首页> 外文期刊>International Journal of Rock Mechanics and Mining Sciences >Study on the long-hole raising technique using one blast based on vertical crater retreat multiple deck shots
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Study on the long-hole raising technique using one blast based on vertical crater retreat multiple deck shots

机译:基于垂直火山口的一种爆炸的长孔升高技术研究多个甲板射击

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Backfilling inaccessible cavity through raise can provide underground support for the active open-pit operations and the raise must be taken down in a single blast for safety reasons. Conventional raising techniques are not economically and technically feasible, and the maximum advance depth in one blast is limited. In this paper, small-scale crater tests were carried out in a site with cavities and field blasting test data were measured and evaluated to obtain the basic data for raise-scale blast designs. The raising design parameters with 250-mm hole diameter, including charge weight and height for each slice, slice height, hole spacing and delay interval, were derived. A scheme of multiple deck blasting based on vertical crater retreat (VCR) drop-raising method was designed for an abandoned cavity with 30-m cover. The lower 12-m cover was first blasted to investigate the practical blast performance. Charging and timing patterns were adjusted accordingly and the left 18-m cover was successfully opened up. Through raising tests, it is shown that the advantage of two available free surfaces up and down should be maximized, and smaller slice height and alternate initiation sequence are benefit for raising extension. A numerical model is then developed and it is calibrated against the 12-m raising test. By combining the calibrated numerical model with the raising test results, the effects of hole layout and in-slice delay are examined. It is shown that circular pattern and in-slice delay are positive for multiple-deck raising blast. Based on the foregoing analysis, the hole layout, charging and timing patterns are optimized. The optimized scheme was applied to field raising blast and a 32-m raise was successfully excavated in one blast.
机译:通过升温回填洞穴可以为主动露天坑操作提供地下支撑,并且必须以安全原因在一次爆炸中取出饲料。传统的升高技术在经济上和技术上是可行的,并且一个爆炸中的最大预先深度是有限的。在本文中,在具有空腔的位点中进行小规模的火山口试验,并测量爆破试验数据并评估,以获得提高爆炸设计的基本数据。推导出具有250毫米孔直径的升高设计参数,包括每个切片的电荷重量和高度,切片高度,孔间距和延迟间隔。基于垂直喷井撤退(VCR)升降法的多个甲板喷射方案设计用于具有30米盖的废弃腔。较低的12米覆盖物首次爆炸以研究实际的爆炸性能。相应地调节充电和定时模式,并成功打开左18米盖。通过提高测试,表明应该最大化两个可用的自由表面的优势,并且较小的切片高度和交替的起始序列是促进延伸的益处。然后开发数值模型,并针对12米的升高试验校准。通过将校准的数值模型与提高测试结果组合,检查了孔布局和切片延迟的影响。结果表明,圆形图案和切片延迟对于多甲板提高爆炸是阳性的。基于上述分析,优化了孔布局,充电和定时模式。优化方案应用于田间升高,32米升高在一个爆炸中成功挖掘出来。

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