首页> 外文期刊>Rock Mechanics and Rock Engineering >Long-Term Stability of a 13.7 x 30.5-m (45 x 100-ft) Undercut Span Beneath Cemented Rockfill at the Turquoise Ridge Mine, Nevada
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Long-Term Stability of a 13.7 x 30.5-m (45 x 100-ft) Undercut Span Beneath Cemented Rockfill at the Turquoise Ridge Mine, Nevada

机译:长期稳定性为13.7 x 30.5-m(45 x 100英尺)的底层垫在内华达州绿松石岭矿水泥岩石下面

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摘要

In 2001, researchers from the National Institute for Occupational Safety and Health (NIOSH) installed instruments at the Turquoise Ridge Mine in cooperation with Placer Dome, Inc. to monitor the geomechanical behavior and stability of a cemented rockfill (CRF) sill and the surrounding host rock during test mining of a large undercut span beneath backfill. Six parallel, adjacent drifts were mined and backfilled to construct a CRF sill, approximately 22.9 m (75 ft) wide by 30.5 m (100 ft) long. The sill was then partially undercut, successfully creating a 13.7-m (45-ft) wide by 30.5-m (100-ft) long span beneath the CRF. Only small vertical displacements were measured in the overlying host rock during mining, with most of the movement occurring at shallow depths in the mine roof. Because the back above the CRF sill remained stable, the majority of the mining-induced stress was transferred to the host rock abutments rather than to the backfilled drifts. During retreat mining of the undercut span, the CRF sill and the mine roof remained stable. Most of the measured vertical displacement was caused by separation of the backfill from the overlying host rock, or deflection of the CRF sill, which was comparable to the deflection of a monolithic, elastic plate having similar dimensions, material properties, and undercut spans. The CRF sill moved in mass as a single unit rather than as individual drift segments, and the vertical cold joints between adjacent backfill drifts did not adversely affect their stability. Additional measurements collected from the instruments have shown that the backfill span is still intact and in stable condition more than 16 years after the completion of undercut mining. Displacements in the mine roof and abutments have stabilized, and vertical stress and deformation within the CRF have generally leveled off or decreased. Although only slight mining-induced loads were transferred to the backfilled drifts, the CRF has confined the abutment ribs and mine roof, thereby improving their long-term stability. Results of compressive and tensile strength tests conducted with CRF samples from the test site indicate that the long-term compressive strength gain for CRF is similar to that of concrete, and that the tensile-to-compressive strength ratio for CRF is about 1/6 rather than 1/10. Assuming the in-place CRF gained strength at the same rate as the lab samples, an analytical analysis of the flexural stability of the CRF undercut span shows that the Factor of Safety for the span should have logically increased over time. By providing a better understanding of the long-term strength properties and geomechanical behavior of CRF, these research findings help improve the methods that are used for designing stable, long-term undercut entries beneath cemented backfill.
机译:2001年,来自国家职业安全和健康研究所(Niosh)的研究人员与帕尔固岭矿就安装了与Placer Dome,Inc。的仪器,以监测粘液堆石(CRF)窗台和周围主持人的地质力学行为和稳定性在回填的大底切跨度的测试开采期间岩石。六平行,相邻的漂移被挖出并回填以构建CRF窗台,约22.9m(75英尺)宽30.5μm(100英尺)。然后将窗台部分削弱,成功地在CRF下方创建了13.7-m(45英尺)的宽度30.5-m(100英尺)的长跨度。在矿井期间,在覆盖的主体岩石中仅测量小垂直位移,大部分运动发生在矿屋顶的浅深度。因为在CRF窗台上方保持稳定,所以大部分采矿诱导的应力被转移到宿主岩石基台而不是回填漂移。在撤退跨度落水期间,CRF窗台和矿屋顶保持稳定。大多数测得的垂直位移是由覆盖宿主岩石的回填或CRF系的偏转引起的,这与具有相似尺寸,材料特性和底切跨度的整体式弹性板的偏转相当。 CRF主体以质量移动为单个单位而不是单独的漂移段,并且相邻回填漂移之间的垂直冷关节不会对其稳定性产生不利影响。从仪器收集的额外测量表明,回物跨度仍然完好无损,在底切采矿完成后16年以上的稳定条件。矿山屋顶和基台的位移具有稳定性,并且CRF内的垂直应力和变形通常均匀或降低。尽管只将略微的采矿诱导的载荷转移到回填漂移中,但CRF限制了邻接肋和矿山屋顶,从而提高了它们的长期稳定性。从测试部位进行CRF样品进行的压缩和拉伸强度试验结果表明CRF的长期压缩强度增益与混凝土的长期压缩强度增益相似,并且CRF的拉伸强度比为约1/6而不是1/10。假设以与实验室样本相同的速率的原位获得强度,CRF削减跨度的弯曲稳定性的分析分析表明,跨度的安全因子应随着时间的推移逻辑地增加。通过提供对CRF的长期强度特性和地质力学行为来提供更好的理解,这些研究结果有助于改善用于设计稳定的稳定的长期底切条目的方法。

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