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A column study of the hydro-mechanical behavior of mature fine tailings under atmospheric drying

机译:大气干燥下成熟细尾矿流体力学行为的柱研究

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In this paper, the hydro-mechanical behavior and physical properties of mature fine tailings(MFT) under atmospheric drying are investigated through a column study. In the study, evaporation takes place in the development of suction in the upper parts of the column and increasing suction leads to higher strength in the tailings. After 5 days, the suction in the first lift is around 17 k Pa in the upper part of the column.When a second lift is added, the first lift initially loses strength but over a 30 days’ period, the strength is recovered to its prior value and suction in the second lift reaches 500 k Pa. The vane shear strength values show a substantial increase in the strength of the MFT after 30 days under atmospheric drying and drainage. The 90% strength found in the column exceeds the threshold(5 k Pa). The hydraulic-mechanical properties of the deposited tailings are closely coupled due to several mechanisms, such as evaporation,drainage, self-consolidation, suction and crack development. The findings of this study will provide a better understanding of the placement behavior of multiple lifts of MFT and thus contribute to reclamation design standards and reduce the use of dedicated disposal areas.
机译:本文通过柱研究研究了成熟细尾矿在大气干燥条件下的流体力学行为和物理性能。在研究中,蒸发是在塔上部的吸力发展过程中发生的,吸力的增加导致尾矿的强度更高。 5天后,第一个提升机的吸力在塔上部大约为17 k Pa。添加第二个提升机时,第一个提升机最初会失去强度,但经过30天的时间后,强度恢复到第二举升的先验值和吸力达到500 k Pa。叶片剪切强度值显示,在大气干燥和排水下30天后,MFT强度显着增加。列中的90%强度超过阈值(5 k Pa)。沉积尾矿的水力机械特性由于多种机理而紧密耦合,例如蒸发,排水,自固结,吸力和裂缝发展。这项研究的结果将提供对MFT多个升降机的放置行为的更好理解,从而有助于填海设计标准并减少对专用处置区域的使用。

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