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Underground Stope Drill and Blast Designs Optimisation Program

机译:地下静止钻头和爆炸设计优化计划

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The easiest way to mine valuable orebodies is through the use of explosives and well-planned blasting layouts that produce fragmentation profiles designed specifically for conveyance equipment in underground mines. The design of blasting patterns is specific to not only the explosives being used but also the rock or ore type being fragmented. Many blasting designs are based solely on the experience of those developed for similar orebodies in terms of properties and orientation or individuals that have some blasting experience.The primary technical objective of this paper is to outline a unique methodology for determining underground blasting methodologies (developing specific blasting parameters) commensurate with explosive energies and rock/ore equations of state for a narrow-vein gold property located in Northern Quebec and for underground mines in general.The procedures developed are to define the desired fragmentation specification so that a specific thermodynamic break is generated, taking into account powder factor, energy factor, tonnages, explosive energies and distribution along with blasthole diameter and orebody orientation for a specific set of explosive and dynamic rock/ore properties. Determining dynamic modulus values for the ore using seismic sensors to measure P- and S-wave velocities, the aforementioned parameters will be utilised to set the design constraints to maximise recovery and minimise overbreak and dilution.New underground blasting software (AEGIS) will use thermodynamic break in conjunction with defined fragmentation profiles to create an array of blasting parameters used to design and plan ring layouts. This software will also allow mining planners, prior to drilling and loading a production blast, to appraise future intended blasting patterns to minimise the potential of diluting ore with host rock and the likelihood of damaging mine support structures.
机译:挖掘宝贵的矿物的最简单方法是通过使用爆炸物和计划的爆破布局,这些布局产生专为地下矿山的传送设备而设计的碎片型材。爆破图案的设计是特定于所使用的炸药,而且是岩石或矿石类型的特异性。许多爆破设计完全基于在具有一些爆破经验的性质和方向或具有一些爆破体验的位置或个人的体验中产生的体验。本文的主要技术目的是概述一种确定地下爆破方法的独特方法(发展具体爆破参数)与位于魁北克北部的狭窄静脉金特性的爆炸性能量和岩石/矿石方程相称,一般为地下矿井。开发的程序是定义所需的碎片规范,从而产生特定的热力学突破,考虑到粉末因子,能量因子,吨位,爆炸性能量和分布以及特定爆炸性和动态岩石/矿石特性的普拉索直径和矿体取向。确定使用地震传感器测量p和S波速度的矿石的动态模数值,将利用上述参数来设置设计约束,以最大化恢复并最小化溢出和稀释。新的地下爆破软件(AEGIS)将使用热力学(AEGIS)将使用热力学(AEGIS)与定义的碎片配置文件一起打破,以创建用于设计和计划环布局的爆破参数阵列。该软件还将在钻井和装载生产爆炸之前挖掘矿制策规范,以评估未来的预期爆破模式,以最大限度地减少稀释矿石的潜力以及损坏矿山支撑结构的可能性。

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