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Establishment of SATREPS experimental sites in South African gold mines to monitor phenomena associated with earthquake nucleation and rupture

机译:建立南非金矿的SATREPS实验遗址,以监测与地震成核和破裂相关的现象

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Mining-induced earthquakes pose a risk to workers in deep mines, while natural earthquakes pose a risk to everywhere, but especially near plate boundaries. A five year Japanese-South African collaborative project entitled 'Observational studies to mitigate seismic risks in mines' commenced in August 2010. Here we report on the achievements of the first 18 months of the project. Faults at Ezulwini, Moab-Khotsong and Driefontein gold mines considered likely to become seismically active during mining activity were modelled using pre-existing geological information supplemented by cores and camera images from new boreholes. As of 30 January 2012, about 90% of about 70 planned boreholes totalling more than 2 km in length had been drilled at project sites to locate fault zones accurately and to deploy sensors. Acoustic emission sensors, accelerometers, strainmeters, and controlled seismic sources were installed to monitor the deformation of the rock mass, the accumulation of damage during the earthquake preparation phase, and changes in stress produced by the propagation of the rupture front. The suite of sensors has greater sensitivity and dynamic range than those typically used in civil or mining engineering applications, making it possible to record very small changes in stress and strain as well as violent rock mass deformation associated with large seismic events. These data sets will be integrated with measurements of stope closure, strong ground motion in stopes, and seismic data recorded by the mine-wide network.
机译:采矿诱发的地震对矿井的工人带来了风险,而自然地震对各处的风险构成了风险,但特别是靠近板块边界。 2010年8月开始了五年的日本南非协作项目,题为“观测研究,以减轻矿山地震风险”在2010年8月开始。在这里,我们报告了项目前18个月的成就。 ezulwini,Moab-Khotsong和Driefontein金矿的缺陷被认为可能在采矿活动中被建模地进行地震活动,使用来自新钻孔的核和相机图像补充的预先存在的地质信息进行了建模。截至2012年1月30日,在项目网站钻探约70个计划的大约70个计划的钻孔,总计超过2公里,以准确地定位故障区并部署传感器。安装声发射传感器,加速度计,应变仪和受控地震源以监测岩体的变形,地震制备阶段的损坏的积累,以及通过破裂前沿传播产生的应力变化。传感器套件具有比通常用于民用或采矿工程应用的更大的灵敏度和动态范围,使得可以记录压力和应变的变化非常小,以及与大地震事件相关的剧烈岩石质量变形。这些数据集将集​​成在锁定闭合,强大的地面运动的测量中集成,并且由占地网络网络记录的地震数据。

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