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现代矿业 ›› 2025, Vol. 41 ›› Issue (06): 113-117.

• 采矿工程 • 上一篇    下一篇

程潮铁矿无底柱分段崩落法崩矿步距优化数值模拟研究#br#

李吉民1 任 艺2 韩亚民1 卢 骏1 冯 俊1 王 平2
  

  1. 1. 武钢资源集团程潮矿业有限公司;2. 武汉科技大学资源与环境工程学院
  • 出版日期:2025-06-25 发布日期:2025-08-01

Numerical Simulation Research on Optimization of Rock Collapse Step Distance of Sublevel Caving Method without Sill Pillar in Chengchao Iron Mine

  1. 1. Chengchao Mining Co.,Ltd.,WISCO Resources Group; 2. School of Resource and Environmental Engineering,Wuhan University of Science and Technology
  • Online:2025-06-25 Published:2025-08-01

摘要: 针对程潮铁矿在Ⅲ# 主矿体向Ⅵ# 矿体过渡阶段(-430~-570 m)存在的矿体规模缩减、 矿石回收率偏低及废石混入率偏高等生产技术难题,开展程潮铁矿过渡段矿体无底柱分段崩落 法步距优化研究,采用离散元数值模拟平台构建二维放矿模型,设置 3.2~4.8 m 共 5 种崩矿步距方 案,并进行对比分析,系统研究采场结构参数对放矿指标的影响规律。基于 Bergmark-Roos 放矿理 论,初步确定了崩矿步距理论取值范围,再利用 PFC2D数值模拟软件进行优化验证。研究结果表 明:基于 Bergmark-Roos 放矿理论确定的步距值为 4~4.4 m;数值模拟结果显示,随着崩矿步距的增 大,矿石回收率先增大后减小,废石混入率先减小后增大;4.4 m的崩矿步距可实现开采参数的协同优 化,矿石回收率可达85.95%,废石混入率15.53%。研究结果为程潮铁矿过渡段采场结构参数优化提 供指导。

关键词: Bergmark-Roos放矿理论, 回贫指标, PFC2D数值模拟, 崩矿步距

Abstract: Aiming at the production technical problems such as ore body scale reduction,low ore re⁃ covery rate and high waste rock mixture rate existing in the transition stage (-430~ -570 m) from the Ⅲ# main ore body to the Ⅵ# ore body of Chengchao Iron Mine,the step distance optimization research of the sublevel caving method without sill pillar of the ore body in the transition section of Chengchao Iron mine was carried out. A two-dimensional ore discharge model was constructed by using the discrete element nu⁃ merical simulation platform. Five ore-breaking step distance schemes ranging from 3.2 m to 4.8 m were set up and a comparative analysis was conducted to systematically study the influence law of the stope structure parameters on the ore-discharging indicators. Based on the Bergmark-Roos drawing theory,the theoretical value range of the ore collapse step distance was initially determined,and then the PFC2D numerical simula⁃ tion software was used for optimization and verification. The research results show that the step distance val⁃ ue determined based on the Bergmark-Roos drawing theory is 4~4.4 m. The numerical simulation results show that as the step distance of ore collapse increases,the recovery of ore first increases and then decreas⁃ es,and the mixture of waste rock first decreases and then increases. The 4.4 m mine collapse step distance can achieve the collaborative optimization of mining parameters. The ore recovery rate can reach 85.95%, and the waste rock mixing rate is 15.53%. The research results provide guidance for the optimization of the stope structure parameters in the transition section of Chengchao Iron Mine.

Key words: Bergmark-Roosdrawing theory, poverty return indicator, PFC2D numerical simulation, cav? ing step distance