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Prediction of Blast Fragmentation of Underground Stopes for In Situ Leaching

机译:原位浸出地下采场爆炸碎裂的预测

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The U.S. Bureau of Mines (USBM) evaluated empirical equations that predict fragmentation from underground stope rounds. Controlled blasting is necessary for creating leaching stopes that maximize the recovery and minimize backbreak of the perimeter wall. This paper presents the fragmentation results from one of the three drop-raise blasts used to develop a reduced-scale cylindrical stope, 1.8 m in diameter and 6 m in height. The stope is located in the Colorado School of Mines Experimental Mine (Edgar Mine) in Idaho Springs, Colorado. This stope is part of a USBM research effort to determine the feasibility of incorporating in situ leaching of rubblized stopes into active underground metal and nonmetal mines.rnAll the material from the first blast, 14 mtons was sieved. The resulting distribution was compared to the distribution predicted from empirical equations. The best fit was found with a USBM equation developed from over 50 sieved, reduced-scale (1- to 2-m) high wall blasts. Modifications to the equations were made to account for the observed differences due to breakout angle, shot geometry, initiation timing, decoupling, rock fracture toughness and explosive energy.
机译:美国矿务局(USBM)对经验方程进行了评估,该方程可预测地下采场回弹的碎片。必须进行控制爆破才能产生浸出采场,以最大程度地提高采收率并最大程度地减少周墙的倒塌。本文介绍了三种直径为1.8 m,高度为6 m的下降规模的圆柱形采场的散落爆炸中的一种的碎裂结果。该采场位于科罗拉多州爱达荷斯普林斯的科罗拉多矿业学校实验矿(埃德加矿)。该采场是USBM研究工作的一部分,该工作旨在确定将碎磨采场现场浸入活跃的地下金属和非金属矿山中的可行性。第一次爆破的所有材料(14吨)均被过筛。将所得分布与根据经验方程式预测的分布进行比较。 USBM方程式是最合适的,该方程式由50多个筛分的,缩小比例的(1-2米)高壁爆破开发而成。对方程进行了修改,以解决由于爆破角度,炮弹几何形状,起爆时间,解耦,岩石断裂韧性和爆炸能量而引起的观测差异。

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