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Numerical investigation of the influence of waste rock inclusions on tailings consolidation

机译:waste石包裹体对尾矿固结影响的数值研究

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摘要

The construction of waste rock inclusions (WRIs) in a tailings impoundment constitutes an alternative disposal technique that aims at improving the management of mine wastes. This technique consists in strategically placing the WRIs inside the impoundment, at the beginning and during its operation, to form compartments (or cells) in which the tailings are stored. Such inclusions can serve various purposes. In this paper, the authors investigate the effects of drainage from WRIs on tailings consolidation during filling of the impoundment, using experimental data from hard rock mines that provide the hydrogeological and geotechnical properties introduced in the numerical analyses. The model used for the simulations represents a cross section of a portion of a tailings impoundment containing a WRI. The numerical calculations results illustrate how the WRI affects the dissipation of the excess pore water pressures (PWPs) during filling of the impoundment, and help quantify the extent of the zone of influence of the inclusion. The results from the parametric analysis show that the saturated hydraulic conductivity k(sat), compression index C-c, thickness, and deposition rate of the tailings are the main factors that affect the efficiency of WRIs to accelerate dissipation of excess PWPs. The discussion that follows recalls the main limitations of this investigation and addresses practical aspects related to the WRIs technique.
机译:在尾矿库中建造废石包裹体(WRI)构成了另一种旨在改善矿山废物管理的处置技术。该技术包括在开始时和操作期间从策略上将WRI放置在蓄水池内,以形成存放尾矿的隔室(或单元)。这样的夹杂物可以用于各种目的。在本文中,作者使用硬岩矿的实验数据研究了WRIs排水对蓄水期间尾矿固结的影响,这些实验数据提供了数值分析中介绍的水文地质和岩土特性。用于仿真的模型表示包含WRI的尾矿库房一部分的横截面。数值计算结果说明了WRI如何在蓄水蓄水期间影响过高孔隙水压力(PWP)的消散,并有助于量化夹杂物影响区域的程度。参数分析的结果表明,饱和水导率k(sat),压缩指数C-c,尾矿的厚度和沉积速率是影响WRI加速多余PWP消散效率的主要因素。随后的讨论回顾了这项研究的主要局限性,并讨论了与WRI技术相关的实际问题。

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