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From pure fusion to fusion-fission Demo tokamaks

机译:从纯聚变到裂变演示托卡马克

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摘要

The major requirements for pure fusion tokamak reactors and tokamak-based fusion neutron sources (FNS) are analyzed together with possible paths from the present-day tokamak towards the FNS tokamak. The FNS are of interest for traditional fission reactors as a method of waste management by burning of long-lived transuranic radionuclides (minorities) and fission fuel breeding. The Russian fission community places several hard requirements on the quality of FNS suitable for the first step of the investigation program of minority burning and breeding. They are (a) a steady-state regime of neutron production (more than 80% of the operational time), (b) a neutron power flux density greater than >0.2 MW m~(-2), (c) a total surface integrated neutron power >10 MW. Among the different FNS projects, based on magnetically confined plasmas, only 'classical tokamak' is most likely to fulfill these requirements in the nearest future. Some of the most important improvements of the 'classical tokamak' needed for successful realization of the FNS are (1) decrease in Z_(eff) (probably, by making use of lithium as a part of plasma-facing components), (2) He removal and closed loop DT fuel circulation, (3) increase in the energy of stationary injected neutral tritium beams up to 150-170 keV and (4) control of impurity contamination at the plasma center (probably, by local RF heating). These key issues are discussed.
机译:分析了纯聚变托卡马克反应堆和基于托卡马克的聚变中子源(FNS)的主要要求,以及从当今托卡马克到FNS托卡马克的可能路径。 FNS对于传统的裂变反应堆来说是令人感兴趣的,它是通过燃烧长寿的超铀放射性核素(少数)和裂变燃料育种来进行废物管理的一种方法。俄罗斯裂变界对适合于少数民族燃烧和繁殖调查计划第一步的FNS的质量提出了一些严格的要求。它们是(a)中子产生的稳态状态(超过工作时间的80%),(b)中子功率通量密度大于> 0.2 MW m〜(-2),(c)总表面集成中子功率> 10 MW。在基于磁约束等离子体的不同FNS项目中,只有“经典托卡马克”最有可能在不久的将来满足这些要求。成功实现FNS所需的“经典托卡马克”的一些最重要的改进是(1)降低Z_(eff)(可能是通过使用锂作为面向等离子体的组件的一部分),(2)移除并进行DT燃料闭环循环,(3)将固定注入的中性tri射线束的能量增加到150-170 keV,以及(4)控制等离子体中心的杂质污染(可能是通过局部RF加热)。讨论了这些关键问题。

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