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首页> 外文期刊>Journal of the Institution of Engineers (India), Series D. Metallurgical & Materials Engineering.Mining Engineering >Optimization of Delay Sequencing in Multi-Row Blast using Single Hole Blast Concepts
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Optimization of Delay Sequencing in Multi-Row Blast using Single Hole Blast Concepts

机译:使用单孔爆破概念优化多排爆破中的延迟排序

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摘要

The control of blast-induced ground vibration and generation of back break are main concerns of mine management. Because it damages structures near to the blasting face and makes highwall instable. It was observed during prediction of blast-induced ground vibration through scaled distance technique that it does not consider the superimposition effect of waves. Therefore, the predicted values of ground vibration differ from actual value. This study was conducted to see the superimposition effect using single hole blast concept and optimizing the blast design parameters. By this method, it is possible to nullify the chances of superimposition of waves and their influence on generation of blast-induced ground vibration and backbreak. From the study, it was found that at 92 ms delay between rows generate less backbreak compared to 42 ms and 67 ms delay. It has been found that a significant reduction in vibration can be achieved using 92 ms delay between rows, i.e., reduction up to 31 to 61 compare to 42 ms delay between row and 7 to 42 compare to 67 ms delay between rows, when blast intensity generated by single hole was 10 mm/sec.
机译:控制爆破引起的地面振动和产生背断裂是矿山管理的主要关注点。因为它会损坏爆破面附近的结构,使高墙不稳定。在通过缩放距离技术预测爆炸引起的地面振动时观察到,它没有考虑波的叠加效应。因此,地面振动的预测值与实际值不同。本研究旨在观察使用单孔爆破概念的叠加效果,并优化爆破设计参数。通过这种方法,可以消除波叠加的机会及其对爆炸引起的地面振动和回断产生的影响。从研究中发现,与 42 ms 和 67 ms 延迟相比,行与 92 ms 之间的延迟产生的退缩更少。已经发现,当单孔产生的爆炸强度为 10 毫米/秒时,使用行间 92 毫秒的延迟可以显着减少振动,即与行间延迟 42 毫秒相比,减少高达 31% 至 61%,与行间延迟 67 毫秒相比减少 7% 至 42%。

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