首页> 外文会议>Annual conference on explosives and blasting technique >WORLD-WIDE SURVEY OF DESTRESS BLASTING PRACTICE IN DEEP HARD ROCK MINES
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WORLD-WIDE SURVEY OF DESTRESS BLASTING PRACTICE IN DEEP HARD ROCK MINES

机译:深部硬岩矿山爆破实践研究

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In many parts of the world, rockbursts have become a major problem of mining at depth. As orebodies are being mined deeper, rockburst phenomena have become familiar to deep hard rock mines. Rockbursts are generally characterised by sudden release of energy in a volume of highly stressed rock, which can cause local violent failure of the rock mass around the opening. One method of controlling these failures is to precondition the rock mass by detonating fully confined explosive charges at the appropriate locations. This method known as destress blasting, was first tried in the deep South African gold mines (Roux et al., 1957), and was widely used later in Canada, United States, France, Poland and Japan.The in situ conditions leading to the occurrence of rockbursts and the possibilities of using destress blasting to control them are presented. Information such as: geology, rock properties, in situ stresses and mine excavation rate and configuration as well as blasting parameters such as: blasthole layout, hole length, explosives loading and ignition schemes have been collected, and currently are being compiled in a database. The review shows that some mine operations have successfully used destress blasting to their benefit, sometimes requiring other changes in their operational procedures. Applications, techniques and results garnered from this world-wide survey of destress blasting trials and programs, some successful and some not, are analysed and discussed. Logical, engineering explanations for the results obtained are proposed.
机译:在世界许多地方,岩爆已成为深度开采的主要问题。随着矿体被更深地开采,岩爆现象已成为深部硬岩石矿山的熟悉现象。岩爆的特征通常是突然释放大量高应力岩石中的能量,这可能导致洞口周围的岩体发生局部剧烈破坏。控制这些破坏的一种方法是通过在适当位置引爆完全封闭的炸药来对岩体进行预处理。这种称为减压爆破的方法首先在南非的深金矿中试用(Roux等人,1957年),后来在加拿大,美国,法国,波兰和日本得到了广泛的应用。 提出了导致岩爆发生的现场条件,以及利用减压爆破控制岩爆的可能性。诸如以下信息:地质,岩石特性,原地应力和矿山开挖速率和构造以及爆破参数,例如:爆破孔布局,孔长,炸药加载和着火方案,目前正在数据库中进行汇编。审查显示,一些矿山运营已成功利用去应力爆破而受益,有时还需要对其运行程序进行其他更改。分析和讨论了这次从世界范围进行的减压爆破试验和程序调查中获得的应用,技术和结果,其中有些成功,有些则没有。提出了对所得结果的逻辑工程解释。

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