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Axial Neutron Flux Evaluation in a Tokamak System: a Possible Transmutation Blanket Position for a Fusion—Fission Transmutation System

机译:托卡马克系统中的轴向中子通量评估:聚变裂变Trans变系统的可能Trans变位置

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摘要

A sub-critical advanced reactor based on Tokamak technology with a D--T fusion neutron source is an innovative type of nuclear system. Due to the large number of neutrons produced by fusion reactions, such a system could be useful in the transmutation process of transuranic elements (Pu and minor actinides (MAs)). However, to enhance the MA transmutation efficiency, it is necessary to have a large neutron wall loading (high neutron Thence) with a broad energy spectrum in the fast neutron energy region. Therefore, it is necessary to know and define the neutron fluence along the radial axis and its characteristics. In this work, the neutron flux and the interaction frequency along the radial axis are evaluated for various materials used to build the first wall. W alloy, beryllium, and the combination of both were studied, and the regions more suitable to transmutation were determined. The results demonstrated that the best zone in which to place a transmutation blanket is limited by the heat sink and the shield block. Material arrangements of W alloy/W alloy and W alloy/ beryllium would be able to meet the requirements of the high fluence and hard spectrum that are needed for transuranic transmutation. The system was simulated using the MCNP code, data from the ITER Final Design Report, 2001, and the Fusion Evaluated Nuclear Data Library/MC-2.1 nuclear data library.
机译:一种具有Tokamak技术和D-T聚变中子源的亚临界先进反应堆是一种创新型的核系统。由于聚变反应产生的大量中子,这种系统可用于超铀元素(Pu和次minor系元素(MAs))的process变过程。但是,为了提高MA的mut变效率,必须在快中子能区内具有大的中子壁载荷(高中子因数)和较宽的能谱。因此,有必要了解和定义沿径向轴的中子注量及其特性。在这项工作中,对用于建造第一壁的各种材料的中子通量和沿径向轴的相互作用频率进行了评估。研究了W合金,铍以及两者的组合,并确定了更适合trans变的区域。结果表明,放置a变毯的最佳区域受到散热器和屏蔽块的限制。 W合金/ W合金和W合金/铍的材料排列将能够满足超铀trans变所需的高通量和硬光谱的要求。使用MCNP代码,来自ITER最终设计报告(2001年)的数据和核聚变评估核数据库/MC-2.1核数据库对系统进行了仿真。

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