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SAFETY ASPECTS OF DRY SPENT FUEL STORAGE AND SPENT FUEL MANAGEMENT

机译:干式燃油存储和燃油管理的安全性方面

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As with the storage of all radioactive materials, the storage of spent nuclear fuel (SF) and high-level radioactive waste (HLW) must conform to safety requirements. Safety aspects like safe enclosure of radioactive materials, safe removal of decay heat, nuclear criticality safety and avoidance of unnecessary radiation exposure must be achieved throughout the storage period. The implementation of these safety requirements can be achieved by dry storage of SF and HLW in casks as well as in other systems such as dry vault storage systems or spent fuel pools, where the latter is neither a dry nor a passive system. After the events of Fukushima, the advantages of passively and inherently safe dry storage systems have become more obvious. TUEV and BAM, who work as independent experts for the competent authorities, present the licensing process for sites and casks and inform about spent nuclear fuel management and issues concerning dry storage of spent nuclear fuel, based on their long experience in these fields. All safety relevant issues like safe enclosure, shielding, removal of the decay heat or behavior of cask and building under accident conditions are checked and validated with state-of-the-art methods and computer codes before the license approval. It is shown how dry storage systems can ensure the compliance with the mentioned safety criteria over a long storage period. Exemplarily, the process of licensing, erection and operation of selected German dry storage facilities is presented.
机译:与所有放射性物质的存储一样,乏核燃料(SF)和高放射性废物(HLW)的存储必须符合安全要求。必须在整个存储期间实现安全方面的要求,例如安全地密封放射性材料,安全去除衰变热,确保核临界安全性以及避免不必要的辐射暴露。这些安全要求的实现可以通过将SF和HLW放在桶中以及在其他系统(如干金库存储系统或用过的燃料池)中进行干式存储来实现,后者既不是干式系统也不是被动系统。在福岛事件之后,被动和本质安全的干式存储系统的优势变得更加明显。 TUEV和BAM作为主管当局的独立专家,根据他们在这些领域的长期经验,介绍了场所和酒桶的许可程序,并提供了有关乏核燃料管理以及有关乏核燃料干燥存储的问题的信息。在获得许可批准之前,将使用最先进的方法和计算机代码来检查和验证所有与安全相关的问题,例如安全外壳,屏蔽,衰减热的消除或木桶和建筑物在事故情况下的行为。它显示了干式存储系统如何在较长的存储期间内确保符合上述安全标准。示例性地介绍了选定的德国干式仓储设施的许可,架设和操作过程。

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