Pellet-Cladding Interaction Probability Assessment Model

Author:

Paramonov Dmitry V.1

Affiliation:

1. Westinghouse Electric Company, Cranberry, PA 16066

Abstract

The main objective of the reported study was developing a method for predicting pellet-cladding interaction (PCI) failure probability in pressurized water reactor (PWR) fuel in transient conditions that would strike a balance between simplicity and accuracy, allows for straightforward implementation within a transient analysis methodology or core monitoring system, and include treatment of the most important PCI factors. The developed best estimate method relies on readily calculated/available quantities, such as nodal burn-up, local power, average cladding temperature, and pressure differential across cladding at zero burnup, uses a power increase past gap closure as a failure criterion. The method allows for calculating failure probability for a given rate of power change or establishing a rate of power change corresponding to a certain failure probability. It also provides for accuracy comparable to a fuel performance code when calculating PCI failure probability in ramp tests and offers a way to infer a safe PCI threshold from ramp test data.

Publisher

ASME International

Subject

Mechanical Engineering,Mechanics of Materials,Safety, Risk, Reliability and Quality

Reference17 articles.

1. EPRI Report—Product No. 1012915, 2006, “PCI Analyses and Startup Ramp Rate Recommendations for Westinghouse Fuel in Exelon PWRs.”

2. Hayashi, H., Yoshiaki, T., Sachio, S., and Yoshinori, E., 2003, “Outside-in Failure of High Burn-up BWR Segment Rods caused by Power Ramp Tests,”Atomwirtshaft 48 Jg, Heft 6-Juni, pp. 388–392.

3. A. Motta diagrams, http://www.nea.fr/html/science/fuel/Motta_diagram.PDF

4. The Mechanical Behavior of Pellet-Cladding with the Missing Chip under PCMI Loadings during Power Ramp;Lee

5. The Effect of Liner Component Iron Content on Cladding Corrosion, Hydriding, and PCI Resistance;Dahlbäck;J. ASTM Int.

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