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Imaging and monitoring tailings dam walls with ambient seismic noise

机译:具有环境地震噪声的成像和监测尾矿坝墙

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Tailings dams are massive structures that are designed to contain the waste slurry remaining after processing ore at open pit and underground mines. These structures fail far more regularly than normal water storage dams, and in recent years catastrophic tailings dam failures have occurred, causing significant damage to the environment and even loss of life. To mitigate these catastrophic events in the future, there is an urgent need to develop cost-effective methods to monitor the structural stability of these constructions over time. The lack of current cost-effective subsurface imaging and monitoring methods prompted us to investigate whether ambient seismic noise can be used to image and detect internal changes in a tailings dam wall during a period of heavy rainfall. We recorded three weeks of continuous seismic data with 10 short-period geophones at a tailings dam in Tasmania, Australia. Seismic interferometry was used on ambient noise to create virtual seismic sources. With these virtual source signals, small changes in seismic velocity were measured daily and compared to rainfall, seepage flow rates and fluid pore pressure. The observed velocity changes were driven by fluid saturation, groundwater level, increased loading from increased dam water level and a sudden increase in fluid pore pressure in a section of the dam wall. A further experiment was performed at a tailings dam in South Africa, where ambient noise surface wave tomography was used to image an area where seepage was identified. The results suggest that these relatively inexpensive methods can be used to monitor and locate small changes in the interior of tailings dam walls, providing a valuable tool for remotely monitoring the structural stability of tailings dam walls over time.
机译:尾矿坝是巨大的结构,设计用于在露天坑和地下矿井加工矿石后剩余的废浆。这些结构比普通储水坝更加定期失败,近年来发生了灾难性的尾矿大坝故障,对环境造成重大损害,甚至失去了生命。为了减轻未来这些灾难性事件,迫切需要开发成本有效的方法来监测这些结构的结构稳定性随着时间的推移。缺乏当前的成本效益地下成像和监测方法促使我们调查环境因素噪声是否可用于在大雨期间尾矿坝壁的图像和检测内部变化。我们在澳大利亚塔斯马尼亚州的尾矿坝中录制了三个星期的连续地震数据。地震干涉测量用于环境噪声以产生虚拟地震源。利用这些虚拟源信号,每天测量地震速度的小变化,与降雨,渗流流速和流体孔隙压力相比。观察到的速度变化是通过流体饱和,地下水位,从增加的坝水位增加的载荷和坝壁的一部分中的流体孔隙压力突然增加而导致的速度变化。在南非的尾矿坝上进行了进一步的实验,其中环境噪声表面波断层扫描用于图像识别出渗出的区域。结果表明,这些相对廉价的方法可用于监测和定位尾矿坝墙内部的小变化,提供了一种有价值的工具,用于远程监控尾矿坝壁的结构稳定性随着时间的推移。

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