深层地质处置库安全案例的科学基础——过去和未来的挑战,以及如何在操作过程中保持知识和能力

IF 0.9 Q3 NUCLEAR SCIENCE & TECHNOLOGY
J. Andersson
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引用次数: 3

摘要

乏核燃料的最终储存库即将实施。取得这些进步的一个先决条件是,已经证明,储存库可以在实践中以这样一种方式建造和操作,即在操作期间和很长一段时间内都可以确保安全。这一成功依赖于数十年的结构化和目标驱动的研发。研究战略的一个关键要素是确保充分的内部能力和专门知识。开放和国际合作也是必不可少的。数据鉴定、版本控制以及内部和外部同行评审的可行程序变得越来越重要。当这些方案现在进入建设和运作的新阶段时,将出现新的挑战。即使实施组织需要在关闭后安全评估方面保持核心竞争力,国际合作在开发、分享和管理所需知识方面将更加重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Science underpinning the safety case of deep geological repositories − challenges in the past and in the future and how to maintain knowledge and competence during operation
Final repositories for spent nuclear fuel are approaching implementation. A prerequisite for these advancements is that it has been shown that the repository can be constructed and operated in practice in such a way that safety can be assured both during operation and over very long time scales. The success rests on decades of structured and objective-driven research and development. A key element of the research strategy has been to ensure adequate in-house competence and expertise. Also, openness and international cooperation are essential. Workable procedures for data qualification, version control as well as internal and external peer review have gained importance. When the programmes now enter a new phase of construction and operation new challenges will arise. Even if the implementing organisations would need to keep a core competence on post closure safety assessment international cooperation will be even more important on developing, sharing and managing the knowledge needed.
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来源期刊
EPJ Nuclear Sciences & Technologies
EPJ Nuclear Sciences & Technologies NUCLEAR SCIENCE & TECHNOLOGY-
CiteScore
1.00
自引率
20.00%
发文量
18
审稿时长
10 weeks
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