首页> 外文期刊>Journal of Contaminant Hydrology >The saturated zone at Yucca Mountain: an overview of the characterization and assessment of the saturated zone as a barrier to potential radionuclide migration
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The saturated zone at Yucca Mountain: an overview of the characterization and assessment of the saturated zone as a barrier to potential radionuclide migration

机译:丝兰山饱和带:饱和带的表征和评估概述,可作为潜在放射性核素迁移的障碍

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The US Department of Energy is pursuing Yucca Mountain, Nevada, for the development of a geologic repository for the disposal of spent nuclear fuel and high-level radioactive waste, if the repository is able to meet applicable radiation protection standards established by the US Nuclear Regulatory Commission and the US Environmental Protection Agency (EPA). Effective performance of such a repository would rely on a number of natural and engineered barriers to isolate radioactive waste from the accessible environment. Groundwater beneath Yucca Mountain is the primary medium through which most radionuclides might move away from the potential repository. The saturated zone (SZ) system is expected to act as a natural barrier to this possible movement of radionuclides both by delaying their transport and by reducing their concentration before they reach the accessible environment. Information obtained from Yucca Mountain Site Characterization Project activities is used to estimate groundwater flow rates through the site-scale SZ flow and transport model area and to constrain general conceptual models of groundwater flow in the site-scale area. The site-scale conceptual model is a synthesis of what is known about flow and transport processes at the scale required for total system performance assessment of the site. This knowledge builds on and is consistent with knowledge that has accumulated at the regional scale but is more detailed because more data are available at the site-scale level. The mathematical basis of the site- scale model and the associated numerical approaches are designed to assist in quantifying the uncertainty in the permeability of rocks in the geologic framework model and to represent accurately the flow and transport processes included in the site-scale conceptual model. Confidence in the results of the mathematical model was obtained by comparing calculated to observed hydraulic heads, estimated to measured permeabilities, and lateral flow rates calculated by the site-scale model to those calculated by the regional-scale flow model. In addition, it was confirmed that the flow paths leaving the region of the potential repository are consistent with those inferred from gradients of measured head and those independently inferred from water-chemistry data. The general approach of the site-scale SZ flow and transport model analysis is to calculate unit breakthrough curves for radionuclides at the interface between the SZ and the biosphere using the three-dimensional site-scale SZ flow and transport model. Uncertainties are explicitly incorporated into the site-scale SZ flow and transport abstractions through key parameters and conceptual models.
机译:美国能源部正在寻求内华达州的尤卡山(Yucca Mountain)开发一个地质处置库,以处置乏核燃料和高放射性废物,前提是该处置库能够满足美国核监管局制定的适用辐射防护标准。委员会和美国环境保护局(EPA)。这样一个储存库的有效性能将取决于许多自然和工程屏障,以将放射性废物与可及的环境隔离。丝兰山下的地下水是大多数放射性核素可能从潜在储存库中移出的主要介质。预计饱和区(SZ)系统将通过延迟放射性核素的运输并在其到达可到达的环境之前降低其浓度,从而成为放射性核素这种可能运动的天然屏障。从尤卡山场地表征项目活动中获得的信息用于估算通过场地规模SZ流量和运输模型区域的地下水流量,并限制场地范围内地下水流动的一般概念模型。站点规模的概念模型是对流和传输过程的已知信息的综合,并且需要对站点的整个系统性能进行评估。这些知识是建立在区域规模知识基础之上的,并且与之相吻合,但由于站点级别可获得更多数据,因此更为详尽。设计场地规模模型和相关数值方法的数学基础,以帮助量化地质框架模型中岩石渗透性的不确定性,并准确表示场地规模概念模型中包括的流动和运输过程。通过将计算得出的水力压头计算值,估计的渗透率估计值和现场规模模型计算出的侧向流速与地区规模流量模型计算出的侧向流速进行比较,可以得出数学模型结果的可信度。此外,已确认离开潜在储藏库区域的流路与从实测水头的坡度推断的流路和从水化学数据独立推断的流路一致。站点规模SZ流量和传输模型分析的一般方法是使用三维站点规模SZ流量和传输模型来计算SZ和生物圈之间界面处放射性核素的单位穿透曲线。不确定性已通过关键参数和概念模型明确纳入站点范围的SZ流和传输抽象中。

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