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首页> 外文期刊>International Journal of Rock Mechanics and Mining Sciences >Block geometry and rockmass characterization for prediction of dilution potential into sub-level cave mine voids
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Block geometry and rockmass characterization for prediction of dilution potential into sub-level cave mine voids

机译:块体几何形状和岩体表征,用于预测在地下溶洞矿洞中的稀释潜力

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When sub-level caving is used as an underground mining method for the exploitation of diamondiferous kimberlite pipes, a deep, steep-sided pipe is created that is susceptible to sloughage. Pipe wall sloughage allows waste rock to mix with and dilute the caved kimberlite ore. Using the Koala Kimberlite Pipe at Ekati Diamond Mine as a case study, a method has been developed, using rockmass and rock structure characterization integrated with discrete block (DEM) simulation, for comparative assessment of dilution potential and the classification and mapping of dilution source zones around the kimberlite pipe. The assessment process involves the development of a geomechanical model to delineate the structural fabric within the host rockmass and characterize the size and shape distributions of discrete rock blocks defined by intersecting discontinuities. Combining the slope geometry with the structural geology model allows for a zone-by-zone numerical analysis of pipe wall stability under gravitational loading. A final dilution map is developed in order to target problem areas where the highest levels of slope instability are anticipated.
机译:当将分段放水用作开采金刚石金伯利岩管的地下开采方法时,会产生一条深而陡的,易于塌落的管。管壁的污泥使废石与掺入的金伯利岩矿石混合并稀释。以埃卡提钻石矿的考拉金伯利岩管为例,开发了一种方法,将岩体和岩石结构特征与离散区块(DEM)模拟集成在一起,用于比较评估稀释潜力以及稀释源区的分类和制图围绕金伯利岩管。评估过程涉及开发地质力学模型,以描绘出主岩体内部的结构构造,并表征由相交的不连续性定义的离散岩石块的大小和形状分布。将斜坡几何形状与结构地质模型相结合,可以对重力作用下管壁的稳定性进行逐区数值分析。最终的稀释图被开发出来,以针对预期最大坡度不稳定性的问题区域。

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