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Computational modelling of final covers for uranium mill tailings impoundments

机译:铀厂尾矿库的最终覆盖层的计算模型

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To properly design a final cover for uranium mill tailings impoundments the designer must attempt to find an effective geotechnical solution which addresses the radiological and non-radiological potential impact and prevents geochemical processes from occurring within the tailings. This paper presents a computer-based method for evaluating the performance of engineered final covers for the remediation of uranium mill tailings impoundments. Three hypothetical final covers were taken from scientific literature to investigate the proposed method: (ⅰ) a compacted clay liner (CCL); (ⅱ) a composite liner (CL) and (ⅲ) a capillary barrier (CB). The processes investigated: (ⅰ) the saturated hydraulic flux; (ⅱ) the unsaturated hydraulic flux (exclusively for the capillary barrier) and (ⅲ) the radon exhalation to the atmosphere. The computer programs utilised for the analyses are: (ⅰ) Hydrologic Evaluation of Landfill Performance (HELP); (ⅱ) SEEP/W and (ⅲ) RADON. The site considered for the development of the research presented herein was the uranium mill tailings impoundment located at the Brazilian city of Pocos de Caldas, in the Minas Gerais State.
机译:为了正确设计铀厂尾矿库房的最终覆盖层,设计人员必须设法找到有效的岩土工程解决方案,以解决放射线和非放射线的潜在影响并防止尾矿中发生地球化学过程。本文提出了一种基于计算机的方法,用于评估工程用最终覆盖物的性能,以修复铀厂尾矿库。从科学文献中提取了三个假设的最终覆盖层,以研究所提出的方法:(ⅰ)压实粘土衬垫(CCL); (ⅱ)复合衬里(CL)和(ⅲ)毛细管屏障(CB)。研究的过程:(ⅰ)饱和水力通量; (ⅱ)不饱和水力通量(专门用于毛细管屏障)和(ⅲ)ra气向大气的呼出。用于分析的计算机程序是:(ⅰ)垃圾填埋场性能的水文评估(HELP); (ⅱ)SEEP / W和(ⅲ)RADON。此处提出的用于研究发展的地点是位于米纳斯吉拉斯州巴西城市波科斯·德·卡尔达斯的铀厂尾矿库。

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