Rock Slope Stability Analysis by Using Integrated Approach

D. Moses, H. Shimada, T. Sasaoka, A. Hamanaka, T. Dintwe, Sugeng Wahyudi
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引用次数: 1

Abstract

Slope stability assessment is an essential aspect of mining and civil engineering. In this study, Songwe open-pit mine in Malawi was investigated to establish possible pit slope instability. In performing the analysis, an integrated approach entailing rock mass characterisation, kinematic and numerical methods were applied. Based on rock mass classification system, Songwe Hill carbonatite rock mass is characterised as a good rock but still it possesses numerous random discontinuities that present a complex challenge in geotechnical engineering. Dip 6.0 software was used in carrying out kinematic analysis based on the attributes of discontinuities. The results show that there is a 16% likelihood of planar failure in the divided slope sections of the planned pit. Thus, slope angle optimisation to 41° has been proposed as a counter-measure to minimise the potential risk of planar failure. At the optimised angle, the risk of planar failure could be reduced by 44%. On the other hand, wedge failure was found to be improbable since no joint intersections were found in the critical zone of potential failure. For numerical analysis, finite element code was applied using FLAC3D 5.0 application. The results demonstrate that overall slope angle of 41° would offer a favourable balance between safety and mining economics as mining operations progress to deeper horizons thereby avoiding a costly push back solution due to instability.
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岩质边坡稳定性综合分析
边坡稳定性评价是采矿和土木工程的一个重要方面。本研究以马拉维的Songwe露天矿为研究对象,建立可能的矿坑边坡失稳。在进行分析时,采用了包含岩体特征、运动学和数值方法的综合方法。基于岩体分类系统,松尾山碳酸盐岩岩体具有良好的岩体特征,但其内部存在大量随机结构面,这给岩土工程带来了复杂的挑战。采用Dip 6.0软件根据不连续面属性进行运动学分析。结果表明,在规划的矿坑分段边坡中,平面破坏的可能性为16%。因此,已提出将坡角优化至41°作为一种应对措施,以尽量减少平面破坏的潜在风险。在优化角度下,平面破坏风险可降低44%。另一方面,由于在潜在破坏的临界区域没有发现节理相交,因此发现楔形破坏是不可能发生的。数值分析采用FLAC3D 5.0应用程序进行有限元编码。结果表明,随着采矿作业向更深的层位推进,41°的总坡度角将在安全和采矿经济之间提供有利的平衡,从而避免了由于不稳定而导致的昂贵的推回解决方案。
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