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A push-back sequencing model for production planning in open-pit coal mining

机译:露天煤矿生产规划的推回测序模型

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A dynamic sequencing method has been developed to simultaneously optimize the coal production rate, waste stripping rate, mining sequence, and mine life of an open-pit coal mine. The method first establishes a geological seam model of a bedded coal deposit which estimates the relevant attributes of coal seams at the center of each block on the X-Y plane. Based on the seam model, a sequence of "geologically optimum push-backs" is generated in the final pit. The geologically optimum push-backs are then put into a dynamic sequencing model and economically evaluated. The best production schedule which has the highest NPV is obtained, which indicates the best quantities of coal and waste to be mined in each year, the best zone to be mined in each year, and the best number of years to mine the entire final pit.
机译:已经开发了一种动态测序方法,同时优化煤矿生产率,废物剥离率,采矿序列和露天煤矿的矿山寿命。该方法首先建立一个玻璃矿床的地质缝模型,估计X-y平面上每个块中心的煤层的相关属性。基于接缝模型,在最终凹坑中产生一系列“地质上最佳推回”。然后将地质上最佳的推回放入动态测序模型中并经济评估。获得了最高NPV的最佳生产计划,这表明每年最佳煤炭和废物待开采,每年最佳地区,以及挖掘整个最终坑的最佳年份。

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