A case study: managing decline deformation in an active sublevel caving operation

M. Woods, S. Fitch, J. Doolan, D. Barnett
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引用次数: 1

Abstract

Telfer Gold Mine is located in the Great Sandy Desert and consists of both open pit and underground operations, including a mature sublevel cave (SLC). Changes to SLC design, with the addition of several sublevels, have resulted in an increased cave influence zone, with particular impact on the 4650 to 4600 Decline. This increased cave influence was identified during the planning stage risk assessment for the additional sublevels and a monitoring plan with associated trigger action response plans (TARPs) were included in the cave major hazard management plan (CMHMP). Once TARPs were triggered, ground support upgrades and a planned bypass were initiated for a section of the main decline. High underground temperatures and difficult work conditions resulted in the bypass activity being delayed until temperatures subsided. Due to the delays with bypass development and ongoing progression of deformation at a faster-than-expected rate, access through the original section of decline needed to be maintained for a greater length of time and with higher-than-expected deformation rates. Both a tactical ground support upgrade and a risk management plan based around monitoring data were used to maintain safe access through the main decline until the bypass was complete. Monitoring data showed a clear cause and effect between SLC production and deformation, allowing SLC production holds to be used as a key control.
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案例研究:管理活动分段崩落作业中的下降变形
特尔弗金矿位于大沙漠,包括露天和地下作业,包括一个成熟的分段洞(SLC)。SLC设计的变化,加上几个子层,导致洞穴影响区增加,特别是对4650至4600下降的影响。在规划阶段对其他子层进行风险评估时,发现了这种增加的洞穴影响,并在洞穴主要灾害管理计划(CMHMP)中纳入了一项监测计划和相关的触发行动响应计划(tarp)。一旦启动了tarp,地面支持升级和计划中的旁路就开始了。地下高温和恶劣的工作条件导致绕道作业被推迟,直到温度下降。由于旁路开发的延迟和变形以比预期更快的速度持续进行,需要在更长的时间内保持通过原始下降段的通道,并且具有高于预期的变形速率。战术地面支援升级和基于监测数据的风险管理计划都被用于在旁路完成之前通过主要滑坡保持安全通道。监测数据显示了SLC生产与变形之间的明确因果关系,使SLC生产保持点可以作为关键控制。
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