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Sample Rocks Tests and Slope Stability Analysis of a Mine Waste Dump

机译:矿山垃圾场的岩样测试和边坡稳定性分析

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摘要

The safety and stability of waste dump are vital influencing factors to the mine sustainability and mine employees. Based on a real mine project in a certain open-pit mine waste dump in Tibet, the in situ test on waste rocks from waste dump, including measurements of density, water content, rock size, and natural repose angle, was conducted. Afterwards, these sample waste rocks, of which grain size is less than 5 cm, were selected for indoor large-scale shear test under natural and saturated conditions. By using some engineering methods, the physical and mechanical parameters of waste rocks layer were then determined accordingly. MIDAS-GTS/NX has the advantage of pre-processing modeling. FLAC3D has good computational and analytical capabilities. The process of dump accumulation is simulated numerically. According to the calculation results of FLAC3D, the distribution of stress, displacement and plastic zone in the dump is obtained. FOS (factor of safety) for each analytical step in this model was then calculated through the strength reduction method. The limit equilibrium method is used for waste dump stability analysis considering three states only applied gravity, applied gravity and rainfall, and applied gravity and underground water. The results from this analysis show that the waste dump is stable. The potential failure modes of waste dump mainly consist of the “combined sliding mode” which has circular sliding in upper side and broken line sliding that cuts through gravel-soil layer into heavily weathered layer in the bottom. This paper documents some of the procedures and approaches utilized for waste dump life-of-mine design analysis. It provides reference for further waste dump optimization.
机译:垃圾场的安全性和稳定性是影响矿山可持续性和矿山员工的关键因素。基于某矿山某露天矿场的真实矿山项目,对矿场产生的waste石进行了现场测试,包括密度,含水量,岩石大小和自然休止角的测量。然后,选择这些晶粒尺寸小于5 cm的废石进行自然和饱和条件下的室内大规模剪切试验。通过工程手段,确定了determined石层的物理力学参数。 MIDAS-GTS / NX具有预处理建模的优势。 FLAC3D具有良好的计算和分析功能。数值模拟了垃圾场堆积的过程。根据FLAC3D的计算结果,得出堆场中的应力,位移和塑性区的分布。然后,通过强度折减法计算该模型中每个分析步骤的FOS(安全系数)。极限平衡法用于废物倾倒稳定性分析,考虑了仅施加重力,施加重力和降雨以及施加重力和地下水的三种状态。分析结果表明,垃圾场是稳定的。废物倾倒的潜在失效模式主要包括“组合滑动模式”,该模式在上侧具有圆形滑动,而在虚线中滑动则将砾石土壤层切割成底部的严重风化层。本文记录了用于废物倾倒矿山寿命设计分析的一些程序和方法。它为进一步优化废物倾倒提供了参考。

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