提出了合理的铁矿采区预抛支护技术,提高了岩体暴露的稳定性

A. Kosenko, Viktor Tarasyutin
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引用次数: 0

摘要

目的。通过采用合理的井眼水力技术方案,提高了预备膛线立管开采过程中的作业效率和安全性。方法。文献资料分析、设计文献及地下法开发矿床的实践。设计了一种预备膛线立管井下水力工艺方案。所开发的预备膛线立管施工工艺方案的技术经济比较。结果。研究结果为在富铁矿地下开采过程中采用井眼水力技术的安全工艺方案,改进和提高预备膛线立管的效率提出了建议。确定了主要开采区域和地质条件,合理采用立管具体技术。科学的新奇。得到了不同施工方式下1 m3预备膛线立管造价与立管长度的关系。水力监测仪对低强度马氏铁矿的有效破坏,水射流动压力应为岩体单轴抗压强度的0.1 ~ 0.2。实际的含义。已经制定了一项利用钻孔水力技术进行预备膛线立管的技术方案,它允许采矿作业的低作业、流动和安全,灵活地控制工作的集中和工作量,与传统采矿技术具有良好的兼容性,以及在转炉或平炉生产高质量钢种时进行初步富集。简化了掘进工艺,提高了掘进速度,节约了能源和材料,保证了掘进效率。
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SUBSTANTIATION OF RATIONAL TECHNOLOGIES FOR CARRYING OUT PREPARATORY-THROWED RAIS IN THE MINING BLOCKS OF IRON MINES, WHICH ENSURE INCREASED STABILITY OF THE MASSIF EXPOSURES
Purpose. Improving the efficiency and safety of mining operations in the process of preparatory-rifled risers, through the use of rational technological schemes of borehole hydraulic technology. Methods. Analysis of literary sources, design documentation and practice of developing mineral deposits by underground method. Designing a technological scheme for borehole hydraulic technology for preparatory-rifled risers. Technical and economic comparison of the developed technological schemes for conducting preparatory-rifled risers. Results. The results of the study were proposals for improving and increasing the efficiency of preparatory-rifled risers in the process of underground mining of rich iron ore deposits by using safe technological schemes of borehole hydraulic technology. The main areas of mining and geological conditions for the rational use of specific technologies for risers are determined. Scientific novelty. The dependences of the cost of carrying out 1 m3 of preparatory-rifled riser in different ways on its length are obtained. It has been established that for the effective destruction of low-strength martite ores by hydraulic monitors, the dynamic pressure of water jets should be 0.1–0.2 of the uniaxial compression strength of the massif. Practical implication. A technological scheme has been developed for conducting preparatory-rifled risers using borehole hydraulic technology, which allows for low-operation, flow and safety of mining operations, flexibility in controlling the concentration and volume of work, good compatibility with traditional mining technologies, as well as preliminary enrichment in the converter or open-hearth production of high-quality steel grades. Efficiency is ensured by the simplification of tunneling technology, high penetration rate, energy and material savings.
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