Deformation and failure of a high steep slope due to transformation from deep open-pit to underground mining
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摘要: 以大冶鐵礦為工程背景,采用相似材料模型實驗和數值模擬計算相結合的方法,對深凹露天轉地下開采高陡邊坡的變形和破壞規律進行了系統研究.首先,模型相似實驗中,采用百分表、壓力傳感器和近景攝影測量等手段監測模型的應力應變和破壞特征,對圍巖位移和破壞裂紋進行系統分析,揭示了高陡邊坡的變形和破壞基本規律.其次,采用有限差分軟件,從地表沉降量、應力值變化和塑性區分布等方面與相似材料實驗結果進行了對比分析.結果表明,高邊坡豎向最大沉降為28.2mm,圍巖破壞程度隨著開采深度的增加遞增,塑性區范圍不斷擴大,剪切破壞主要集中在兩側邊坡的邊腳部位.相似模型實驗和數值模擬相結合可以較好地揭示深凹露天轉地下開采過程中高陡邊坡的變形和破壞基本特征,是一種較好的理論研究方法.Abstract: The deformation and failure law of a high steep slope during transformation from deep open-pit to underground mining using similar material physical models and numerical simulation was researched with Daye Iron Mine as an example. The similar material physical model was monitored with stress sensors, dial-gauge displacement sensors, and close-range photogrammetry methods to obtain the failure and stress-strain characteristics. Systematic analysis was made on displacement and crack failure of surrounding rock to discover the basic deformation and failure law of the high steep slope. The stress distributions, surface subsidence, and plastic zones predicted by a finite-difference numerical model were compared with those measured from the similar material model experiment. The results indicate that the maximum vertical settlement of the high steep slope is 28.2 mm. The extent of damage and the plastic zone in- crease with the mining depth increasing. The shear failure of the rock mass mainly appears at the foot of the two sides slopes. The combination of similar modeling and numerical modeling is a good solution for research on the basic characteristics of rock mass deformation and failure of high-steep slopes during transformation from deep open-pit to underground mining.
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Key words:
- underground mining /
- open pit,steep slope /
- deformation and failure /
- model experiment /
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