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首页> 外文期刊>International Journal of Rock Mechanics and Mining Sciences >Integration of underground mapping, petrology, and high-resolution microseismicity analysis to characterise weak geotechnical zones in deep South African gold mines
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Integration of underground mapping, petrology, and high-resolution microseismicity analysis to characterise weak geotechnical zones in deep South African gold mines

机译:地下测绘,岩石学和高分辨率微震性分析的整合,以深度南非金矿弱岩土地区的特征

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摘要

A highly-stressed shaft pillar is prone to large seismic events, falls of ground and rockbursts, which may cause injuries and loss of production, especially in weak geotechnical zones. It is thus important to identify weak geotechnical zones in order to mitigate risks. In this study, we present integrated studies (underground mapping, petrology, rock mechanics and high-resolution microseismicity analysis) to understand the different geotechnical zones in the shaft pillar of Cooke 4 mine in South Africa. The footwall of the remnant shaft pillar comprises the Upper Elsburg reef of the Mondeor Formation, while the Ventersdorp Contact Reef (VCR) of the Venterspost Formation and soft/weak lavas of the Westonaria Formation form the hangingwall. Results from underground mapping and microscopic analysis show that the shaft pillar is composed of quartzites, pebbly quartzites, argillaceous quartzites and conglomerates. Underground mapping further shows that the shaft pillar is characterized by several discontinuities, which vary from minor to macro scale fractures. Laboratory uniaxial compressive strength (UCS) tests indicate that quartzite has the strongest strength, followed by pebbly quartzite, argillaceous quartzite and lastly, conglomerate. Analysis of high-resolution acoustic emissions (AEs) clusters indicates that the majority of AEs are associated with the mining scope faces. The clusters show the formation of Ortlepp shears ahead of the scope, which is caused by the excavation-induced stress field. Microseismic data further reveal that the fracture turning-point occurs in the soft strata (weak hangingwall lavas). The integration of these datasets has allowed us to develop the fracture model for different geotechnical zones, which concurs with previous models developed for the similar underground environment (i.e., weak/soft lava hangingwall and quartzite/conglomerate footwall). This has major implications for future mining, support, production and safety.
机译:高度压力的轴柱易于大地震事件,地面和摇滚萎缩,这可能导致生产损失和损失,特别是在弱岩土区域。因此,识别弱的岩土地区以减轻风险是重要的。在这项研究中,我们展示了综合研究(地下绘图,岩石学,岩石力学和高分辨率微震性分析),以了解南非Cooke 4矿井轴支柱中的不同岩土区域。残余轴柱的脚踏壁包括Mondeor形成的上埃尔斯堡珊瑚礁,而Ventersdorp接触礁(VCR)的VENTERSDORP组成和Westonaria形成的软/弱熔岩形成悬挂壁。地下映射和微观分析结果表明,轴柱由石英岩,卵石石英岩,骨质石英岩和集团组成。地下贴图进一步表明,轴柱的特征在于几种不连续性,其从较小到宏观垢的裂缝变化。实验室单轴抗压强度(UCS)测试表明,石英岩具有最强的强度,其次是卵石石英岩,骨质石英石,最后,集团。高分辨率声排放(AES)簇的分析表明大多数AES与采矿范围面相关。群集显示在范围的范围内涂抹曲调的形成,这是由挖掘引起的应力场引起的。微震数据进一步揭示了骨折转弯点在柔软的地层(薄壁悬挂瓦斯)中发生。这些数据集的整合使我们能够为不同的岩土地区开发裂缝模型,这种区域的裂缝模型会加上为类似地下环境开发的以前的型号(即软熔岩悬挂壁和石英岩/砾岩覆盖物)。这对未来采矿,支持,生产和安全具有重大影响。

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  • 作者单位

    Univ Witwatersrand Johannesburg Sch Geosci PO Bag 3 ZA-2050 Johannesburg South Africa;

    Univ Witwatersrand Johannesburg Sch Geosci PO Bag 3 ZA-2050 Johannesburg South Africa;

    Univ Witwatersrand Johannesburg Sch Geosci PO Bag 3 ZA-2050 Johannesburg South Africa;

    Ritsumeikan Univ Coll Sci &

    Engn 1-1-1 Noji Higashi Kusatsu 5258577 Japan;

    Tohoku Univ Grad Sch Engn Aoba Ku 6-3 Aza Aoba Sendai Miyagi 9808578 Japan;

    CSIR Rock Mech Lab CC Cnr Carlow &

    Rutenburg Rd Bldg 3 ZA-2092 Melville Gauteng South Africa;

    Tel Aviv Univ Dept Geosci POB 39040 Tel Aviv Israel;

    Inst Mine Seismol Private Bag X15 ZA-7129 Somerset West South Africa;

    CSIR POB 395 Pretoria South Africa;

    Sibanye Gold Ltd Cooke 4 Shaft POB 82 Westonaria South Africa;

    Kyoto Univ Dept Civil &

    Earth Resources Engn Kyoto 6158540 Japan;

    Tohoku Univ Grad Sch Engn Aoba Ku 6-3 Aza Aoba Sendai Miyagi 9808578 Japan;

    Univ Tokyo Earthquake Res Inst Bunkyo Ku 1-1-1 Yayoi Tokyo 1130032 Japan;

    Ritsumeikan Univ Coll Sci &

    Engn 1-1-1 Noji Higashi Kusatsu 5258577 Japan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 岩石(岩体)力学及岩石测试;
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