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The Development of a Multiple Level Underground Limestone Mine from Geology Through Mine Planning

机译:从地质学到矿山规划开发多层地下石灰岩矿

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The development of a multiple level underground mine is a complex task in which geology, engineering, ground control, and unit operations are integrated into a single mine design. The components are inter-dependent and must function cohesively to ensure a profitable underground mining operation. To optimize reserve recovery, mine planning should begin from the lowest level and progress up. This limits any misjudgments or oversights of a given level affecting the underlying levels and ensures the ability to maximize recovery from each level. Mine planning should start with the exploration and characterization of the geologic setting. Once the reserve geology and quality is well understood, then mine planning can begin with respect to the following: 1. Orientation of mine works with respect to horizontal stress, 2. Access to the reserve, 3. Determination of opening widths, 4. Selection of back, floor horizons and pillar centers. 5. Selection of development and secondary mining heights, 6. Appropriate interburden thicknesses, and 7. Examine the stability of the multiple level mine through numerical modeling. The multiple level mine design process and decisions are presented through a case history example. The theme is that there is one opportunity to "get it right" as well as many chances to overlook a small aspect within the design that will plague the mine throughout all levels and through the entirety of its operating life.
机译:多层地下矿山的开发是一项复杂的任务,其中将地质,工程,地面控制和单元操作集成到单个矿山设计中。这些组件是相互依存的,并且必须具有凝聚力,以确保盈利的地下采矿作业。为了优化储量回收,矿山规划应从最低层开始并逐步进行。这限制了对影响基础级别的给定级别的任何错误判断或疏忽,并确保了从每个级别最大化恢复的能力。矿山规划应从对地质环境的勘探和特征化开始。一旦对保护区的地质和质量有了充分的了解,就可以从以下方面开始进行矿山规划:1.矿山工程相对于水平应力的方向; 2.进入保护区; 3.确定开口宽度; 4.选择背部,地面和支柱中心。 5.选择开发高度和二次开采高度,6.选择合适的层间厚度,以及7.通过数值建模检查多层煤矿的稳定性。通过案例历史记录示例介绍了多层次的矿山设计过程和决策。主题是,有一个“正确解决”的机会,同时也有很多机会忽略了设计中的一个小方面,这将困扰矿山的各个层面以及整个运营寿命。

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