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首页> 外文期刊>Environmental Management >Modeling Long-Term Risk to Environmental and Human Systems at the Hanford Nuclear Reservation: Scope and Findings from the Initial Model
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Modeling Long-Term Risk to Environmental and Human Systems at the Hanford Nuclear Reservation: Scope and Findings from the Initial Model

机译:在汉福德核保留区为环境和人类系统的长期风险建模:范围和来自初始模型的发现

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The Groundwater Protection Project at the US Department of Energy Hanford Site in Washington State is currently developing the means to assess the cumulative impact to human and ecological health and the regional economy and cultures from radioactive and chemical waste that will remain at the Hanford Site after the site closes. This integrated system is known as the System Assessment Capability (SAC). The SAC Risk/Impact Module discussed in the article uses media- and time-specific concentrations of contaminants estimated by the transport models of the integrated system to project potential impacts on the ecology of the Columbia River corridor, the health of persons who might live in or use the corridor or the upland Hanford environment, the local economy, and cultural resources. Preliminary Monte Carlo realizations from the SAC modeling system demonstrate the feasibility of large-scale uncertainty analysis of the complex relationships in the environmental transport of contaminants on the one hand and ecological, human, cultural, and economic risk on the other. Initial impact results show very small long-term risks for the 10 radio-nuclides and chemicals evaluated. The analysis also helps determine science priorities to reduce uncertainty and suggests what actions matter to reduce risks.
机译:华盛顿州美国能源部汉福德基地的地下水保护项目目前正在开发评估放射性和化学废物对人类和生态健康以及区域经济和文化的累积影响的方法,这些废弃物将在华盛顿州汉福德基地保留下来。网站关闭。该集成系统称为系统评估功能(SAC)。本文讨论的SAC风险/影响模块使用由集成系统的运输模型估算的特定于介质和特定时间的污染物浓度来预测对哥伦比亚河沿岸生态系统,可能生活在其中的人的健康的潜在影响或使用走廊或汉福德高地环境,当地经济和文化资源。 SAC建模系统的初步蒙特卡洛实现一方面证明了对污染物在环境中运输的复杂关系进行大规模不确定性分析的可行性,另一方面证明了生态,人类,文化和经济风险的复杂性分析的可行性。初步影响结果表明,所评估的10种放射性核素和化学品的长期风险很小。该分析还有助于确定科学重点,以减少不确定性,并建议采取哪些行动对降低风险至关重要。

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