现了爆炸特性的主要各向同性成分。从爆炸中获取的偏斜分量是虚假的。对其稳定性进行的测试表明,它们并不重要,假设在矿场可用的均匀模型中,速度的不确定性高于5%,衰减的不确定性高于10%。因此,使用岩体的均质模型从矿山的本地网络记录中检索MT似乎是可行的。但是,岩体的均质模型只能应用于距震源几公里以内的封闭站。来自遥远站点的地震记录太复杂,无法用均质岩体进行建模。 Kopanang金矿记录的六次地雷引发的地震事件的记录也被颠倒了。在其中的三个事件中,沿着压力(P)轴找到了一个垂直的线性偶极子,表明有一个支柱爆炸。这两个事件的机理包括各向同性内爆和近乎垂直的倾滑,并且似乎表明了沿近乎垂直断层的腔体塌陷与倾角下降的组合。一个事件对应于沿张紧(T)轴的偶极子。然而,它是垂直的,因此它与吊壁的拉伸断裂的关联尚不确定。

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