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Activation calculation for the dismantling and decommissioning of a light water reactor using MCNP? with ADVANTG and ORIGEN-S

机译:使用MCNP进行轻水反应堆的拆除和退役的激活计算?与ADVANTG和ORIGEN-S

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The decommissioning of a light water reactor (LWR), which is licensed under § 7 of the German Atomic Energy Act, following the post-operational phase requires a comprehensive licensing procedure including in particular radiation protection aspects and possible impacts to the environment. Decommissioning includes essential changes in requirements for the systems and components and will mainly lead to the direct dismantling. In this context, neutron induced activation calculations for the structural components have to be carried out to predict activities in structures and to estimate future costs for conditioning and packaging. To avoid an overestimation of the radioactive inventory and to calculate the expenses for decommissioning as accurate as possible, modern state-of-the-art Monte-Carlo-Techniques (MCNP?) are applied and coupled with present-day activation and decay codes (ORIGEN-S). In this context ADVANTG is used as weight window generator for MCNP? i. e. as variance reduction tool to speed up the calculation in deep penetration problems. In this paper the calculation procedure is described and the obtained results are presented with a validation along with measured activities and photon dose rates measured in the post-operational phase. The validation shows that the applied calculation procedure is suitable for the determination of the radioactive inventory of a nuclear power plant. Even the measured gamma dose rates in the post-operational phase at different positions in the reactor building agree within a factor of 2 to 3 with the calculation results. The obtained results are accurate and suitable to support effectively the decommissioning planning process.
机译:在运行后阶段之后,根据德国《原子能法》第7条获得许可的轻水反应堆(LWR)的退役需要全面的许可程序,包括特别是辐射防护方面以及可能对环境的影响。退役包括对系统和组件要求的实质性更改,并将主要导致直接拆卸。在这种情况下,必须对结构部件进行中子诱发活化计算,以预测结构中的活动并估算调理和包装的未来成本。为了避免高估放射性库存并尽可能准确地计算退役费用,我们采用了现代最先进的蒙特卡洛技术(MCNP?),并结合了当前的激活和衰变代码( ORIGEN-S)。在这种情况下,ADVANTG用作MCNP的权重窗口生成器。一世。 e。作为减少方差的工具,可以加快深层渗透问题中的计算速度。本文描述了计算程序,并给出了获得的结果以及在手术后阶段测得的活度和光子剂量率的验证。验证表明,所应用的计算程序适用于确定核电厂的放射性清单。甚至在操作后阶段在反应堆建筑物内不同位置处测得的伽马剂量率也与计算结果相差2到3倍。所获得的结果是准确的,适合于有效地支持退役计划过程。

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