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Transferability of geoscientific information from various sources (study sites, underground rock laboratories, natural analogues) to support safety cases for radioactive waste repositories in argillaceous formations

机译:来自各种来源(研究地点,地下岩石实验室,天然类似物)的地球科学信息的可传递性,以支持泥质地层中放射性废物处置库的安全案例

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摘要

In studies related to deep geological disposal of radioactive waste, it is current practice to transfer external information (e.g. from other sites, from underground rock laboratories or from natural analogues) to safety cases for specific projects. Transferable information most commonly includes parameters, investigation techniques, process understanding, conceptual models and high-level conclusions on system behaviour. Prior to transfer, the basis of transferability needs to be established. In argillaceous rocks, the most relevant common feature is the microstructure of the rocks, essentially determined by the properties of clay-minerals. Examples are shown from the Swiss and French programmes how transfer of information was handled and justified. These examples illustrate how transferability depends on the stage of development of a repository safety case and highlight the need for adequate system understanding at all sites involved to support the transfer. (C) 2008 Elsevier Ltd. All rights reserved.
机译:在与放射性废物的深部地质处置有关的研究中,当前的做法是将外部信息(例如从其他站点,地下岩石实验室或天然类似物)转移到特定项目的安全案例中。可传递的信息通常包括参数,调查技术,过程理解,概念模型和有关系统行为的高级结论。转移之前,需要确定可转移性的基础。在泥质岩石中,最相关的共同特征是岩石的微观结构,基本上由粘土矿物的特性决定。瑞士和法国程序显示了如何处理和证明信息传递的示例。这些示例说明了可转移性如何取决于存储库安全案例的开发阶段,并强调了在所涉及的所有站点上都需要对系统有足够的了解以支持转移。 (C)2008 Elsevier Ltd.保留所有权利。

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