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Development of emergency response tools for accidental radiological contamination of French coastal areas

机译:法国沿海地区意外放射污染的应急响应工具的开发

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摘要

The Fukushima nuclear accident resulted in the largest ever accidental release of artificial radionuclides in coastal waters. This accident has shown the importance of marine assessment capabilities for emergency response and the need to develop tools for adequately predicting the evolution and potential impact of radioactive releases to the marine environment.The French Institute for Radiological Protection and Nuclear Safety (IRSN) equips its emergency response centre with operational tools to assist experts and decision makers in the event of accidental atmospheric releases and contamination of the terrestrial environment. The on-going project aims to develop tools for the management of marine contamination events in French coastal areas. This should allow us to evaluate and anticipate post-accident conditions, including potential contamination sites, contamination levels and potential consequences.In order to achieve this goal, two complementary tools are developed: site-specific marine data sheets and a dedicated simulation tool (STERNE, Simulation du Transport et du transfert d’Eléments Radioactifs dans l'environNEment marin).Marine data sheets are used to summarize the marine environment characteristics of the various sites considered, and to identify vulnerable areas requiring implementation of population protection measures, such as aquaculture areas, beaches or industrial water intakes, as well as areas of major ecological interest. Local climatological data (dominant sea currents as a function of meteorological or tidal conditions) serving as the basis for an initial environmental sampling strategy is provided whenever possible, along with a list of possible local contacts for operational management purposes.The STERNE simulation tool is designed to predict radionuclide dispersion and contamination in seawater and marine species by incorporating spatio-temporal data. 3D hydrodynamic forecasts are used as input data. Direct discharge points or atmospheric deposition source terms can be taken into account. STERNE calculates Eulerian radionuclide dispersion using advection and diffusion equations established offline from hydrodynamic calculations. A radioecological model based on dynamic transfer equations is implemented to evaluate activity concentrations in aquatic organisms. Essential radioecological parameters (concentration factors and single or multicomponent biological half-lives) have been compiled for main radionuclides and generic marine species (fish, molluscs, crustaceans and algae). Dispersion and transfer calculations are performed simultaneously on a 3D grid. Results can be plotted on maps, with possible tracking of spatio-temporal evolution. Post-processing and visualization can then be performed.
机译:福岛核事故导致沿海水域中最大的人工放射性核素释放。这次事故表明了海洋评估能力对应急响应的重要性以及开发工具,以便充分预测放射性释放对海洋环境的进化和潜在影响。法国放射保护和核安全研究所(IRSN)提供紧急情况响应中心具有运营工具,协助专家和决策者在发生意外的大气释放和陆地环境的污染情况下。随机项目旨在开发法国沿海地区海洋污染事件管理的工具。这应该允许我们评估和预测事故发生故障,包括潜在的污染部位,污染水平和潜在后果。为了实现这一目标,开发了两个补充工具:特定于现场的海洋数据表和专用仿真工具(Sterne ,仿真杜运输et du Transfert d'EléEntrumentsantuactifs Dans L'Environnement Marin).Marine数据表用于总结各个地点的海洋环境特征,并识别需要实施人口保护措施的脆弱区域,如水产养殖地区,海滩或工业水进口,以及重大生态兴趣的领域。尽可能提供作为初始环境采样策略的基础的局部气候数据(主要海流或潮气条件的函数),以及用于运营管理目的的可能的本地联系人的列表。Sterne仿真工具是设计的通过掺入时空数据来预测海水和海洋物种中的放射性核素分散和污染。 3D流体动力预测用作输入数据。可以考虑直接排放点或大气沉积源术语。斯托纳利用来自流体动力学计算的前线建立的平流和扩散方程来计算欧拉的放射性核素分散。基于动态传递方程的基础模型实施以评估水生生物中的活性浓度。对于主要放射性核素和通用海洋物种(鱼,软体动物,甲壳类动物和藻类)编制了基本的射读参数(集中因子和单一或单组分或多组生物半衰期)。在3D网格上同时执行色散和传输计算。结果可以在地图上绘制,可能跟踪时空进化。然后可以执行后处理和可视化。

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