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压水堆核电厂二回路管道设计应对FAC策略
引用本文:胡海彬. 压水堆核电厂二回路管道设计应对FAC策略[J]. 电力勘测设计, 2022, 0(2): 29-33. DOI: 10.13500/j.dlkcsj.issn1671-9913.2022.02.007
作者姓名:胡海彬
作者单位:中国电力工程顾问集团华东电力设计院有限公司,上海 200063
摘    要:介绍流动加速腐蚀(flow-accelerated corrosion,FAC)的研究结果,针对FAC发生的机理和主要影响因素,提出在压水堆核电站二回路汽水管道设计中应对FAC的策略,从设计源头减少核电厂常规岛FAC产生的影响.

关 键 词:流动加速腐蚀  压水堆核电厂  二回路系统管道设计  FAC应对策略

FAC Countermeasures in Second-Loop Piping Design for PWR Nuclear Power Plant
HU Hai-bin. FAC Countermeasures in Second-Loop Piping Design for PWR Nuclear Power Plant[J]. Electric Power Survey & Design, 2022, 0(2): 29-33. DOI: 10.13500/j.dlkcsj.issn1671-9913.2022.02.007
Authors:HU Hai-bin
Affiliation:(East China Electric Power Design Institute Co.,Ltd.of CPECC,Shanghai 200063,China)
Abstract:The brief research result of FAC is introduced.According to mechanism and some key factors of FAC,relevant countermeasures and suggestions are put forward in second-loop steam-water piping design for PWR nuclear power plant.It is hoped to minimize the impact of FAC by proper design in conventional island of nuclear power plant.
Keywords:flow-accelerated corrosion(FAC)  PWR nuclear power plant  second-loop system piping design  FAC countermeasures
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