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The Technical and Economic Impact of Minor Actinide transmutation in a Sodium Fast Reactor

机译:轻微反应器中轻微的非屈服嬗变的技术和经济影响

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Within the frame work of the French National Act of June 28th 2006 pertaining to the management of high activity, long-lived radioactive waste, one of the proposed processes consists in transmuting the Minor Actinides (MA) in the radial blankets of a Sodium Fast Reactor (SFR). With this option, we may assess the additional cost of the reactor by comparing two SFR designs, one with no Minor Actinides, and the other involving their transmutation. To perform this exercise, we define a reference design called SFRref, of 1500 MWe that is considered to be representative of the Reactor System. The SFRref mainly features a pool architecture with three pumps, six loops with one steam generator per loop. The reference core is the V2B core that was defined by the CEA a few years ago for the Reactor System. This architecture is designed to meet current safety requirements. In the case of transmutation, for this exercise we consider that the fertile blanket is replaced by two rows of assemblies having either 20% of Minor Actinides or 20% of Americium. The assessment work is performed in two phases. 1. The first consists in identifying and quantifying the technical differences between the two designs: the reference design without Minor Actinides and the design with Minor Actinides. The main differences are located in the reactor vessel, in the fuel handling system and in the intermediate storage area for spent fuel. An assessment of the availability is also performed so that the impact of the transmutation can be known. 2. The second consists in making an economic appraisal of the two designs. This work is performed using the CEA's SEMER code. The economic results are shown in relative values. For a transmutation of 20% of MA in the assemblies (S/As) and a hypothesis of 4 kW allowable for the washing device, there is a large external storage demanding a very long cooling time of the S/As. In this case, the economic impact may reach 5% on the capital part of the Levelized Unit Electricity Cost (LUEC). A diminished concentration at 10% of MA, reduces the size of the external storage and the cooling time of the assemblies becomes compatible with the management of the irradiated fuel. Even with a low allowable power for the washing device, the economic impact on the capital cost is less than 2.5%.
机译:在2006年6月28日法国国家法案的框架工作中,涉及高活动管理,长寿的放射性废物,其中一个拟议的过程包括在快速反应器的径向毯中迁移次要的散落剂(MA) (SFR)。通过此选项,我们可以通过比较两个SFR设计来评估反应器的额外成本,其中一个没有轻微的散光,另一个涉及它们的嬗变。为了执行这项练习,我们定义了一个名为SFRREF的参考设计,其中1500 MWE被认为是代表反应堆系统。 SFRREF主要设有带有三个泵的泳池架构,每环六个蒸汽发生器。参考核心是几年前由CEA定义的V2B核心,用于电抗器系统。该架构旨在满足当前的安全要求。在嬗变的情况下,对于本练习,我们认为肥沃的毯子被两排具有20%的轻微光化或20%的亚美的大量组件所取代。评估工作是在两个阶段进行的。 1.第一个包括识别和量化两种设计之间的技术差异:参考设计而没有轻微的散光和具有轻微散光的设计。主要差异位于燃料处理系统中的反应器容器中,以及用于废燃料的中间存储区域。还执行对可用性的评估,以便可以知道嬗变的影响。第二个包括两种设计的经济评估。使用CEA的SEMER代码执行此工作。经济结果如相对价值所示。对于组件中的20%MA的嬗变(S / AS)和4kW的假设允许洗涤装置的假设,存在大的外部存储器要求S / AS的非常长的冷却时间。在这种情况下,较资本部分的经济影响可能达到5%的尺寸单位电费(Luec)。 10%的浓度减小,减少了外部存储的尺寸,并且组件的冷却时间与照射燃料的管理变得兼容。即使采用洗涤装置的低允许电源,对资本成本的经济影响也小于2.5%。

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