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Electromagnetic Pumps for Main Cooling Systems of Commercialized Sodium-Cooled Fast Reactor

机译:商用钠冷快堆主要冷却系统的电磁泵

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An electromagnetic pump (EMP) has superior potential to improve the economic performance and ease of maintenance of sodium-cooled fast reactors. This study investigates the adequateness of a modular-type EMP system for large-sized (1,500 MWe class) sodium-cooled fast reactors. A flow rate of over 500 m~3/min is required for the main circulating pump of such reactors. There is concern that such a large EMP will cause flow instability. A modular-type EMP system can solve this issue since smaller EMPs are arranged in parallel and the flow rate of each EMP is reduced. Parallel-module EMP systems have been investigated as the primary and secondary circulating pumps. The results of the design study and electromagnetic analysis of the primary main pump confirmed that flow instability does not occur under all operational conditions. From a safety viewpoint, a reliable flow-coast-down system has been proposed, comprising an electric supply system with a permanent magnet synchronous motor and a reliable circuit breaker system. The modular-type EMP system is also effective for the secondary system, drastically simplifying the piping arrangement. The results of this study show that the modular-type EMP system is highly compatible with the main circulating pumps of large-sized sodium-cooled fast reactors, as well as the advantages gained from adopting this system.
机译:电磁泵(EMP)具有改善钠冷却快堆的经济性能和易于维护的巨大潜力。这项研究调查了大型(1,500 MWe级)钠冷快堆的模块化EMP系统的适用性。这样的反应器的主循环泵需要超过500m 3 / min的流速。担心如此大的EMP会导致流量不稳定。模块化的EMP系统可以解决此问题,因为较小的EMP可以并行排列,并且每个EMP的流量都可以减少。已经研究了并联模块EMP系统作为主循环泵和辅助循环泵。主主泵的设计研究和电磁分析结果证实,并非在所有运行条件下都出现流量不稳定。从安全的角度出发,已经提出了一种可靠的降流系统,该系统包括具有永磁同步电动机的供电系统和可靠的断路器系统。模块化EMP系统对二次系统也有效,从而大大简化了管道布置。这项研究的结果表明,模块化EMP系统与大型钠冷快堆的主要循环泵高度兼容,并且采用该系统也具有优势。

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