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Development of Advanced Loop-Type Fast Reactor in Japan (2): Technological Feasibility of Two-Loop Cooling System in JSFR

机译:日本高级环路型快电抗体的开发(2):JSFR中双环冷却系统的技术可行性

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An advanced large-scale sodium-cooled fast reactor (named JSFR) adopts an innovative two-loop cooling system. This cooling system design gives rise to major technological issues: hydraulic and structural integrity due to the increase in one-loop coolant flow rate, safety design against the break or failure in one-loop piping and ensuring the reliability of decay heat removal system. The present paper describes that the piping structural integrity due to flow-induced vibration has been investigated using a 1/3-scale hot-leg piping test. The structural integrity of the hot-leg piping in the JSFR design has been confirmed by a flow-induced-vibration analytical tool, verified with the experimental data. Additional experimental results have revealed that hydraulic issues including gas entrainment and vortex cavitation could be prevented by some design measures. By applying appropriate safety design, the two-loop system has been confirmed to be valid against the break or failure in one-loop piping by a safety evaluation in this study. The decay heat removal system with natural circulation is designed in conformity with the two-loop system by introducing adequate safety designs. In this paper, the validity of this decay heat removal system is given by a probabilistic safety assessment and safety evaluation.
机译:先进的大型钠冷却快速反应器(名为JSFR)采用创新的双环冷却系统。这种冷却系统设计引起了主要的技术问题:液压和结构完整性由于单环冷却剂流量的增加,防止一个环路管道中的断裂或故障的安全性设计,并确保衰减散热系统的可靠性。本文介绍了使用1/3级热腿管道试验研究了由于流动引起的振动引起的管道结构完整性。通过实验数据验证的流动诱导振动分析工具证实了JSFR设计中的热腿管道的结构完整性。额外的实验结果表明,通过一些设计措施,可以防止包括气体夹带和涡旋空化的液压问题。通过应用适当的安全设计,通过本研究的安全评估,已确认双环系统对一次环路管道中的断裂或失败有效。具有自然循环的衰变散热系统通过引入适当的安全设计来设计与双回路系统的设计。在本文中,通过概率的安全评估和安全评估给出了这种衰变散热系统的有效性。

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