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Implementation of a Surface-based Hydraulic Fracturing Program to Successfully Propagate a Large Cave through Hard, Competent Near-surface Rock Masses to Achieve Breakthrough

机译:实现基于表面的液压压裂程序,通过硬,有态度的近地岩体成功地传播大洞穴,以实现突破

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Hydraulic fracturing to precondition the orebody to enhance rock mass cavability is gaining acceptance in underground cave mining applications. Assisting cavability is becoming important as an increasing number of cave mines are being implemented in hard, deep and competent rock masses where clamping stresses are higher and cave column heights may be in excess of 1000 m. Propagating large caves to surface in such conditions can be challenging as risks such as slowed propagation and air gaps can develop during the process.Underground-based hydraulic fracturing is routinely used at Cadia East as a means of preconditioning the orebody to assist in cave propagation, fragmentation and seismicity reduction. This paper presents a summary of a surface-based hydraulic fracture program that was successfully implemented to assist in the propagation of the Cadia East Panel Cave 1 (CE-PC1) cave to surface through competent overlying rock masses. In this case study, the propagation of the CE-PC1 cave slowed as the cave grew past 750 m in height, initiating a Trigger Action Response Plan regarding the cave propagation rate. Surface-based hydraulic fracturing was subsequently used to stimulate the cave to propagate through the final 450 m to surface. The paper details the equipment, strategy, implementation and risk management involved in the program as well as the key learnings.
机译:液压压裂到前提下,矿体增强岩石质量空气性在地下洞穴挖掘应用中获得了接受。辅助空气性变得重要,因为越来越多的洞穴矿山在硬质,深层和态度的岩体中实现,其中夹紧应力更高,洞穴柱高度可能超过1000μm。在这种条件下将大洞穴传播到表面可能是具有挑战性的,因为在过程中可以发育诸如慢速传播和空气差距的风险。基于地下的液压压裂是在Cadia East常规使用的是预处理矿物的手段,以帮助矿体辅助洞穴传播,碎片和地震性降低。本文介绍了基于表面的液压骨折计划的摘要,该计划成功实施,以帮助通过占领岩石群体巩固Cadia East Cave 1(CE-PC1)洞穴的洞穴。在这种情况下,随着洞穴的高度增长超过750米,CE-PC1洞穴的传播减缓了,启动了关于洞穴传播速率的触发动作响应计划。随后使用基于表面的液压压裂,刺激洞穴通过最终450μm到表面繁殖。本文详细介绍了该计划以及关键学习的设备,战略,实施和风险管理。

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