In order to guarantee NPP operation safety, it is necessary to ensure the reliability operation of safety related equipment by equipment qualification. In the past, plant equipment qualification function requirement is an envelope requirement based on engineering experience, and it is not beneficial to NPP economical efficiency. These days, representative Gen III NPP (e.g. AP1000 and EPR) adopt improved technology in equipment qualification function requirement design, and more accurate requirement is designed. In this paper, AP1000 and EPR equipment qualification function requirement design methodology is studied and analyzed as the first step. Then, a safety related equipment qualification function requirement design methodology which is applicable for China self intellectual property Gen III NPP is provided. Furthermore, an example of equipment qualification function requirement design is carried out by analyzing nuclear instrument system power range channel sensor.
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2018 26th International Conference on Nuclear Engineering
July 22–26, 2018
London, England
Conference Sponsors:
- Nuclear Engineering Division
ISBN:
978-0-7918-5143-2
PROCEEDINGS PAPER
Study on Advanced PWR NPP Safety Related Equipment Qualification Function Requirement Design Methodology Available to Purchase
Xu Zhao,
Xu Zhao
Nuclear Power Engineering Co., Ltd., Beijing, China
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Miao Zhuang,
Miao Zhuang
Nuclear Power Engineering Co., Ltd., Beijing, China
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Yi Ke
Yi Ke
Nuclear Power Engineering Co., Ltd., Beijing, China
Search for other works by this author on:
Xu Zhao
Nuclear Power Engineering Co., Ltd., Beijing, China
Miao Zhuang
Nuclear Power Engineering Co., Ltd., Beijing, China
Yi Ke
Nuclear Power Engineering Co., Ltd., Beijing, China
Paper No:
ICONE26-81212, V001T01A003; 6 pages
Published Online:
October 24, 2018
Citation
Zhao, X, Zhuang, M, & Ke, Y. "Study on Advanced PWR NPP Safety Related Equipment Qualification Function Requirement Design Methodology." Proceedings of the 2018 26th International Conference on Nuclear Engineering. London, England. July 22–26, 2018. V001T01A003. ASME. https://doi.org/10.1115/ICONE26-81212
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