Evaluation of flow accelerated corrosion by coupled analysis of corrosion and flow dynamics. Relationship of oxide film thickness, hematite/magnetite ratio, ECP and wall thinning rate

Author:

Uchida Shunsuke,Naitoh Masanori,Okada Hidetoshi,Uehara Yasushi,Koshizuka Seiichi

Publisher

Elsevier BV

Subject

Mechanical Engineering,Waste Management and Disposal,Safety, Risk, Reliability and Quality,General Materials Science,Nuclear Energy and Engineering,Nuclear and High Energy Physics

Reference23 articles.

1. Czajkowski, C.Z., 1987. Metallurgical Evaluation of an 18 Inch Feedwater Line Failure at the Surry Unit 2 Power Station, NUREG/CR-4868 BNL-NUREG-52057.

2. Flow accelerated corrosion in fissile and combined cycle/HRSG plants;Dooley;Power Plant Chem.,2008

3. Fujiwara, K., Domae, M., Ohira, T., Hisamuna, K., Takiguchi, H., Uchida, S., Lister, D.H., 2008. Electrochemical measurements of carbon steel under high flow ratecondition and thermodynamic solubility of iron. In: Proceedings of the 16th Pacific Basin Nuclear Conference, PaperID P16 (Aomori, Japan, Atomic Energy Society of Japan, 2008), 1048.

4. Heitmann, H.G., Schub, P., 1983. Initial experience gained with a high pH value in the secondary system of PWRs. In: Proceedings of the Third Meeting on Water Chemistry of Nuclear Reactors, BNES, London, pp. 243.

5. Corrosion inhibition of carbon steel of BWR feed water system by oxygen injection;Izumiya;Karyoku Genshiryoku Hatsuden,1976

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