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A Case Study on the Efficacy of Different Roof Bolting Schemes in Lhoist North America's Crab Orchard Mine

机译:Lhoist北美蟹园矿不同顶板锚固方案有效性的案例研究

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Roof bolting has long been used in underground mines across the world to provide ground support. Modern roof bolts are cheap and easy to install with the use of specialized machines as a part of the production cycle. Lhoist North America's Crab Orchard Mine is an underground room and pillar limestone mine that uses mechanically anchored roof bolts for ground support. The mine currently employs two different roof bolting patterns: a standard 5 × 5 foot pattern, and a 2.5 × 2.5 foot pattern for use in areas with particularly hazardous roof conditions. The purpose of this study is to evaluate the relative effectiveness of each bolting pattern. A series of numerical models were created using RocScience's RS2. The models were based on a symmetrical section of the mine at its deepest point, and were modeled using Generalized Hoek-Brown failure criterion along with a discrete fracture network. A series of sensitivity analyses were performed on the models by varying parameters such as joint friction angle, crack persistence, joint randomization, and tensile strength of the limestone. Based on the results of the original models and sensitivity analyses, it appears that the standard bolting pattern provides sufficient roof support capacity under almost all the expected conditions at the mine, since factors of safety below the design value of 1.5 were only found for individual bolts in a few of the worst test cases considered. These results can help improve the Mine's productivity and reduce operating costs without compromising safety.
机译:长期以来,屋顶锚杆已在世界各地的地下矿井中用于提供地面支撑。现代屋顶螺栓价格便宜,易于安装,并且在生产周期中可以使用专用机器进行安装。 Lhoist北美的Crab Orchard矿山是一个地下室和柱状石灰石矿,使用机械锚固的屋顶锚杆进行地面支撑。该矿井目前采用两种不同的顶板锚固样式:标准的5×5英尺样式和2.5×2.5英尺的样式,用于具有特别危险的顶棚条件的区域。本研究的目的是评估每种锚固方式的相对有效性。使用RocScience的RS2创建了一系列数值模型。这些模型基于矿山最深处的对称截面,并使用广义Hoek-Brown破坏准则以及离散的裂缝网络进行建模。通过改变参数,例如接头的摩擦角,裂纹持久性,接头的随机性和石灰石的拉伸强度,对模型进行了一系列的敏感性分析。根据原始模型的结果和敏感性分析,似乎标准的锚固样式可在矿井几乎所有预期条件下提供足够的顶板支撑能力,因为仅对单个螺栓发现了低于设计值1.5的安全系数。在一些最糟糕的测试案例中。这些结果可以帮助提高矿山的生产率,并在不影响安全性的情况下降低运营成本。

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