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首页> 外文期刊>Transactions of the Institution of Mining and Metallurgy, Section A. Mining Technology >Integrated optimisation of stope boundary and access layout for underground mining operations
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Integrated optimisation of stope boundary and access layout for underground mining operations

机译:优化采场边界和集成访问布局地下采矿作业

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For underground mines, two major designs that need to be optimised are the stope boundary and the access layout. The optimisation of these two components cannot be done independently as ore extracted from stopes is transported to the surface via the access network. Different stope locations result in different associated access development costs. This paper describes a proposed integrated optimisation model to optimise stope and access layouts simultaneously. The interactions and interdependency between stopes and access are ensured by a dynamic access development cost analysis based on recursive computations. Mixed integer non-linear programming is used to maximise the overall economic value subject to the constraints of generating optimal stopes and access layout, which is solved by a Genetic Algorithm modified for computational efficiency. A stratiform gold deposit is used as a case study to demonstrate that the new approach can provide a more profitable solution compared with traditional approaches.
机译:地下矿山、两个主要的设计需要优化采场边界,访问布局。组件无法独立完成矿石从斯特普被运送到表面通过访问网络。位置导致不同的相关的访问开发成本。提出集成优化模型同时优化采场和访问布局。之间的相互作用和相互依赖斯特普和访问了一个动态的访问基于递归的开发成本分析计算。编程是用于最大化的整体经济价值的限制生成最优斯特普和访问布局,由遗传算法解决修改吗计算效率。存款作为案例研究演示新方法可以提供更多与传统相比盈利的解决方案方法。

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