Wang Shuai, Cao Bo, Bai Runcai, Liu Guangwei
College of Mining, Liaoning Technical University, Fuxin, 123000, China.
Sci Rep. 2024 Aug 24;14(1):19710. doi: 10.1038/s41598-024-70902-9.
Rock and soil strength profoundly influences the stability of open-pit mine slopes. Traditional slope design, based on limited drilling data, often disregards inherent uncertainties. Effectively utilizing new sample information from mining operations poses a challenge, hindering dynamic and differentiated design for the entire perimeter slope. To address this, we propose a dynamic optimization method considering rock mass strength uncertainty for the entire perimeter slope. Our approach involves designing slope angles separately in different zones, while thoroughly considering decision-makers' preferences. Furthermore, we delegate the final adjustment authority of slope angles within the safety permissible range to on-site decision-makers. Compared to traditional methods, our dynamic design method incorporates rock mass strength uncertainty into slope evaluation while also accounting for decision-makers' safety and economic preferences. Through a case study of a specific open-pit mine, our proposed dynamic design method increases the overall slope angle by approximately 2.5°, fully accommodating the influence of on-site decision-making preferences on slope design. This article introduces a new method of dynamic optimization of open-pit mine slope based on simplified observation method, which improves the flexibility of decision-making and realizes the differential design of the whole surrounding slope.
岩土强度对露天矿边坡的稳定性有着深远影响。基于有限钻孔数据的传统边坡设计往往忽视了内在的不确定性。有效利用采矿作业中的新样本信息面临挑战,这阻碍了对整个周边边坡进行动态和差异化设计。为解决这一问题,我们提出了一种考虑岩体强度不确定性的整个周边边坡动态优化方法。我们的方法包括在不同区域分别设计边坡角度,同时充分考虑决策者的偏好。此外,我们将安全允许范围内边坡角度的最终调整权委托给现场决策者。与传统方法相比,我们的动态设计方法在边坡评估中纳入了岩体强度不确定性,同时还考虑了决策者的安全和经济偏好。通过对某一特定露天矿的案例研究,我们提出的动态设计方法使整体边坡角度提高了约2.5°,充分考虑了现场决策偏好对边坡设计的影响。本文介绍了一种基于简化观测方法的露天矿边坡动态优化新方法,提高了决策的灵活性,实现了整个周边边坡的差异化设计。