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Comprehensive evaluation of high-steep slope stability and optimal high-steep slope design by 3D physical modeling

机译:3D物理建模高陡坡稳定性和最优高陡坡设计的综合评价

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摘要

High-steep slope stability and its optimal excavation design in Shuichang open pit iron mine were analyzed based on a large 3D physical simulation technique. An optimal excavation scheme with a relatively steeper slope angle was successfully implemented at the northwest wall between Nos. 4 and 5 exploration lines of Shuichang Iron Mine, taking into account the 3D scale effect. The physico-mechanical properties of rock materials were obtained by laboratory tests conducted on sample cores from exploration drilling directly from the iron mine. A porous rock-like composite material was formed for the model, and the mechanical parameters of the material were assessed experimentally; specifically, the effect of water on the sample was quantitatively determined. We adopted an experimental setup using stiff modular applied static loading to carry out a visual excavation of the slope at a random depth. The setup was equipped with acoustic emission (AE) sensors, and the experiments were monitored by crack optical acquirement, ground penetrating radar, and close-field photogrammetry to investigate the mechanisms of rock-mass destabilization in the high-steep slope. For the complex study area, the model results indicated a clear correlation between the model's destabilization resulting from slope excavation and the collected monitoring information. During the model simulation, the overall angle of the slope increased by 1-6 degrees in different sections. Dramatically, the modeled excavation scheme saved over 80 million tons of rock from extraction, generating enormous economic and ecological benefits.
机译:基于大型3D物理仿真技术,分析了高陡坡稳定性及其在水平露天坑矿的最佳挖掘设计。具有相对较陡峭的倾斜角的最佳挖掘方案在No.4和5勘探线的西北墙上成功地实施了水平铁矿的第4行,考虑到3D规模效应。通过直接从铁矿的勘探钻探的样品芯进行实验室测试获得岩材料的物理机械性能。形成多孔岩状复合材料,用于模型,实验评估材料的机械参数;具体地,定量测定水对样品对样品的影响。我们采用了一种使用僵硬的模块化静态负荷进行了实验设置,以随机深度进行斜率的视觉挖掘。该设置配有声学发射(AE)传感器,通过裂纹光学获取,地面穿透雷达和近场摄影测量来监测实验,以研究高陡坡岩体稳定化的机制。对于复杂的研究区域,模型结果表明模型对坡挖掘和收集的监测信息产生的模型的稳定化之间的明显相关性。在模型仿真期间,斜率的总角度在不同的部分中增加了1-6度。显着的,所建模的挖掘方案从提取中保存超过8000万吨岩石,产生巨大的经济和生态效益。

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