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Stability Evaluation of Chenmenshan open-pit by SURPAC and MIDAS

机译:Surpac和Midas的陈梅汉露天坑稳定性评价

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Chengmenshan open pit has been constructed to be the biggest copper pit in China. The slope designed with empirical rock mass rating and engineering analogy needs reinvestigation and evaluation for its overall stability. With help of SURPAC, the topographic contour of the mine was converted into surface model. Then the geological information of the mine was embedded into the numerical solid model by NURBS treatment of the core loggings. Through overall stability analysis with MIDAS, it was found that there was no obvious failure in the pit with the current design. But the major principal stress at the north especially the north-east corner of the pit tended to be high, so the width of the bench below the high stress region is suggested to be widened for possible collapse in this region. And field observation should be carried out in the region. Once evident slip or collapse happens, anchor and netting structures should be used. At the same time, high shear stress zones were revealed at the south-east of the outside limit of the pit. More planting is suggested to avoid soil creep or even landslides in heavy rain.
机译:成都山露天坑被建造在中国最大的铜坑。设计具有经验岩体质量额定值和工程类比的斜坡需要加强和评估其整体稳定性。在Surpac的帮助下,矿井的地形轮廓被转换为表面模型。然后通过NURBS处理核心测井的NURBS嵌入了矿井地质信息。通过与Midas的整体稳定性分析,发现目前设计没有明显的故障。但北方的主要主要压力尤其是坑的东北角倾向于很高,因此建议在该地区的可能折叠下方的替补座的宽度。和现场观察应在该地区进行。一旦发生明显的滑动或崩溃,应使用锚和网状结构。与此同时,高剪切应力区域在坑外侧的向南露出。建议更多种植以避免土壤蠕变或甚至在大雨中的滑坡。

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