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Impedance Matching Algorithm for Selection of Suitable Explosives for Any Rock Mass-A Case Study

机译:适用于任何岩石群体选择合适炸药的阻抗匹配算法

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Proper selection of the explosive is an important part of blast design.The judicious selection of explosives is governed by economic considerations and site/field conditions.The mine management desires to select an explosive that will give the lowest cost per unit of rock broken,while assuring that fragmentation,fragment size distribution,muck pile profile,muck pile diggability,displacement of the rock,onset of movement,face movement,burden relief rate,ground vibration and noise remains within control limits.Factors which influence the selection of an explosive include explosive cost,charge diameter,cost of drilling,fragmentation difficulties and fragment size requirement with loose muck pile condition,water conditions,atmospheric temperature,propagating ground,storage considerations,sensitivity considerations,explosive atmospheres and nearness of communities from mine.All these concerns can be handled effectively by using the impedance matching technology where explosive impedance is matched with rock impedance for optimal blast performance with due concern to productivity,economics and environment.This paper discusses a case study in limestone mines where rock impedance was determined by carrying out surface refraction test and a patented algorithm was used to estimate the explosives’properties i.e.VOD(velocity of detonation)and density of explosives required.
机译:正确选择爆炸性是爆炸设计的重要组成部分。明智的爆炸物的选择受经济考虑和现场/现场条件的管辖。矿山管理欲望选择爆炸物,以便为每单位岩石造成最低成本的爆炸性,而且确保碎片化,片段大小分布,泥块桩轮廓,泥块桩档,岩石位移,运动开始,面部运动,负担释放率,地面振动和噪音仍然在控制限值范围内。影响爆炸性选择的因素包括爆炸性成本,电荷直径,钻孔成本,碎片困难和片段尺寸要求宽松淤泥桩状况,水条件,大气温度,传播地,储存注意事项,敏感性考虑,爆炸性气氛和漏洞的社区。所有这些问题都可以通过使用爆炸阻抗的阻抗匹配技术有效地处理与岩石阻抗相匹配,以获得优化的爆炸性能,因为提出了生产力,经济学和环境。本文讨论了石灰石矿山的案例研究,其中通过进行表面折射试验和专利算法来估计爆炸物的算法IEVOD(爆炸的速度)和所需的炸药密度。

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