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Modelling of an Integrated Waste Storage Facility

机译:综合废物储存设施建模

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The complexities of mining in current economic conditions, where ore extraction schedules are varied on a weekly basis so as to ensure constant supply to the process plant, can result in a number of scenarios that pose geotechnical challenges. This paper presents a case study where alterations in the mining schedule of a particular mine resulted in the necessity to mine under a large uncompacted embankment, ie integrated tailings and mine waste landform. To effectively ensure that ore recovery was maximised, a well-designed slope monitoring system to evaluate design performance and to provide timely warning of impending failures was imperative. In order for an appropriate slope monitoring strategy to be developed, a thorough understanding of the potential slope failure mechanisms, capabilities and limitations of available monitoring techniques is required. Communication of the monitoring results and response strategy to alarms generated by monitoring systems must also be carefully considered to maximise effectiveness. The results of preliminary stability modelling can be used to guide the design of a monitoring system, which in turn can then generate data which can be used to iteratively refine the geotechnical model. This paper illustrates the development and implementation of a slope monitoring system and associated communication system, using a case study developed at a large iron ore open pit mine in the Pilbara region of Western Australia.
机译:在当前经济条件下采矿的复杂性,其中矿石提取时间根据每周多种多样,以确保对过程工厂的持续供应,可能导致一些造成岩土科挑战的情景。本文提出了一个案例研究,特定矿井采矿时间表的变更导致我的大型未拆分路堤下的矿井,即综合尾矿和矿井废物地貌。为了有效确保矿石恢复最大化,设计精心设计的坡度监测系统,以评估设计性能并提供即将发生的失败的及时警告。为了使开发适当的坡度监测策略,需要对潜在的斜坡故障机制,能力和可用监测技术的限制进行全面了解。还必须仔细地考虑监测系统产生的监测结果和响应策略对监测系统产生的报警,以最大限度地提高有效性。初步稳定性建模的结果可用于指导监控系统的设计,然后可以生成可用于迭代地改进岩土模型的数据。本文说明了使用在西澳大利亚Pilbara地区的大型铁矿石露天矿开发的案例研究的坡度监测系统和相关通信系统的开发和实施。

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