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Underground stope optimization with network flow method

机译:网络流量法的地下采场优化

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摘要

A new algorithm to optimize stope design for the sublevel stoping mining method is described. The model is based on a cylindrical coordinate defined around the initial vertical raise. Geotechnical constraints on hanging wall and footwall slopes are translated as precedence relations between blocks in the cylindrical coordinate system. Two control parameters with clear engineering meaning are defined to further constrain the solution: (a) the maximum distance of a block from the raise and (b) the horizontal width required to bring the farthest block to the raise. The graph obtained is completed by the addition of a source and a sink node allowing to transform the optimization program to a problem of maximum flow over the graph. The (conditional) optimal stope corresponding to the current raise location and height is obtained. The best location and height for the raise are determined by global optimization. The performance of the algorithm is evaluated with three simple synthetic deposits and one real deposit. Comparison is made with the floating stope technique. The results show that the algorithm effectively meets the geotechnical constraints and control parameters, and produce realistic optimal stope for engineering use.
机译:描述了一种用于分层采煤方法优化采场设计的新算法。该模型基于围绕初始垂直凸起定义的圆柱坐标。悬壁和底壁坡度的岩土工程约束被转换为圆柱坐标系中块之间的优先关系。定义了两个具有明确工程意义的控制参数,以进一步限制解决方案:(a)块与凸起之间的最大距离,以及(b)使最远的块凸起到凸起所需的水平宽度。通过添加源节点和宿节点来完成获得的图形,从而可以将优化程序转换为整个图形上的最大流量问题。获得对应于当前上升位置和高度的(有条件的)最佳采场。提升的最佳位置和高度由全局优化确定。用三个简单的合成沉积物和一个真实的沉积物评估算法的性能。使用浮动采场技术进行比较。结果表明,该算法有效地满足了岩土工程的约束条件和控制参数,为工程应用提供了现实的最优采场。

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