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首页> 外文期刊>Journal of Environmental Radioactivity >Influence of climate on landscape characteristics in safety assessments of repositories for radioactive wastes
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Influence of climate on landscape characteristics in safety assessments of repositories for radioactive wastes

机译:在放射性废物处置库安全评估中,气候对景观特征的影响

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摘要

In safety assessments of repositories for radioactive wastes, large spatial and temporal scales have to be considered when developing an approach to risk calculations. A wide range of different types of information may be required. Local to the site of interest, temperature and precipitation data may be used to determine the erosional regime (which may also be conditioned by the vegetation characteristics adopted, based both on climatic and other considerations). However, geomorphological changes may be governed by regional rather than local considerations, e.g. alteration of river base levels, river capture and drainage network reorganisation, or the progression of an ice sheet or valley glacier across the site. The regional climate is in turn governed by the global climate. In this work, a commentary is presented on the types of climate models that can be used to develop projections of climate change for use in post-closure radiological impact assessments of geological repositories for radioactive wastes. These models include both Atmosphere-Ocean General Circulation Models and Earth Models of Intermediate Complexity. The relevant outputs available from these models are identified and consideration is given to how these outputs may be used to inform projections of landscape development. Issues of spatial and temporal downscaling of climate model outputs to meet the requirements of local-scale landscape development modelling are also addressed. An example is given of how climate change and landscape development influence the radiological impact of radionu-clides potentially released from the deep geological disposal facility for spent nuclear fuel that SKB (the Swedish Nuclear Fuel and Waste Management Company) proposes to construct at Forsmark, Sweden.
机译:在放射性废物储存库的安全评估中,开发风险计算方法时必须考虑较大的时空尺度。可能需要各种不同类型的信息。在感兴趣的地点附近,温度和降水量数据可用于确定侵蚀状态(也可根据气候和其他考虑因素,采用所采用的植被特征进行调节)。但是,地貌变化可能受区域而非本地因素的影响,例如河底水位的变化,河流捕获和排水网络的重组,或整个站点的冰原或山谷冰川的发展。区域气候又受全球气候的支配。在这项工作中,对气候模型的类型进行了评论,该模型可用于开发气候变化的预测,以用于放射性废物地质处置库的封闭后放射性影响评估。这些模型包括大气-海洋总环流模型和中等复杂度的地球模型。确定了可从这些模型获得的相关输出,并考虑了如何使用这些输出来为景观发展提供信息。还解决了气候模型输出在空间和时间上按比例缩小以满足局部尺度景观开发建模要求的问题。给出了一个示例,说明气候变化和景观发展如何影响可能从深部地质处置设施释放的放射性核素的放射性影响,这是SKB(瑞典核燃料和废物管理公司)提议在瑞典福斯马克建造的。

著录项

  • 来源
    《Journal of Environmental Radioactivity》 |2014年第12期|192-204|共13页
  • 作者单位

    National Cooperative for the Disposal of Radioactive Waste (Nagra), Switzerland;

    Svensk Kaernbraenslehantering AB, Stockholm, Sweden;

    Mike Thorne and Associates Limited, Quarry Cottage, Hamsterley, Co. Durham DL13 3NJ, UK;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Climate change; Landscape development; Radioactive waste disposal;

    机译:气候变化;景观发展;放射性废物处置;

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