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Estimation of fill strength requirements using bonded particle modelling for mining under cemented rockfill

机译:用粘合粒子建模估算粘合堆积堆积填充强度要求的估算

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摘要

Recovery of sill pillars is often associated with mining under existing backfill. The backfill stability in such cases is of primary concern due to risks associated with personnel safety, equipment loss, and ore dilution. Two key aspects that control the stability of exposed backfill are the fill strength and the size of the fill exposure. Use of stronger fill will allow for increased excavation size but will come at a higher cost because of higher binder content requirements. A mine operator, therefore, must decide what combination of excavation size and fill strength is appropriate.In this paper we present the results of a study for a base metal mine in Canada aimed at estimating the strength requirements for cemented rockfill (CRF) being undercut. Numerical simulations utilising bonded particle models were used to relate the size of the undercut to the CRF strength requirements. The results were expressed as the depth of fill failure and as ore dilution, allowing the operator to select appropriate fill strength.
机译:恢复窗台支柱通常与现有回填下的开采相关。由于与人员安全,设备损失和矿石稀释相关的风险,这种情况下的回填稳定性是主要的关注。控制暴露回填的稳定性的两个关键方面是填充强度和填充曝光的尺寸。使用更强的填充物将允许增加的挖掘尺寸,但由于较高的粘合剂内容要求,将以更高的成本提高。因此,矿井操作员必须决定挖掘尺寸和填充力量的组合是合适的。本文介绍了加拿大底座金属矿的研究结果旨在估算粘液堆石(CRF)的强度要求。利用粘合粒子模型的数值模拟用于将底切的尺寸与CRF强度要求相关。结果表达为填充失败的深度和矿石稀释,允许操作员选择适当的填充强度。

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