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3D Modelling of Mine Backfill

机译:矿井回填的3D建模

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Numerical modeling has been used extensively to assess the stability of surface and underground mines. Tabular, steeply dipping ore bodies are generally mined out by open stoping methods with delayed backfill. Cemented rockfill (CRF) is employed as a backfill material for narrow vein deposits with low production rates. Sublevel stoping methods with delayed backfill are employed to mine out steeply dipping ore bodies. Backfill is exposed to blast-induced vibrations and dynamic loading due to loss of confinement, which could lead to backfill failures. Backfill failures could influence the operating cost of a mining stope and the productivity of the entire mining project. This work shows a detailed overview of the factors contributing to backfill failure. A detailed literature review is presented along with case studies of longhole stoping operations from the Canadian Shield region for this work. The backfilled stopes are analyzed with the finite difference code FLAC3D. The literature review shows that the factors primarily responsible for fill failure are the strength of backfill, stope geometry, mining sequence, and blast-induced vibrations.
机译:数值建模已被广泛用于评估表面和地下矿井的稳定性。平板,陡峭的浸渍矿体通常通过延迟回填的开放式止动方法开采。粘液堆石(CRF)用作具有低生产率窄静脉沉积物的回填材料。具有延迟回填的Sublevel停止方法用于排出陡峭的浸渍矿石。由于监禁损失,回填是暴露于鼓胀的振动和动态负荷,这可能导致回填失败。回填故障可能影响挖掘的运营成本和整个矿业项目的生产力。这项工作显示有助于回填失败的因素的详细概述。详细的文献综述以及来自加拿大盾区的长孔停止运营的案例研究。用有限差分码FLAC3D分析回填止止。文献综述表明,主要负责填充失败的因素是回填,迹象几何形状,采矿序列和喷射诱导的振动的强度。

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