亚层洞穴中磷灰石-霞石矿石拉拔模型

V.V. Laptev, O.V. Belogorodtsev
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引用次数: 0

摘要

矿石开采建模过程是在离散环境中进行的。已经确定了钻机牵引巷道之间山脊的横向损失、钻机牵引巷道地面山脊的正面损失,以及从矿块中提取矿石时因与稀释岩石混合而导致矿石品位不达标的开采空间的损失值。在从矿块的底层和邻近板块提取矿石时,确定了额外损失的回收量。作为研究的一部分,我们绘制了从矿块的面板和剖面中提取矿石的平面图,这些平面图反映了提取矿石的重量、品位以及提取矿石时稀释岩石的重量。所有这一切都使得为地下矿山的每个采矿单元,即面板、剖面、区块或层面确定矿石损失率和稀释率成为可能,同时充分考虑到采矿系统的主要设计参数,以及地下采矿的采矿、地质、工程和经济条件。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modeling of apatite-nepheline ore drawing in sublevel caving
The process of modeling ore drawing was implemented in a discrete environment. Values have been determined for the lateral losses in the ridges between the drill haulage workings and the frontal losses in the ridges on the floor of the drill haulage workings, as well as in the mined-out space due to mixing with diluting rocks to substandard ore grades when ore is drawn from the blocks. The amount of additional recovery of losses was determined when drawing ore from the underlying and adjacent panels of the block. The resulting planograms of ore drawing from the panels and sections of the block were formed as part of the research, which reflect the weight of the drawn ore mass, its grade, and the weight of diluting rocks in the doses of drawing. All of this makes it possible to establish the ore loss and dilution rates for each mining unit of an underground mine, i.e. a panel, a section, a block or a level with due account of the main design parameters of the mining system, as well as the mining, geological, engineering and economic conditions of underground mining.
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