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首页> 外文期刊>Nuclear engineering and technology >STEAM GENERATOR TUBE INTEGRITY ANALYSIS OF A TOTAL LOSS OF ALL HEAT SINKS ACCIDENT FOR WOLSONG NPP UNIT 1
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STEAM GENERATOR TUBE INTEGRITY ANALYSIS OF A TOTAL LOSS OF ALL HEAT SINKS ACCIDENT FOR WOLSONG NPP UNIT 1

机译:武松核电厂1号机组所有热沉事故总损失的汽轮发电机管完整性分析

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A total loss of all heat sinks is considered a severe accident with a low probability of occurrence. Following a total loss of all heat sinks, the degasser/condenser relief valves (DCRV) become the sole means available for the depressurization of the primary heat transport system. If a nuclear power plant has a total loss of heat sinks accident, high-temperature steam and differential pressure between the primary heat transport system (PHTS) and the steam generator (SG) secondary side can cause a SG tube creep rupture. To protect the PHTS during a total loss of all heat sinks accident, a sufficient depressurization capability of the degasser/condenser relief valve and the SG tube integrity is very important. Therefore, an accurate estimation of the discharge through these valves is necessary to assess the impact of the PHTS overprotection and the SG tube integrity of the primary circuit. This paper describes the analysis of DCRV discharge capacity and the SG tube integrity under a total loss of all heat sink using the CATHENA code. It was found that the DCRV's discharge capacity is enough to protect the overpressure in the PHTS, and the SG tube integrity is maintained in a total loss of all heat accident.
机译:所有散热器的总损耗被认为是严重事故,发生的可能性很小。在所有散热片完全丢失之后,脱气机/冷凝器安全阀(DCRV)成为可用于一次热传输系统降压的唯一手段。如果核电站完全没有发生散热片事故,则高温蒸汽以及初级传热系统(PHTS)和蒸汽发生器(SG)次级侧之间的压差可能会导致SG管蠕变破裂。为了在所有散热片事故全部损失期间保护PHTS,脱气机/冷凝器安全阀的充分降压能力和SG管的完整性非常重要。因此,必须准确估算通过这些阀的排放量,以评估PHTS过度保护和一次回路的SG管完整性的影响。本文介绍了使用CATHENA代码对所有散热器总损耗下的DCRV放电容量和SG管完整性进行的分析。已经发现,DCRV的放电容量足以保护PHTS中的超压,并且在所有热事故的总损失中保持了SG管的完整性。

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