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地下非煤矿山非爆连续开采技术探索与实践 被引量:5
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作者 熊有为 刘福春 +1 位作者 刘恩彦 雷显权 《中国钨业》 CAS 2021年第4期45-54,共10页
非爆连续开采是地下非煤矿山未来技术发展的重要趋势。从煤炭开采经验、机械破岩装备以及硬岩致裂技术等方面系统地阐述了地下非煤矿山非爆连续开采的可行性。介绍了贵州某金属矿综合机械化掘进和综合机械化回采技术应用实践取得的成效... 非爆连续开采是地下非煤矿山未来技术发展的重要趋势。从煤炭开采经验、机械破岩装备以及硬岩致裂技术等方面系统地阐述了地下非煤矿山非爆连续开采的可行性。介绍了贵州某金属矿综合机械化掘进和综合机械化回采技术应用实践取得的成效,为地下非煤矿山非爆连续开采提供案例借鉴。最后展望了地下非煤矿山非爆连续开采需解决的关键技术和发展方向,建议重点开展硬岩碎裂实用技术、差异化矿岩特性与非爆破岩方式适配模型及非煤中厚-厚大矿体非爆机械连续智能开采工艺等方面进行创新攻关,引领矿山开采技术向更加低碳环保、智能高效的方向发展。 展开更多
关键词 地下非煤矿山 非爆开采 综合机械化 硬岩致裂 机械破
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Numerical simulation of optimum mining design for high stress hard-rock deposit based on inducing fracturing mechanism 被引量:3
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作者 姚金蕊 马春德 +1 位作者 李夕兵 杨金林 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2012年第9期2241-2247,共7页
The 3D numerical simulation model of deep hard-rock deposit in Kaiyang Phosphate Mine of Guiyang was established based on the practical engineering using 3DEC numerical simulation software. The distribution characteri... The 3D numerical simulation model of deep hard-rock deposit in Kaiyang Phosphate Mine of Guiyang was established based on the practical engineering using 3DEC numerical simulation software. The distribution characteristics of displacement fields and plastic zones of the orebody were simulated in three different excavation cases, including the case of excavation artificial inducted roadway in the orebody, the case of horizontal or vertical excavation direction and the case of the upward or downward excavation order. The simulation results indicate that the plastic zone and displacement field of surrounding rock around the inducted roadway are continuously increasing with the increase of the exposure time after digging an artificial inducted roadway in the orebody. Thus the raw rock ore becomes easier to be fragmented, which provides advantageous conditions for roadheader to cut high stress hard-rock. It is worthy noting that there is a large difference in effective utilization of deep ground pressure between horizontal and vertical excavation directions. The later can produce larger deformation and fracture zone than the former on the rock mass around the deduced roadway, which means that the later may utilize the high ground pressure more effectively to break hard-rock. And the obtained results also show that upward excavation order is more helpful for ground pressure to break rock than downward excavation order. 展开更多
关键词 inducted fracturing high stress hard-rock deposit excavation case roadheader excavation numerical simulation
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