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Geotechnical characterization of mine waste rock

机译:矿井废弃岩的岩土性素材

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The determination of geotechnical characterises of waste rock is essential for addressing issues of in situ hydrology and the stability of steep and high-standing dumps. Based on laboratory investigations and numerical modeling, this paper gives the geotechnical properties of a selected waste rock under saturated and unsaturated conditions. Results indicated that the engineering behavior of the investigated waste rock is similar to granular soils and governed by the "well-graded" and "very angular" nature of the materials. The samples exhibited low air entry values (0.2 and 0.8 kPa) and low water storage (0.44) along with a high saturated hydraulic conductivity (1 × 10~(-5) m/s). The hydraulic conductivity dropped sharpely beyond the air entry value by up to eight orders of magnitude at 200 kPa. The shear strength was identical to loose coarse materials and was primarily derived from the angle of internal friction that measured 37° to 39°, similar to the angle of repose. Additional strength can be availabe in the form of effective cohesion due to clays and cementation and apparent cohesion due to matric suction.
机译:废岩地岩土性表征的确定对于解决原位水文问题以及陡峭和高站倾卸的稳定性是必不可少的。基于实验室调查和数值建模,本文在饱和和不饱和条件下提供了选定废岩的岩土性质。结果表明,调查的废岩的工程行为类似于颗粒土壤,并受到材料的“良好分级”和“非常有角度”的管制。样品显示出低空气入口值(0.2和0.8kPa)和低蓄​​水(0.44),以及高饱和的液压导电性(1×10〜(-5)m / s)。液压电导率在200kPa的200kPa下显着降至空气入口值高达八个数量级。剪切强度与松散的粗材料相同,主要来自测量37°至39°的内部摩擦角,类似于休息角。由于粘土和胶粘剂引起的粘合和显着的粘性,额外的强度可以是有效的粘合形式的形式可用。

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