确保放射性固体废物在轻型机库式设施临时贮存期间的辐射安全

Sergey V. Rosnovsky, V. Povarov
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引用次数: 0

摘要

传统上,使用昂贵的大型工程结构的永久性储存设施来确保核电厂场址固化放射性废物的安全临时储存。这种方法是由于需要遵守限制储存设施附近区域的伽马背景辐射的法规要求。采用轻型机库式存储设施可以优化固化废渣临时存储的成本。同时,储存的安全性,包括人员、公众和环境的辐射防护,无疑是通过使用特殊的组织和工程解决方案来保证的。新沃罗涅日核电站是JSC关注Rosenergoatom的一个分支,根据OSPORB-99/2009,成功地运行了轻型机库式设施,用于临时储存被分类为中等水平废物的固化RW。在运行过程中,提出了一种固化RW的调理和临时储存的方法和方法,以确保最终处理的RW去除不需要额外的工艺操作和不合理的成本。已经开发了一种方法来评估临时储存放射性废物期间储存设施周围的辐射情况,以及在决定储存设施外围行排列时预测辐射情况的软件包。
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Ensuring radiation safety during temporary storage of solidified radioactive waste in light hangar-type facilities
Expensive permanent storage facilities with massive engineered structures are used traditionally to ensure safe temporary storage of solidified radioactive waste at the NPP sites. Such approach is dictated by the need to comply with the regulatory requirements for limiting the gamma background in the area adjacent to the storage facility. The costs involved in temporary storage of solidified RW can be optimized by using light hangar-type storage facilities. At the same time, the safety of storage, including radiation protection of the personnel, the public and the environment, is undoubtedly ensured through the use of special organizational and engineering solutions. The Novovoronezh NPP, a branch of JSC Concern Rosenergoatom, operates successfully light hangar-type facilities for temporary storage of solidified RW classified as medium-level waste in accordance with OSPORB-99/2009. In the process of operation, a methodology and a method for conditioning and temporary storage of solidified RW were developed to ensure the RW removal for final disposal with no extra process operations and unreasonable costs. A methodology has been developed to assess the radiation situation around storage facilities during temporary storage of RW, as well as a software package for predicting the radiation situation when deciding on the arrangement of the storage facility’s peripheral rows.
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