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Radionuclide transport simulation and uncertainty analyses with the saturated-zone site-scale model at Yucca Mountain, Nevada

机译:内华达州尤卡山的核素迁移模拟和不确定度分析

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Evaluation of radionuclide transport in the saturated zone (SZ) to the accessible environment is an important component of performance assessment for the proposed radioactive waste repository at Yucca Mountain. Simulations of radionuclide migration in the SZ have been performed using the calibrated three-dimensional (3-D) SZ site-scale flow and transport model. An innovative particle-tracking method was used to simulate transport that includes the processes of advection, dispersion, matrix diffusion, and sorption. The uncertainties in groundwater flow and radionuclide transport were quantitatively evaluated to develop uncertainty distributions for key model parameters, and multiple realizations of the SZ system were simulated using the SZ site-scale model. The results of multiple realizations of radionuclide transport indicate significant aggregate uncertainty in transport times through the SZ. The simulated radionuclide mass breakthrough curves in the SZ have been coupled with other components of the repository system in Total System Performance Assessment (TSPA) analyses and constitute the means by which uncertainty in the SZ is incorporated into regulatory analyses. Regression analysis has been used to determine the sensitivity of radionuclide transport simulation results to the uncertainty of individual model input parameters. Results of the sensitivity analysis indicate that median radionuclide transport times were dominantly controlled by uncertainty in the specific discharge in the SZ, with sorption and retardation in the alluvium playing important roles for some radionuclides.
机译:放射性核素在饱和区(SZ)中向可到达环境的运输的评估是拟议中的丝兰山放射性废物处置库性能评估的重要组成部分。使用已校准的三维(3-D)SZ站点规模流量和传输模型对SZ中放射性核素迁移进行了模拟。一种创新的粒子跟踪方法用于模拟传输,包括对流,分散,基质扩散和吸附过程。定量评估了地下水流量和放射性核素运输的不确定性,以建立关键模型参数的不确定性分布,并使用SZ站点规模模型对SZ系统的多种实现进行了仿真。放射性核素运输的多种实现结果表明,通过SZ的运输时间存在明显的总体不确定性。 SZ中模拟的放射性核素质量突破曲线已与总系统性能评估(TSPA)分析中的存储系统的其他组件耦合,并构成了将SZ中的不确定性纳入监管分析的手段。回归分析已用于确定放射性核素传输模拟结果对各个模型输入参数不确定性的敏感性。敏感性分析的结果表明,SZ中特定放电的不确定性主要控制着放射性核素的中位传输时间,冲积层的吸附和阻滞对某些放射性核素起着重要作用。

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