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Selecting an optimal ground support system for rockbursting conditions

机译:选择用于摇滚突发条件的最佳地面支持系统

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A growing number of underground mines experience high seismic activity due to the expansion of the mined out void and the progressive advancement of the operations to greater depths. Seismic events with a local magnitude ranging from 1.5 to 3.0 are routinely recorded at various mines in Western Australia where many such events have resulted in rockbursts damaging underground excavations and posing a high risk of injury to underground workers. Being the last line of defence in mitigating the risk of a rockburst occurrence, an optimal ground support system must be sufficiently robust to survive the highest magnitude event predicted by seismological analysis, yet still be economically and practicably feasible to ensure sustainability of the mining operation.This paper presents the process of ground support selection as applied to two Western Australian hard rock mines experiencing rockbursting conditions. The methodology is presented in the format of the capacity meeting the demand. Various commercially available rockbolts and surface liners are reviewed in terms of their energy absorption and deformation capacities. Once all data on the demand and capacity is in hand, the task of selecting an optimal support is then a matter of ranking the systems, shortlisting the better ones for a trial, and finally deciding on the most optimal one or two.
机译:由于扩大所开采的空虚和逐步进步,越来越多的地下矿井经历了高地震活动,以及运作的逐步进步更深入。具有1.5到3.0的局部幅度的地震事件经常在西澳大利亚西部的各种地雷记录,其中许多此类事件导致摇滚笨拙的地下挖掘,并对地下工人造成了高伤害的风险。作为缓解岩石发生的风险的最后一系列防御,最佳地面支持系统必须足够强大以存活地震学分析预测的最高幅度事件,但仍然是经济和实际可行的,以确保采矿操作的可持续性。本文介绍了地面支持选择的过程,适用于经历摇滚爆击条件的两家澳大利亚硬岩矿。该方法以满足需求的格式呈现。各种市售的岩波和表面衬垫是在其能量吸收和变形容量方面进行审查。一旦所有关于需求和容量的数据都在手中,选择最佳支持的任务就是一个排名系统的问题,为试验中的更好的符号,并且最终决定最佳的一个或两个。

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