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The role of capillary water in the stability of tailing dams

机译:毛细水在尾矿坝稳定性中的作用

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摘要

Tailings storage facilities are complex geotechnical structures. The present paper focuses on the study of a case-history, a tailing dam from the nickel industry located in Cuba, with the objective of gaining knowledge about the geotechnical behaviour of such structures. The dam behaviour was modelled by means of a coupled hydro-mechanical finite element formulation. Due to the low permeability of tailings, the phreatic surface in the deposit remains high during and after its construction. Steady-state flow regime would be reached only several decades after closure. Moreover, capillary rise causes the saturation degree to stay high in the whole storage. Under the action of rain storms, phreatic levels rise quickly due to the presence of capillary water. Following the end of the storm, phreatic levels fall slowly because of the low hydraulic conductivity. The results of the analysis show that the stability of the dam strongly depends on capillary phenomena. In the light of this conclusion it seems reasonable to propose including the measurement of capillary water in the standard monitoring schedule of tailing dams.
机译:尾矿存储设施是复杂的岩土结构。本文的重点是研究案例历史,这是一个位于古巴的镍业的尾矿坝,目的是获得有关此类结构的岩土行为的知识。通过耦合的水力机械有限元公式化来模拟大坝行为。由于尾矿的低渗透性,矿床中的潜水面在施工期间和施工后仍保持较高的水平。封闭后仅几十年即可达到稳态流动状态。此外,毛细管上升导致整个存储中的饱和度保持较高。在暴雨的作用下,由于毛细水的存在,潜水位迅速上升。风暴结束后,由于水力传导率低,潜水位缓慢下降。分析结果表明,坝体的稳定性很大程度上取决于毛细现象。根据这一结论,建议在尾矿坝的标准监测计划中包括测量毛细管水似乎是合理的。

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