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SITE SELECTION STUDY FOR CONCEPTUAL DESIGN OF A DEEP UNDERGROUND RADIOACTIVE WASTE REPOSITORY IN AUSTRALIA

机译:澳大利亚深部地下放射性废物处置库概念设计的选址研究

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摘要

The management of radioactive waste has become a significant challenge for mankind as nuclear technology becomes increasingly commonplace. Many studies find Australia to be the ideal location to host a deep geological repository for permanent storage of high level radioactive waste (HLW). Despite ventures like the Pangea Resources study proposing a deep geological HLW repository in Australia, ardent political and social opposition has halted any real progress thus far. Researchers and industry experts are yet to identify a suitable location within Australia to host such a project.This paper presents a site selection study to identify and analyse a suitable location within Australia to host a deep geological HLW repository. Following the selection of a suitable site at Maralinga (site coordinates: 132° 30' 0 E, 29° 30' 0 S), core samples have been identified and inspected. This allowed for a suitable repository design to be chosen to match the geological conditions. A corresponding fracture network has been developed using FracMan and a solute transport simulation has been carried out to test the hydraulic performance of the site. This study indicates that the bedrock around the above mentioned coordinates is suitable for retarding radionuclide migration over a significant time period. Following the fracture modelling, a repository design for the considered geological conditions has been identified. Three dimensional finite element stress analysis has been conducted to verify the suitability of the chosen repository design for the geological conditions at Maralinga.
机译:随着核技术变得越来越普遍,放射性废物的管理已成为人类的重大挑战。许多研究发现,澳大利亚是拥有深层地质仓库以永久存储高放射性废物(HLW)的理想场所。尽管诸如Pangea Resources研究之类的冒险提议在澳大利亚建立一个深层的HLW地质储藏库,但迄今为止,热烈的政治和社会反对行动阻止了任何实际进展。研究人员和行业专家尚未确定在澳大利亚境内合适的地点来主持这样的项目。本文提出了一个选址研究,以识别和分析在澳大利亚境内合适的地点来主持一个深层地质高放废物库。在选择了Maralinga的合适地点(地点坐标:132°30'0 E,29°30'0 S)之后,已经确定并检查了岩心样品。这允许选择合适的储存库设计以匹配地质条件。已经使用FracMan开发了相应的裂缝网络,并进行了溶质运移模拟以测试现场的水力性能。这项研究表明,上述坐标周围的基岩适合于在相当长的时间内延迟放射性核素的迁移。在进行裂缝建模之后,已经确定了考虑地质条件的储层设计。已经进行了三维有限元应力分析,以验证所选储层设计对Maralinga地质条件的适合性。

著录项

  • 来源
  • 会议地点 Innsbruck(AT);Innsbruck(AT)
  • 作者单位

    School of Civil, Environmental and Mining Engineering, University of Adelaide, North Terrace, Adelaide, SA, 5005, Australia;

    School of Civil, Environmental and Mining Engineering, University of Adelaide, North Terrace, Adelaide, SA, 5005, Australia;

    School of Civil, Environmental and Mining Engineering, University of Adelaide, North Terrace, Adelaide, SA, 5005, Australia;

    School of Civil, Environmental and Mining Engineering, University of Adelaide, North Terrace, Adelaide, SA, 5005, Australia;

    School of Civil, Environmental and Mining Engineering, University of Adelaide, North Terrace, Adelaide, SA, 5005, Australia;

    School of Civil, Environmental and Mining Engineering, University of Adelaide, North Terrace, Adelaide, SA, 5005, Australia;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 人工智能理论;
  • 关键词

    radioactive waste repository; solute transport simulation;

    机译:放射性废物处置库;溶质运移模拟;

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