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薄矿脉深孔回采采场结构参数−爆破工艺协同优化与贫化控制

Synergistic optimization of stope structural parameters and blasting technology for dilution control in narrow-vein deep-hole mining

  • 摘要: 针对某金矿薄矿脉深孔开采的贫化控制难题,采用统计分析方法分析了目标矿区采场矿石贫化率分布特征及其主控因素;构建了基于岩体质量分级评价和 Mathews稳定性图解法耦合分析的采场稳定性量化表征模型,揭示了矿石贫化率指标与采场结构参数之间的关联性。在保证采场安全性和低矿石贫化率的双重约束下,提出了差别化分级布孔方案;改进了装药结构,将连续装药调整为两段空气间隔耦合装药方式;将深孔爆破排间距由0.7 m扩大到1.0 m。经工业试验采场验证,优化后采场计划外矿石贫化率显著降低至9.3 %,较原工艺降幅65.5 %。本研究通过采场结构参数调整−爆破工艺协同优化,实现了薄矿脉深孔开采中安全高效与低贫化开采,为同类型矿床开采提供了技术参考。

     

    Abstract: Aiming at the challenge of dilution control in deep-hole mining of a narrow gold vein, statistical analysis was applied to examine the distribution characteristics and main controlling factors of ore dilution rates in stopes within the target mining area. A quantitative stability characterization model for stopes was built based on coupled analysis of rock mass quality classification and the Mathews stability graph method, revealing the correlation between the dilution rate and stope structural parameters. Under the dual constraints of stope safety and low ore dilution, a differentiated hierarchical borehole layout scheme was proposed. The charging structure was improved by changing from continuous charging to a dual-interval coupled charging method. Furthermore, the row spacing in deep-hole blasting was increased from 0.7 m to 1.0 m. Industrial tests in trial stopes verify that the unplanned ore dilution rate of the optimized stopes is significantly reduced to 9.3 %, representing a 65.5 % reduction compared to the original method. Through the synergistic optimization of structural parameter adjustment and blasting process control, this study achieves safe, efficient, and low-dilution mining in narrow-vein deep-hole operations, providing a technical reference for mining similar types of deposits.

     

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