Impact of the distance between the draw holes on the ore loss due to congealing during ore drawing

V. Zubkov, D. Petrov
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Abstract

The paper considers the results of experimental studies of changes in the ore losses caused by congealing in the stoping zone during the drawing process in conditions of subzero temperatures in underground mining of eore deposits in the cryolithic zone, depending on the distance between the draw holes. Three series of experiments were performed using trench-shaped test benches with various distances betwen the draw holes. The distances between the access crosscuts were assumed to be 180, 200 and 220 mm, which is equal to 9, 10 and 11 m in actual conditions according to the adopted geometric scale of modeling. The results of modeling the bottom drawing in conditions of subzero temperatures, similar to the conditions of the underground ore mining in the cryolithic zone, showed that changes in the distance between the draw holes with the trench-shaped design of the bottom block have a significant impact on the extraction rates. When the distance between the draw holes is increased from 9 m to 11 m, the ore loss due to congealing during the draw phase rises from 24% to 42%. Experimental studies have shown that the increased distance between the draw holes in conditions of subzero temperatures in the bottom area leads to increased ore losses caused by congealing in the stoping area.
拉矿孔间距对拉矿过程中因凝结造成的矿石损失的影响
本文探讨了在零度以下的条件下开采冰冻区地下矿床时,拉拔过程中止水带凝结引起的矿石损失变化的实验研究结果,具体取决于拉拔孔之间的距离。使用沟槽形试验台进行了三个系列的实验,拉拔孔之间的距离各不相同。根据所采用的建模几何比例,通道横截面之间的距离假定为 180、200 和 220 毫米,相当于实际条件下的 9、10 和 11 米。在零度以下的条件下(与冰冻区地下矿石开采条件类似)进行的底块牵引建模结果表明,底块沟槽形设计的牵引孔间距的变化对开采率有显著影响。当牵引孔间距从 9 米增加到 11 米时,牵引阶段因凝结造成的矿石损失从 24% 增加到 42%。实验研究表明,在底部区域温度低于零度的条件下,增加牵引孔之间的距离会导致停采区凝结造成的矿石损失增加。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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