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A New Methodology for Open Pit Slope Design in Karst-Prone Ground Conditions Based on Integrated Stochastic-Limit Equilibrium Analysis

机译:基于综合随机-极限平衡分析的岩溶-Prone地表露天矿边坡设计新方法

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摘要

Using the Chengmenshan Copper Mine as a case study, a new methodology for open pit slope design in karst-prone ground conditions is presented based on integrated stochastic-limit equilibrium analysis. The numerical modeling and optimization design procedure contain a collection of drill core data, karst cave stochastic model generation, SLIDE simulation and bisection method optimization. Borehole investigations are performed, and the statistical result shows that the length of the karst cave fits a negative exponential distribution model, but the length of carbonatite does not exactly follow any standard distribution. The inverse transform method and acceptance-rejection method are used to reproduce the length of the karst cave and carbonatite, respectively. A code for karst cave stochastic model generation, named KCSMG, is developed. The stability of the rock slope with the karst cave stochastic model is analyzed by combining the KCSMG code and the SLIDE program. This approach is then applied to study the effect of the karst cave on the stability of the open pit slope, and a procedure to optimize the open pit slope angle is presented.
机译:以城门山铜矿为例,基于综合随机极限平衡分析,提出了岩溶多发地表露天矿边坡设计的新方法。数值建模和优化设计程序包含钻芯数据,岩溶洞穴随机模型生成,滑坡模拟和对分方法优化的集合。进行了钻孔研究,统计结果表明,岩溶洞穴的长度符合负指数分布模型,但碳酸盐岩的长度并不完全符合任何标准分布。逆变换法和验收拒绝法分别用于再现岩溶洞穴和碳酸盐岩的长度。开发了一个名为KCSMG的岩溶洞穴随机模型生成代码。通过结合KCSMG代码和SLIDE程序,分析了具有岩溶洞穴随机模型的岩石边坡的稳定性。然后将该方法用于研究岩溶洞穴对露天矿边坡稳定性的影响,并提出了优化露天矿边坡角度的程序。

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