Reliability Analysis of Low Alloy Ferritic Piping Materials

Author:

Guedri A.,Merzoug B.,Khaleel Moe,Zeghloul A.

Publisher

Springer Netherlands

Reference8 articles.

1. Khaleel, M.A. and F.A. Simonen, 1994. A Parametric Approach to Predicting the Effects of Fatigue on Piping Reliability. ASME PVP Vol. 288 Service Experience and Reliability Improvement: Nuclear, Fossil and Petrochemical Plants, Vol. 1, pp. 117–125.

2. Khaleel, M.A. and F.A. Simonen, 2000. Effects of Alternative Inspection Strategies on Piping Reliability. Nuclear Engineering and Design 197, pp. 115–140.

3. Harris, D.O., E.Y. Lim, and D.D. Dedhia, 1981. Probability of Pipe Fracture in the primary Coolant Loop of a PWR Plant, Vol. 5: Probabilistic Fracture Mechanics NUREG/CR-2189. US Nuclear Regulatory Commission, Washington, DC.

4. Harris, D.O., D.D. Dedhia, E.D. Eason, and S.P. Patterson, 1986. Probability of Failure in BWR Reactor Coolant Piping, NUREG/CR-4792, Vol. 3. US Nuclear Regulatory Commission, Washington, DC.

5. Harris, D.O., D.D. Dedhia, and S.C. Lu, 1992. Theoretical and User's Manual for pc-PRAISE, A Probabilistic Fracture Mechanics Computer Code for Pipe Reliability Analysis. NUREG: CR-5864, UCRL-ID-109798. US Nuclear Regulatory Commission, Washington, DC.

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