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ISOTOPE-BASED ANALYSIS OF NUCLEAR WASTE REPOSITORY PERFORMANCE

机译:基于同位素的核废料库性能分析

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It is necessary to consider the complexities of both natural and engineered components of a nuclear waste repository since fission products and minor actinides remain harmful to the environment for tens of thousands of years. In safety and performance assessments often used in decision-making about repository designs, the effect of uncertain initial guesses on the models' output must be understood. As the necessary safe times and hence the simulated times are often in the order of magnitude of hundreds of thousands of years, uncertain initial values become increasingly important. To minimize the danger from high-level radioactive waste and to make informed decisions over designs, sensitivity analysis of the models used should be performed. The Simplified Total System Performance Assessment (STSPA) model developed by Golder Associates Inc., Booz-Allen Hamilton, Stone and Webster and the University of Nevada Reno and used in the Yucca Mountain nuclear waste repository performance assessment is analyzed for sensitivity by varying the activities of technetium-99 and iodine-129 by several orders of magnitude. The resultant dose to a maximally-exposed individual over time periods of 100,000 and 1,000,000 years is compared to the relevant regulatory limits. Incorrect estimates can be seen to have large effects on the behavior of the model while the method used allows conclusions to be drawn about the robustness of the model.
机译:由于裂变产物和微量的act系元素在数万年之内仍然对环境有害,因此有必要考虑核废料处置库中天然成分和工程成分的复杂性。在通常用于存储库设计决策的安全和性能评估中,必须了解不确定的初始猜测对模型输出的影响。由于必要的安全时间以及因此的模拟时间通常处于数十万年的数量级,因此不确定的初始值变得越来越重要。为了最大程度地减少高放废物造成的危险并就设计做出明智的决定,应对所用模型进行敏感性分析。由Golder Associates Inc.,Booz-Allen Hamilton,Stone and Webster和内华达州里诺大学开发并用于尤卡山核废料储存库性能评估的简化的总系统性能评估(STSPA)模型通过改变活动来分析敏感性。 net 99和碘129的含量降低了几个数量级。将在100,000年和1,000,000年的时间段内对最大暴露个体的最终剂量与相关的法规限制进行比较。可以看到不正确的估计对模型的行为有很大的影响,而所使用的方法可以得出关于模型鲁棒性的结论。

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