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Blast design for improved performance and reduced surface vibration - a case study

机译:用于改进性能和降低表面振动的爆炸设计 - 以案例研究

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Deeper level iron ore mining at a depth below 800-1,000 m in Western Siberia faces poor ground conditions and heavily complicated geomechanical conditions. Ore extraction involves such systems as level caving, room-and-pillar mining with and without backfilling and sublevel caving. Blast designs involve closely spaced rings ofblastholes with a diameter from 89 to 250 mm. Aiming to evaluate drilling-and-blasting parameters, researches have been undertaken to assess effects of blast patterns on quality of rock fragmentation by explosive charges and on rates of dynamic and seismic events. It is found that room-and-pillar mining with and without backfilling with different design factors allows enhancing efficiency and safety of stoping. The author has proposed a blasting technique and a method to determine powder factor per each blasthole with regard to geotechnical conditions in a mine.The application of the designed blast patterns enables reduction in powder factor by 20-30%, decreases yield of oversize by 15-20%, lowers amplitudes of the stope floor and ground surface vibrations and reduces seismic energy from 10~6 to 10~4 J.
机译:西伯利亚西伯利亚的深度低于800-1,000米的深度级别的铁矿石挖掘面临差的地面条件和严重复杂的地质力学条件。矿石萃取涉及这种系统,作为水平洞穴,房间和支柱挖掘,并且没有回填和悬浮落孔。爆炸设计涉及晶体的间距,直径为89至250毫米。旨在评估钻井和爆破参数,已经进行了研究,以评估爆炸模式对爆炸性收费和动态和地震事件率的岩石碎片质量的影响。有人发现,带有不同设计因素的房间和支柱挖掘和无需回填,可以提高止损效率和安全性。作者提出了一种爆破技术和一种方法,用于在矿井中的岩土条件方面每个Blasthole确定粉末因子。设计的鼓风玻璃的应用能够降低20-30%,降低超过15的超大产量-20%,降低迹线地板和地面振动的振荡,并将地震能量从10〜6到10〜4 J.

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