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Calibration of yielding pillar performance in deep level gold mines

机译:校准在深层金矿中屈服柱性能

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The performance of the yielding pillar in a deep level gold mine has been evaluated using Ground Penetrating Radar, Borehole periscope, and Abaqus Explicit numerical modeling. The objective of the study was to understand whether the design of the yielding pillar was not sufficient to maintain the stability of the yielding pillar. This research was conducted after multiple failures of the yielding pillar. Most of the failures occurred after minor seismic events that occurred in the vicinity of the de-stress cuts and long hole stopes. The results of the study have indicated that the first 1m of the yielding pillar towards the core of the pillar was extensively fractured.Moderate fracturing occurred between1.5 m to 2m within the yielding pillar and minor fractures were found in the core of the pillar. The results from Ground Penetrating Radar were similar to the borehole camera results. Further analysis conducted by the numerical model have shown a gradual decrease in sigma 1 (the greatest compressive stress) from the pillar surface towards the core of the pillar. A minimum stress of 80MPa was simulated at the core of the yielding pillar and maximum stress of 120 MPa was simulated from the pillar walls to 1m towards the core of the yielding pillar.
机译:使用地面穿透雷达,钻孔潜冲和ABAQUS明确的数值模型评估了屈服柱在深层金矿中的性能。该研究的目的是了解屈服柱的设计是否不足以保持屈服柱的稳定性。在屈服柱的多次故障后进行了该研究。大多数故障发生在脱离应力切割附近发生的轻微地震事件和长孔停止。该研究的结果表明,屈服柱朝向柱的芯的第一个1M的屈服柱被广泛破裂。分配压裂发生在屈服柱的屈服柱内,在柱的核心中发现了较小的骨折。地面穿透雷达的结果类似于钻孔相机结果。由数值模型进行的进一步分析已经示出了从柱表面朝向柱的芯的柱塞1(最大压缩应力)逐渐减小。在屈服柱的芯中模拟了80MPa的最小应力,并从柱壁模拟了120MPa的最大应力朝向屈服柱的核心。

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