Comparison of field and laboratory data in relation to cover design on TSF closure

P. Chapman, David J. Williams
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Abstract

Developing designs for closure covers of tailings storage facilities is challenging and typically requires modelling using various climatic and material-specific assumptions. In many cases, data for the site are limited and the designer must make assumptions in order to carry out the design analyses. This can lead to overly conservative modelling, which in turn results in conservative, more expensive solutions. Closure models rely on climate data and unsaturated material parameters as the key inputs and there can be considerable errors if the climate data or unsaturated parameters are inaccurate. In order to provide site-specific climate information, as well as unsaturated parameters, field moisture content and matric suction measurements of the desiccation and resaturation cycles of sulphide nickel tailings located in an arid climate have been collected over a period of two years, along with climate data from a weather station installed at the site. These data are compared with a numerical model calibrated against data collected during a laboratory column test carried out under controlled conditions, which showed close agreement with the field data. This paper presents a comparison of the field data collected to a model that was calibrated against laboratory column data. The calibrated model data showed good agreement with the field data and suggest that the results of predictive modelling are likely to be reasonable for closure cover design purposes.
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与TSF封闭盖设计有关的现场和实验室数据的比较
开发尾矿储存设施封闭盖的设计具有挑战性,通常需要使用各种气候和材料特定假设进行建模。在许多情况下,场地的数据是有限的,设计师必须做出假设,以便进行设计分析。这可能导致过于保守的建模,从而导致保守的、更昂贵的解决方案。关闭模式依赖于气候数据和非饱和材料参数作为关键输入,如果气候数据或非饱和参数不准确,可能会有相当大的误差。为了提供特定地点的气候信息以及非饱和参数,在两年的时间里收集了干旱气候下硫化物镍尾矿的干燥和再饱和循环的现场水分含量和基质吸力测量数据,以及安装在该地点的气象站的气候数据。这些数据与在受控条件下进行的实验室柱测试中收集的数据校准的数值模型进行了比较,结果显示与现场数据非常吻合。本文将收集的现场数据与根据实验室柱数据校准的模型进行了比较。校正后的模型数据与现场数据吻合良好,表明预测模型的结果可能是合理的封闭盖设计目的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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