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The Industrial Sodium Cooled Fast Reactor

机译:工业钠冷快堆

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摘要

This paper investigates the use of enrichment and moderator zoning methods for optimizing the r-z power distribution within sodium cooled fast reactors. These methods allow overall greater fuel utilization in the core resulting in more fuel being irradiated near the maximum allowed thermal power. The peak-to-average power density was held to 1.18. This core design, in conjunction with a multiple-reheat Brayton power conversion system, has merit for producing an industrial level of electrical output (2400 MWth, 1000 MWe) from a relatively compact core size. The total core radius, including reflectors and shields, was held to 1.78 m. Preliminary safety analysis suggests that positive reactivity insertion resulting from a leak between the sodium primary loop and helium power conversion system can be mitigated using simple gas-liquid centripetal separation strategies in the plant's primary loop.
机译:本文研究了利用富集和缓和剂分区方法来优化钠冷快堆内的r-z功率分布。这些方法可在堆芯中总体上提高燃料利用率,从而导致在最大允许热功率附近辐照更多燃料。峰均功率密度保持在1.18。这种磁芯设计与多再热布雷顿(Brayton)功率转换系统相结合,具有从相对紧凑的磁芯尺寸产生工业水平的电输出(2400 MWth,1000 MWe)的优点。包括反射器和防护罩在内的总芯半径保持在1.78 m。初步的安全分析表明,通过使用工厂主回路中简单的气液向心分离策略,可以减轻钠主回路与氦气转换系统之间泄漏引起的正反应性插入。

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