首页> 外文会议>International conference on environmental remediation and radioactive waste management >DEVELOPMENT OF METHODOLOGY TO CONSTRUCT A GENERIC CONCEPTUAL MODEL OF RIVER-VALLEY EVOLUTION FOR PERFORMANCE ASSESSMENT OF HLW GEOLOGICAL DISPOSAL
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DEVELOPMENT OF METHODOLOGY TO CONSTRUCT A GENERIC CONCEPTUAL MODEL OF RIVER-VALLEY EVOLUTION FOR PERFORMANCE ASSESSMENT OF HLW GEOLOGICAL DISPOSAL

机译:制定方法论建设河谷河谷演化的通用概念模型,以实现HLW地质处理的绩效评估

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In order to assess the long-term safety of a geological disposal system for high-level radioactive waste (HLW), it is important to consider the impact of uplift and erosion, which cannot be precluded on a timescale in the order of several hundred thousand years for many locations in Japan. Geomorphic evolution, caused by uplift and erosion and coupled to climatic and sea-level changes, will impact the geological disposal system due to resulting spatial and temporal changes in the disposal environment. Degradation of HLW barrier performance will be particularly significant when the remnant repository structures near, and are eventually exposed at, the ground surface. In previous studies, fluvial erosion was identified as the key concern in most settings in Japan. Interpretation of the impact of the phenomena at relevant locations in Japan has led to development of a generic conceptual model which contains the features typical at middle reach of rivers. Here, therefore, we present a methodology for development of a generic conceptual model based on best current understanding of fluvial erosion in Japan, which identifies the simplifications and uncertainties involved and assesses their consequences in the context of repository performance.
机译:为了评估高级放射性废物(HLW)地质处理系统的长期安全性,重要的是考虑隆起和侵蚀的影响,这不能在数十万的时间内排除时间尺寸日本的许多地方多年。由隆起和侵蚀并加上气候和海平的变化引起的地貌演变,这将影响地质处理系统,因为在处理环境中产生的空间和时间变化。当残余储存库结构附近并且最终暴露在地面时,HLW屏障性能的降解将特别显着。在先前的研究中,氟尿侵蚀被确定为日本大多数环境中的关键问题。解释现象在日本相关地点的影响导致了一种通用概念模型,其中包含河流中间典型的特征。因此,在这里,我们提出了一种基于日本河流侵蚀最佳理解的通用概念模型的方法,该方法识别了所涉及的简化和不确定性,并评估其在存储库表现的背景下的后果。

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