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Study on Core Radius Minimization for Long Life Pb-Bi Cooled CANDLE Burnup Scheme Based Fast Reactor

机译:基于快速反应器的长寿命PB-BI冷却蜡烛燃烧方案的核心半径最小化研究

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Fast Breeder Reactor had been interested to be developed over the world because it inexhaustible source energy, one of those is CANDLE reactor which is have strategy in burn-up scheme, need not control roads for control burn-up, have a constant core characteristics during energy production and don't need fuel shuffling. The calculation was made by basic reactor analysis which use Sodium coolant geometry core parameter as a reference core to study on minimum core reactor radius of CANDLE for long life Pb-Bi cooled, also want to perform pure coolant effect comparison between LBE and sodium in a same geometry design. The result show that the minimum core radius of Lead Bismuth cooled CANDLE is 100 cm and 500 MWth thermal output. Lead-Bismuth coolant for CANDLE reactor enable to reduce much reactor size and have a better void coefficient than Sodium cooled as the most coolant for FBR, then we will have a good point in safety analysis.
机译:快速育种反应堆一直有兴趣发展世界,因为它是取之不尽的源能量,其中一个是具有燃烧方案中的策略的蜡烛反应堆,不需要控制道路,用于控制烧伤,具有恒定的核心特征能源生产,不需要燃料洗牌。通过基本反应器分析进行计算,该碱性反应器分析使用钠冷却剂几何核心参数作为参考核心研究长寿命PB-BI冷却的最小核心反应器半径,也希望在LBE和钠之间进行LBE和钠之间的纯冷却剂效果比较相同的几何设计。结果表明,铅铋冷却蜡烛的最小核心半径为100厘米和500兆瓦的热输出。用于蜡烛反应器的铅铋冷却剂使得能够减少大量的反应器尺寸,并且具有比FBR最多冷却的钠冷却的更好的空隙系数,然后我们将在安全性分析中具有良好的点。

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