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Satellite bathymetry for the monitoring of supernatant water volumes within tailings storage facilities

机译:用于监测尾矿储存设施内上清液水量的卫星浴

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The availability of water plays a fundamental role in the operational continuity associated with mineral and metal extraction operations. As part of this process, it is necessary to recover as much water as possible for reuse and reduce make-up water requirements while trying to maintain a reduced impact on the surrounding environment and natural resources. Specifically related to tailings disposal, the past few decades have seen a shift towards high-density tailings with advances in thickening and filtering technologies, thus improving the water recovery and reducing the volumes of water deposited within a tailings storage facility. However, the vast majority of tailings facilities worldwide still generate a supernatant pond as the tailings naturally consolidate and bleed. These ponds need to be controlled in their size and volume, particularly in larger throughput operations. In some countries, it is a requirement to report volume to the authorities on a routine basis. This paper presents a study to monitor the growth of supernatant ponds in tailings facilities using remote sensing techniques. Principally, this relates to a multispectral analysis of satellite bands which, by means of various corrections and applications of combinations of these bands through mathematical algorithms, the depths of relatively shallow supernatant ponds can be determined reasonably accurately. The importance of the study is to provide an alternative to current in situ monitoring techniques, such as sonar instrumentation, which is limited to a minimum depth. The added advantage is that satellite monitoring delivers information quickly and cost effectively and, more importantly, avoids the requirement for human presence, thus reducing operational risks.
机译:水的可用性在与矿物和金属提取操作相关的操作连续性中起着基本作用。作为该过程的一部分,有必要恢复尽可能多的水,以便在试图维持对周围环境和自然资源的影响减少的同时重用和减少化妆品需求。与尾矿处理有关,过去几十年已经看到了朝向高密度尾矿的转变,增厚和过滤技术进展,从而改善了水回收并减少了尾矿储存设施内的水量。然而,由于尾矿自然巩固和流血,绝大多数尾矿设施仍然产生上清池。这些池塘需要在其大小和体积中控制,特别是在较大的吞吐量操作中。在一些国家,这要求以常规的方式向当局报告权限。本文介绍了使用遥感技术监测尾矿设施中上清池的生长的研究。主要是,这涉及卫星频带的多光谱分析,其通过数学算法通过各种校正和这些频带的组合的校正和应用,可以合理地精确地确定相对浅的上清池的深度。该研究的重要性是提供替代现场监测技术,例如声纳仪器,其限于最小深度。额外的优点是卫星监控能够快速和成本提供信息,更重要的是,避免了人类存在的要求,从而降低了运营风险。

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