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Performance Assessment for the Geological Disposal of Deep Burn Spent Fuel Using TTBX

机译:使用TTBX进行深度燃烧废燃料地质处置的性能评估

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The behavior of Deep Burn Modular High Temperature Reactor Spent Fuel (DBSF) is investigated in the Yucca Mountain geological repository (YMR) with respect to the annual dose (Sv/yr) delivered to the Reasonably Maximally Exposed Individual (RMEI) from the transport of radionuclides released from the graphite waste matrix. Transport calculations are performed with a novel computer code, TTBX which is capable of modeling transport pathways that pass through heterogeneous geological formations. TTBX is a multi-region extension of the existing single region TTB transport code. Overall the peak annual dose received by the RMEI is seen to be four orders of magnitude lower than the regulatory threshold for exposure, even under pessimistic scenarios. A number of factors contribute to the favorable performance of DBSF. A reduction of one order of magnitude in the peak annual dose received by the RMEI is observed for every order of magnitude increase in the waste matrix lifetime, highlighting the importance of the waste matrix durability and suggesting graphite's utility as a potential waste matrix for the disposal of high-level waste. Furthermore, we see that by incorporating a higher fidelity far-field model the peak annual dose calculated to be received by the RMEI is reduced by two orders of magnitude. By accounting for the heterogeneities of the far field we have simultaneously removed unnecessary conservatisms and improved the fidelity of the transport model.
机译:在尤卡山地质资料库(YMR)中研究了深度燃烧模块化高温反应堆乏燃料(DBSF)的行为,该行为涉及从运输中向合理最大暴露个体(RMEI)输送的年剂量(Sv / yr)。从石墨废物基质中释放出的放射性核素。使用新型计算机代码TTBX进行运输计算,该代码能够对穿过非均质地质构造的运输路径进行建模。 TTBX是现有单区域TTB传输代码的多区域扩展。总体而言,即使在悲观的情况下,RMEI收到的最高年度剂量也被认为比暴露的监管阈值低四个数量级。许多因素有助于DBSF的良好性能。废物基质寿命每增加一个数量级,就会发现RMEI收到的峰值年剂量降低了一个数量级,这突出了废物基质耐用性的重要性,并表明了石墨作为潜在的废物处置基质的用途。高放废物。此外,我们看到通过合并更高保真度的远场模型,RMEI计算得出的峰值年剂量减少了两个数量级。通过考虑远场的异质性,我们同时消除了不必要的保守性并提高了运输模型的保真度。

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