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Study on Hydrogen Migration in Small Water Leak of Sodium-cooled Fast Reactor

机译:钠冷快堆小漏水中氢迁移的研究

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Steam generator is a key component for realizing the heat exchange between the secondary sodium circuit and the tertiary circuit water in the sodium-cooled fast reactor. Any tiny crack of the heat-transfer tube in the steam generator may lead to the contact of water and sodium, resulting in the sodium-water reaction and the generation of hydrogen, reaction heat and other corrosive products, which further corrode the break and the adjacent tubes. In order to effectively curb the further development of small leak, timely detection of the occurrence of sodium-water reactions is particularly important. With the background of the small leak sodium water reaction caused by the crack of the steam generator heat transfer tube, in this paper the migration behavior of hydrogen in the secondary sodium circuit is analyzed, based on the mass, momentum and energy conservation equations, and the concentration of hydrogen in the secondary sodium circuit is numerically calculated one-dimensionally. The results show that the hydrogen concentration at a certain point in the circuit increases with the increase of water leaking time as a whole, when the water injection is intermittent, the hydrogen concentration at a certain point in the circuit fluctuates periodically and the basal concentration becomes higher and higher, which provides a reference for the arrangement of the secondary loop small leak detection system.
机译:蒸汽发生器是在钠冷快堆中实现二级钠回路和三级回路水之间热交换的关键组件。蒸汽发生器中传热管的任何细小裂纹都可能导致水和钠接触,从而导致钠水反应以及氢,反应热和其他腐蚀性产物的产生,从而进一步腐蚀破裂和相邻管。为了有效遏制小泄漏的进一步发展,及时检测钠水反应的发生特别重要。在蒸汽发生器传热管破裂引起钠水反应少泄漏的背景下,本文根据质量,动量和能量守恒方程,分析了氢在钠二次回路中的迁移行为,第二维钠回路中的氢浓度是一维数值计算的。结果表明,回路中某点的氢浓度总体上随着漏水时间的增加而增加,当间歇注水时,回路中某点的氢浓度周期性地波动,基本浓度变为越来越高,这为二次回路小泄漏检测系统的配置提供了参考。

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