陡倾斜中厚矿体沿走向进路的位置优化
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1.太钢集团代县矿业有限公司, 山西 忻州 034207 ; 2.武汉科技大学资源与环境工程学院, 湖北 武汉 430081

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郭鹏杰(1989—),男,工程师,主要从事采矿工艺方面研究。

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TD853

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Optimization of the position of the drift along the strike in steeply inclined medium-thick ore bodies
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    摘要:

    针对某铁矿陡倾斜中厚矿体采用无底柱分段崩落法开采时的进路位置合理确定问题,结合相似模拟与数值模拟 (PFC3D)方法,开展矿体沿走向布置进路的位置优化研究。 以矿体倾角 85°、平均厚度 20 m 为研究对象,常规正对布置进路存在脊部矿石残留回收难题,为此对比分析上下分段正对布置(错开距离 0 m)与交错布置(错开距离 3 m、6 m)的回采指标及散体运移规律。 研究结果表明,上下分段进路水平错开距离 6 m 时回采效果更优,数值模拟中矿石回收率达 86. 34% 、矿石贫化率降至 17. 07% ,相似试验中矿石回收率为 84. 79% 、矿石贫化率为 15. 55% ,两者结果趋势一致。 该研究有效解决了上分段进路出矿脊部残留矿石难以在下分段回收的问题。

    Abstract:

    In response to the problem of determining the reasonable position of the access route during the mining of a steeply inclined medium thick ore body in a certain iron mine using the Sublevel caving method , combined with the similarity simulation and numerical simulation (PFC3D) method, a study was conducted on the optimization of the position of the access route along the strike of the ore body. Taking the dip angle of the ore body as 85° and the average thickness of 20 m as the research object, there is a problem of residual ore recovery in the ridge area of the conventional straight layout approach. Therefore, a comparative analysis is conducted on the mining indicators and loose material transportation rules of the upper and lower segmented straight layout (staggered distance of 0 m) and staggered layout (staggered distance of 3 m, 6 m). The research results show that the mining effect is better when the upper and lower segmented access roads are horizontally staggered by a distance of 6 m: in numerical simulations, the ore recovery rate reaches 86. 34% and the ore impoverishment rate drops to 17. 07% , while in similar experiments, the ore recovery rate is 84. 79% and the ore impoverishment rate is 15. 55% , and the trend of the two results is consistent. This study effectively solved the problem of difficulty in recovering residual ore from the ridge of the upper segmented mining route in the lower segmented mining.

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郭鹏杰,孟帆,姚囝,等. 陡倾斜中厚矿体沿走向进路的位置优化[J]. 中国矿山工程,2025,54(6):8 - 14 + 40.

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  • 在线发布日期: 2026-03-11
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