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Optimal blast design using a discrete-event simulation model in a hard-rock mine

机译:使用硬岩矿山中的离散事件模拟模型进行最佳爆破设计

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This paper reports on the development of a simulation-based framework for obtaining optimal blast design parameters for a hard-rock mine. To do this, a conventional medium-sized hard-rock mine was taken as a case study. The mine has two pits containing hard and soft rock types. The proposed framework contains a combination of regression analysis using Excel software by Microsoft and discrete-event simulation using Arena software by Rockwell Automation, applied to construct a model of the material-handling network of the mine. Specifically, blasting parameters are estimated by Excel-based regression analysis, processes including blasting and haulage from pits to crushers are modeled by a Forward Blasting simulation submodel, and material-handling operations including crushing, storage in stockpile, and haulage via conveyors and into SAG and ball mills are modeled by a Crusher to Ball Mill simulation submodel. A Reverse Blasting submodel is then used to obtain the optimum blast design corresponding to a target P_(80) particle size. Using the proposed framework, an economic analysis was performed to demonstrate the cost savings that could be realized for each rock type as a function of specific explosive energy.
机译:本文报告了基于仿真的框架的开发,该框架用于为硬岩矿获得最佳的爆破设计参数。为此,以一个常规的中型硬岩矿山为案例研究。该矿有两个包含硬岩和软岩类型的矿坑。提出的框架包含使用Microsoft的Excel软件进行的回归分析和使用Rockwell Automation的Arena软件进行的离散事件模拟的组合,用于构建矿山物料处理网络的模型。具体而言,爆破参数通过基于Excel的回归分析进行估算,包括从矿坑到破碎机的爆破和运输过程均通过正向爆破模拟子模型进行建模,物料处理操作包括破碎,存储在仓库中以及通过输送机和SAG进行运输球磨机由Crusher建模为球磨机模拟子模型。然后,使用反向爆破子模型来获得与目标P_(80)粒度相对应的最佳爆破设计。使用提出的框架,进行了经济分析,以证明每种岩石类型可实现的成本节约是特定爆炸能量的函数。

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