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Guidelines for the Management of Rock Related Instability in Strip Mines,AngloCoal, South Africa

机译:条带矿山,英国英国英国岩石矿山岩石相关不稳定的指导方针

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Technically based guidelines for managing rock related risks associated with strip mines in South African collieries are currently vague and are to a large extent based on experience and trial and error. To date, no mine specific or universal design charts exist within the South African industry. Quantification is done on a reactive basis i.e. following reported instabilities. The conditions under which, proactive tools to manage instabilities would be practically applicable are: 1. The design of simple easy to use charts. 2. Designing the charts for a target audience that is primarily production management. 3. Well organized, logical set-up of the charts that will allow for easy future refinements. 4. Allowing for variations in rock and soil properties within the charts that would account for colliery specific and region specific variability. The factors selected for in depth investigation that were deemed to have either individually or in combination, a primary influence on the stability of strip mines are (in no order of priority): 1 Appropriate batter angles for 'soft' materials. 2 Surcharge loading (spoils, dumps, topographical highs) on the highwall side. 3 Influence of the thickness of stratification on stability. 4 Influence of moisture content on stability. 5 Influence of the changes to the coal seam dip angle on stability. 6 Influence of persistent 'strip long axis' parallel faults/joints on stability. 7 Spoil stability for variations in material type. This paper provides details of the work undertaken, using principally numerical modelling techniques, to produce design charts that will allow for proactive management of rock-related instabilities on strip mines.
机译:技术上,用于管理与南非煤矿中的条带矿山相关的岩石相关风险的指南目前是模糊的,在很大程度上基于经验和审判和错误。迄今为止,南非工业内部不存在矿山特定或通用设计图表。定量是在反应的基础上完成的,即报告的不稳定性。管理不稳定性的主动工具的条件实际上是:1。简单易于使用图表的设计。 2.为主要生产管理的目标受众设计图表。 3.组织良好的,逻辑设置,将允许轻松的未来改进。 4.允许在图表内的岩石和土壤属性的变化来考虑到煤矿特异性和地区特定变异性。在深入调查中选择的因素被认为是单独或组合的,对条带矿物稳定性的主要影响(无优先级):1个“软”材料的适当面糊角度。 2高墙侧的附加费加载(破坏,垃圾,地形高度)。 3分层厚度对稳定性的影响。 4水分含量对稳定性的影响。 5对煤层倾角变化对稳定性的影响。 6持久性“剥离长轴”平行故障/关节对稳定性的影响。 7用于材料类型的变化的弃土稳定性。本文提供了使用主要数值建模技术所开展的工作的详细信息,以生产设计图表,以便在条带矿山上积极管理与岩石有关的不稳定性。

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