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Use of blast engineering technology to optimize drilling and blasting outcomes at the Olympic Dam underground mine

机译:爆炸工程技术的使用优化奥林匹克水坝地下矿井钻探和爆破成果

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The Olympic Dam copper-uranium underground mining complex is undergoing a major expansion programme which will see it continue to function as a world class operation at enhanced production levels. One of the many technical challenges being met and solved is that of engineering the myriad aspects of the drilling and blasting unit operations in order to guarantee adequate supply of suitably fragmented ore under the changing conditions of demand from the downstream extraction processes. Olympic Dam Operations (ODO), of Western Mining Corporation, currently mines Cu/U/Au ores from a number of stopes in a variety of geological/geotechnical ore types. The variation in the in situ rock properties presented by each ore type signifies a need to develop drill and blast designs for a number of differing situations so as to correctly and opportunely adapt to changing energy needs in order to provide optimized blast outcomes. Inadequate blast performance could result in expensive and difficult to rectify bottlenecks in the production cycle, which if widespread would pose a challenge to maintaining production targets. ODO, in conjunction with explosive supplier, Dyno Nobel Asia Pacific, chose to implement a holistic blast engineering methodology incorporating extensive use of state of the art measurement techniques in order to 1. Effectively characterize and quality assure explosive products used 2. Monitor the effective performance of blast designs via the use of blast vibration measurement techniques 3. Produce rock type specific blast designs using mechanistic vibration modelling techniques incorporating actual rock property data. The objective of the implemented programme, the results of which are reported herein, is to apply a genuinely blast engineering based approach to the task of maintaining feed of fragmented ore to downstream process clients.
机译:奥林匹克坝铜 - 铀地下矿业综合体正在进行一个主要的扩展计划,这将认为它继续在增强的生产水平上作为世界级运营的运作。所达到和解决的许多技术挑战之一是工程钻孔和爆破单元操作的无数方面,以保证在下游提取过程的改变条件下确保适当碎片的矿石的适当供应。西部矿业公司的奥运大坝运营(ODO)目前,目前挖掘了多种地质/岩土科矿石类型的一系列停止的Cu / U / Au。每个矿石类型呈现的原位岩石属性的变化意味着需要为许多不同情况开发钻头和爆炸设计,以便正确且适当地适应改变能量需求,以便提供优化的爆炸结果。爆炸性能不足可能导致昂贵且难以纠正生产周期中的瓶颈,如果普遍地对维持生产目标构成挑战。 ODO,与爆炸供应商,Dyno Nobel Asia Pacific,选择实施一个全面的爆炸式工程方法,其采用广泛使用现有技术的最新技术,以便有效地表征和质量保证爆炸产品2.监控有效性能爆炸设计通过使用爆炸振动测量技术3.采用机械振动建模技术生产岩型特异性爆破设计,该技术采用了实际的岩石属性数据。实施方案的目的是,本文报道的结果是将基于真正的爆炸工程基于基于真正的爆炸工程方法施加到下游工艺客户的归零矿石饲料的任务。

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