ARIES-II托卡马克聚变动力反应堆的启动和废料处理

H. Khater
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摘要

对托卡马克反应堆ARIES-II进行了详细的活化分析。该反应堆使用钒合金作为结构材料,液态锂作为冷却剂和氚增殖剂。反应堆停堆时产生的总活度为3848 MCi,在停堆后的第一年降至59 MCi。衰变热的计算表明,它在关闭时为53兆瓦,并且需要相对较短的时间(<1天)来衰减大约10倍。停堆1周后,反应器内、外区域结构内产生的综合衰变热分别为548、1298 GJ。这些热量占反应堆热功率的不到2%,因此不存在安全隐患。生物危害潜势根据NRC 10CFR20规定计算。关井时的总BHP为388 × 10/sup 6/m/sup 3/ air。根据NRC 10CFR61和Fetter废物处理浓度限值对ARIES-II结构的放射性废物分类进行了评估。除了反应堆外包层符合A级低水平废物的标准,反应堆结构的其余部分只符合C级标准。舷外包层的a级额定值为0.95,这是基于允许它在反应堆寿命结束后冷却约10年。
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Activation and waste disposal of the ARIES-II tokamak fusion power reactor
A detailed activation analysis has been performed for the tokamak fusion power reactor ARIES-II. The reactor uses vanadium alloy as a structural material and liquid lithium as a coolant and tritium breeder. The total activity produced in the reactor at shutdown is 3848 MCi and drops to only 59 MCi during the first year following shutdown. Calculations of the decay heat showed that it is 53 MW at shutdown and it takes a relatively short time (<1 day) to decay by about a factor of 10. One week after shutdown, the values of the integrated decay heat generated in the structure are 548 and 1298 GJ for the reactor inboard and outboard regions, respectively. This heat represents less than 2% of the reactor thermal power and hence does not present a safety hazard. The biological hazard potential was calculated according to the NRC regulations specified in 10CFR20. The total BHP at shutdown is 388 x 10/sup 6/m/sup 3/ air. The radwaste classification of the ARIES-II structure has been evaluated according to both the NRC 10CFR61 and Fetter waste disposal concentration limits. Except for the reactor outboard blanket which would qualify as Class A low level waste, the rest of the reactor structure would only qualify for Class C rating. The outboard blanket has a Class A rating value of 0.95 which is based on allowing it to cool down for about 10 years following the end of the reactor lifetime.
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