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IMPLEMENTATION OF THE GARFORD DYNAMIC BOLT AT KANOWNA BELLE MINE

机译:在Kanowna Belle Mine的Garford动态螺栓的实施

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Kanowna Belle is a high risk seismically active mine, the introduction of the Garford Dynamic bolt has given confidence to the design and control of this seismic risk through the specific engineered design of the bolt. Since the introduction of the bolt there has been a significant learning curve resulting in a well installed bolt in a high seismic risk environment. The paper starts with a summary of the bolt design processes, first reported in [5] then moves on to the implementation of the bolt and learning's over the past few years. The concept of placement of the bolt is to target high risk seismic areas, these being mainly when development intersects structures and in ore drive development ahead of a sloping front. The majority of bolts placed to date are in the lower part of the mine where stoping is not yet advanced and no significant events have occurred, only one significant event has occurred close to an area supported with Garford Dynamic bolts, but little damage occurred. From overcoring of the Garford Dynamic bolt it has been deduced that the dynamic mechanism does work, but is dependent on installation and resin mixing quality.
机译:Kanowna Belle是一种高风险的地震活跃矿井,引入Garford动态螺栓通过螺栓的特定工程设计对这种地震风险的设计和控制有信心。由于螺栓的引入,因此具有重要的学习曲线,从而在高地震风险环境中安装了良好的安装螺栓。本文从螺栓设计过程的摘要开始,首先在[5]中报道,然后在过去几年中搬到螺栓和学习的实施。螺栓的放置概念是瞄准高风险地震区域,主要是当开发结构和在倾斜前方之前的结构和矿石驱动开发时。迄今为止迄今为止的大多数螺栓位于矿井的下半部分,停止尚未提前,并且没有发生重大事件,只有一个重要的事件靠近Garford动态螺栓的区域,但发生了很少的伤害。从过度挖掘的加速动态螺栓,它已经推断出动态机制工作,但取决于安装和树脂混合质量。

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