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Estimation of the long term helium production in high burn-up spent fuel due to alpha decay and consequences for the canister

机译:由于α衰减引起的高燃烧废燃料中长期氦气生产的估计及罐的后果

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In the KBS-3 repository concept and safety analysis, the copper container with a cast iron insert plays a central role in assuring isolation of the waste from the surrounding during long periods of time. All processes that affect its stability are thoroughly analysed, including potential detrimental processes inside the canister. For this reason, an estimation of the helium produced during the long term decay of alpha emitters in the spent fuel is necessary to evaluate if the pressures generated inside can have consequences for the canister. The spent nuclear fuel to be disposed of in Sweden is mainly LWR fuel. The maximum burn-up expected is 60 MWd/kg U for BWR and PWR. A small quantity of BWR MOX is expected to be stored with a maximum burn-up of 50 MWd/kg U. This work has focused on carrying out calculations of the amounts of He generated during more than I million years in Swedish spent nuclear fuels with a benchmarking exercise by using both codes AMBER and Origen-ARP. The performance and agreement of the codes in the He generation from a-decay have been checked and validated against data reported in literature. In the calculation of the maximal pressure inside the canister, the quantity of helium used to pre-pressurise the fuel rods has been accounted for. The pressure inside the canister due to He generation is at all times much lower than the hydrostatic pressure and/or the bentonite swelling pressure outside the canister.
机译:在KBS-3储存库概念和安全性分析中,具有铸铁插入件的铜容器在长时间在周围的周围隔离浪费时起着核心作用。彻底分析了影响其稳定性的所有过程,包括罐内的潜在有害过程。因此,需要在花费燃料中长期衰减期间产生的氦的估计是为了评估内部的压力可能对罐产生后果的影响。在瑞典待处置的废核燃料主要是LWR燃料。 BWR和PWR的最大烧伤预期为60 MWD / kg U.预计少量BWR MOX将被储存,最大燃烧为50 MWD / kg U.这项工作侧重于在瑞典花费核燃料中进行超过一百万年的核燃料中产生的成因的计算使用代码琥珀和ORIGRON-ARP进行基准锻炼。从A-DACY中的代码的表现和协议已经检查并验证了文献中报告的数据。在计算罐内的最大压力的计算中,已经占了用于预加压燃料棒的氦的量。由于他的生成,罐内的压力始终远低于罐外静液压压力和/或膨润土膨胀压力远低得多。

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