Issue 50

R. Boutelidja et alii, Frattura ed Integrità Strutturale, 50 (2019) 98-111; DOI: 10.3221/IGF-ESIS.50.10 111 [17] Khaleel, M.A., Simonen, F. (1994a). The Effects of Initial Flaw Sizes and Inservice Inspection on Piping Reliability. In Service Experience and Reliability Improvement: Nuclear, Fossil, and Petrochemical Plants, American Society of Mechanical Engineers, New York, PVP, 288, pp. 95-107. [18] Khaleel, M.A., Simonen, F.A. (1994b). A Parametric Approach to Predicting the Effects of Fatigue on Piping Reliability. In Service Experience and Reliability Improvement: Nuclear, Fossil, and Petrochemical Plants, American Society of Mechanical Engineers, New York, PVP, 288, pp. 117-125. [19] Khaleel, M.A., Simonen, F.A. (2000). Effects of alternative inspection strategies on piping reliability, Nucl. Eng. Des., 197(1–2), pp. 115–140, DOI: 10.1016/S0029-5493(99)00261-7. [20] Khaleel, M.A., Simonen, F.A, Harris, D.O., Dedhia, D. (1995). The Impact of Inspection on Intergranular Stress Corrosion Cracking for Stainless Steel Piping. In Risk and Safety Assessments: Where Is the Balance?, American Society of Mechanical Engineers, New York, PVP- 296, pp. 411-422. [21] Simonen, F.A, Khaleel, M.A. (1998a). A Probabilistic Fracture Mechanics Model for Fatigue Crack Initiation in Piping.” In Fatigue, Fracture and Residual Stress, American Society of Mechanical Engineers, New York, PVP-373, pp. 27-34. [22] Simonen, F.A., Khaleel, M.A. (1998). Effects of Flaw Sizing Errors on the Reliability of Vessels and Piping, J. Press. Vessel Technol., 120(4), pp. 365, DOI: 10.1115/1.2842345. [23] Simonen, F.A., Harris, D.O., Dedhia, D.D. (1998). Effect of Leak Detection on Piping Failure Probabilities. In Fatigue, Fracture and Residual Stress, American Society of Mechanical Engineers, New York, PVP-373, pp. 105-113. [24] Khaleel, M.A., Simonen, F.A., Phan, H.K., Harris, D.O., Dedhia, D. (2000). Fatigue Analysis of Components for 60- Year Plant Life. NUREG/CR-6674, PNNL-13227. U.S. Nuclear Regulatory Commission, Washington, DC. [25] Gosselin, S.R., Simonen, F.A., Carter, R.G., Davis, J.M., Stevens, G.L. (2005). Enhanced ASME Section XI Appendix L Flaw Tolerance Procedure. 1: Codes and Standards, ASME, pp. 5–16. DOI: 10.1115/pvp2005-71100. [26] Bishop, B.A. (1997). An Updated Structural Reliability Model for Piping Risk Informed ISI, In Fatigue and Fracture, American Society of Mechanical Engineers, New York, PVP, 346(2), pp. 245-252. [27] Brickstad, B., Zang, W. (2001). NURBIT Nuclear RBI Analysis Tool, A Software for Risk Management of Nuclear Components. Technical Report No 10334900-1. DNV, Stockholm, Sweden. [28] Brickstad, B., Chapman, O.J.V., Schimpfke, T., Schulz, H., Muhammed, A. (2004). Review and Benchmarking of SRM and Associated Software. NURBIM Final Report D4, Contract FIKS-CT-2001-00172. DNV, Stockholm, Sweden. [29] Bell, C.D., Chapman, O.J.V. (2003). Description of PRODIGAL. NURBIM Report D4/Appendix F. Rolls-Royce plc., Derby, United Kingdom. [30] Schimpfke, T. (2003). A Short Description of the Piping Reliability Code PROST. NURBIM Report D4/Appendix C. Gesellschaft fur Anlagen-und Reaktorsicherheit (GRS), Berlin, Germany. [31] Dillstrom, P. (2003). A Short Description of ProSACC. NURBIM Report D4/Appendix G. DNV, Stockholm, Sweden. [32] Mohammed, A.A. (2003). A Short Description of STRUEL. NURBIM Report D4/Appendix H. The Welding Institute, Cambridge, United Kingdom. [33] Helie, M., Peyrat, C., Raquet, G., Santarini, G., Sornay, P. (1996). Phenomenological modelling of stress corrosion cracking. Intercorr/96 First Global Internet Corrosion Conference. [34] Lu, B.T., Chen, Z.K., Luo, J.L., Patchett, B.M., Xu, Z.H. (2005). Pitting and stress corrosion cracking behavior in welded austenitic stainless steel, Electrochim. Acta, 50(6), pp. 1391–1403, DOI: 10.1016/j.electacta.2004.08.036. [35] Priya, C., Rao, K.B., Anoop, M.B., Lakshmanan, N., Gopika, V., Kushwaha, H.S., Saraf, R.K. (2005). Probabilistic Failure Analysis of Austenitic Nuclear Pipelines against Stress Corrosion Cracking, Proc. Inst. Mech. Eng. Part C J. Mech. Eng. Sci., 219(7), pp. 607–624, DOI: 10.1243/095440605X31526. [36] ASM International Handbook Committee. (1996). ASM Handbook, 19: Fatigue and Fracture.

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