Effect of through-wall stress gradients on piping failure probabilities

Author:

Khaleel M.A.,Simonen F.A.

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

Reference18 articles.

1. Bishop, B.A., 1997. An Updated Structural Reliability Model for Piping Risk Informed ISI, Fatigue and Fracture-1997-Volume 2, PVP-Vol. 346. American Society of Mechanical Engineers, New York, pp. 245–252.

2. Bruckner-Foit A., Schmidt, T., Theodoropoulos, J., 1989. A comparison of the PRAISE code and the PARIS code for the evaluation of the failure probability of crack-containing components. Nucl. Eng. Des., 110 (3), 395–411.

3. Simulation of Defects in Weld Construction, Reliability and Risk in Pressure Vessels and Piping, PVP;Chapman,1993

4. Chapman, O.J.V, Simonen, F.A., 1998. RR-PRODIGAL – a model for estimating probabilities of defects in welds, NUREG/CR-5505. US Nuclear Regulatory Commission, Washington, DC.

5. Harris, D.O., Dedhia, D.D., Lu, S.C., 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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